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Schneider Group launches brand: Authentico® by Schneider Group (c) Schneider Group
06.06.2024

Schneider Group launches brand: Authentico® by Schneider Group

The Schneider Group officially launches Authentico® by Schneider Group, a brand that stands for a transparent, verified, traceable, ethical and high-quality wool supply chain. It aims to be recognised as a global brand that enables the fashion industry, together with end-consumers, to choose new levels of premium quality comprising fully traceable and responsible wool, in compliance with a carefully structured approach that verifies, traces and brands the sourcing and manufacturing processes throughout the whole supply chain. Authentico® is based on the Schneider Group global certified network.

To achieve these goals, the Schneider Group has created the Authentico® Verification System, a simple and reliable way to provide criteria and guidelines for all Authentico® supply chain partners including:

The Schneider Group officially launches Authentico® by Schneider Group, a brand that stands for a transparent, verified, traceable, ethical and high-quality wool supply chain. It aims to be recognised as a global brand that enables the fashion industry, together with end-consumers, to choose new levels of premium quality comprising fully traceable and responsible wool, in compliance with a carefully structured approach that verifies, traces and brands the sourcing and manufacturing processes throughout the whole supply chain. Authentico® is based on the Schneider Group global certified network.

To achieve these goals, the Schneider Group has created the Authentico® Verification System, a simple and reliable way to provide criteria and guidelines for all Authentico® supply chain partners including:

  • Authentico® Integrity Scheme, best practices for growers’ implementation at farm level. Animal welfare is at the heart of the Authentico® Integrity scheme, together with being mulesing-free, in accordance with The Five Domains. But the scheme goes further and encompasses also land and pasture management and social responsibility. The wool is sourced from carefully selected and highly committed growers, who apply best practices and choose to subscribe to the dedicated Authentico® platform. The selected fibres are processed into tops in the Schneider Group’s own mills located on several continents, which are directly operated and fully certified.
  • Authentico® Brand Guidelines, for all other supply chain players (from spinners, weavers and knitters to garment makers, brands and retailers), that include precise criteria set by the Schneider Group to ensure alignment with Authentico® brand values.

In addition, the Schneider Group incorporates the traceability platform TextileGenesis™ within its Authentico® Verification System, to digitally track all incoming and outgoing wool.

The group has developed a marketing & communication plan to support its Authentico® brand. Upcoming events where Authentico® will be featured are: Pitti Filati in June, Milano Unica in July, the Natural Fibre Connect (NFC) in Biella in mid-September and the Textile Exchange Conference at the end of October in Pasadena.

Source:

Schneider Group / C.L.A.S.S. Eco Hub

Teijin Carbon Europe GmbH receives ISCC PLUS certification (c) Teijin Carbon Europe GmbH
06.06.2024

Teijin Carbon Europe GmbH receives ISCC PLUS certification

Teijin Carbon Europe has been awarded ISCC PLUS certification (Certificate Number: ISCC-PLUS-Cert-DE100-15897124). This ISCC PLUS certification covers Tenax™ Carbon Fiber produced at the Heinsberg-Oberbruch plant in Germany. This accreditation enables the Teijin Group to offer its customers sustainable products that contribute to circular economy. Teijin has selected the ISCC certification route as the International Sustainability and Carbon Certification (ISCC) is an independent organisation and the leading certification system in this field.

Teijin Carbon Europe has been awarded ISCC PLUS certification (Certificate Number: ISCC-PLUS-Cert-DE100-15897124). This ISCC PLUS certification covers Tenax™ Carbon Fiber produced at the Heinsberg-Oberbruch plant in Germany. This accreditation enables the Teijin Group to offer its customers sustainable products that contribute to circular economy. Teijin has selected the ISCC certification route as the International Sustainability and Carbon Certification (ISCC) is an independent organisation and the leading certification system in this field.

The ISCC PLUS certification is a voluntary system which administers the circular economy of chemicals, plastics, packaging, textiles and renewable raw materials. Raw materials which are made from sustainable source materials (e.g. via recycling or bio-based sources) are labelled with a sustainability declaration (country of origin of the raw material, quantity and type of sustainable raw material, user ID, etc.). This document then follows the product during further processing – even over several stages – until it is used by the end customer. If all partners in the chain are ISCC PLUS certified, the documents can be passed on clearly and reliably.

The Teijin Group is globally establishing a carbon fiber production and supply system based on ISCC PLUS certification. The attractiveness of ISCC PLUS certification for the Teijin Group is exemplified by the future production of sustainable carbon fibers. Teijin uses various chemical building blocks for the internal production of polyacrylonitrile. Conventional and sustainable raw materials can now be purchased and processed on the global market. In future, Teijin also intends to purchase materials that are obtained via recycling or directly based on a bio-based source.

These raw materials will then be processed into a sustainable polyacrylonitrile precursor. As the production processes are identical to those used in the conventional production of carbon fibers, the mechanical and chemical properties are identical. Based on the sustainability declaration, a clear mass balance is used to differentiate between sustainable and conventional products.

The Teijin Group obtained ISCC PLUS certification for carbon fiber and the polyacrylonitrile (PAN) precursor fiber produced at Teijin's Mishima Plant in Shizuoka Prefecture, Japan in June 2023, and began mass production of carbon fiber based on the certification in December of the same year. The Teijin Group benefits from this approach as customers are offered products that contribute to the circular economy or continue to use conventional raw materials.

Source:

Teijin Carbon Europe GmbH

05.06.2024

PVH: Search for new European Leader

PVH Corp. announced that Martijn Hagman, CEO of Tommy Hilfiger Global and PVH Europe, will be leaving the Company. He will serve in an advisory capacity to facilitate a smooth transition.

Lea Rytz Goldman, Tommy Hilfiger Global President, leads the global brand, reporting directly to PVH CEO Stefan Larsson. David Savman, PVH’s Chief Supply Chain Officer, will serve as Interim CEO for PVH Europe. The Company has launched a search for a new European leader.

PVH Corp. announced that Martijn Hagman, CEO of Tommy Hilfiger Global and PVH Europe, will be leaving the Company. He will serve in an advisory capacity to facilitate a smooth transition.

Lea Rytz Goldman, Tommy Hilfiger Global President, leads the global brand, reporting directly to PVH CEO Stefan Larsson. David Savman, PVH’s Chief Supply Chain Officer, will serve as Interim CEO for PVH Europe. The Company has launched a search for a new European leader.

More information:
PVH Europe TOMMY HILFIGER CEO
Source:

PVH Corp.

31.05.2024

Tintoria Finissaggio 2000 invests in Mahlo's automatic straightening system

Tintoria Finissaggio 2000 is one of the most important Italian companies in the textile finishing sector. Founded in 1973 in Masserano in the textile district of Biella, the company offers the complete range of dyeing of all types of fibres, finishing, digital printing, lamination and membrane lining. These processes are used to give fabrics certain properties, such as colour, pattern, softness, shine or waterproofness.

At Tintoria Finissaggio 2000, customers benefit from the fact that all processes are handled under one roof, from design support to the finishing of fabrics, combining decades of experience with the new possibilities of lamination and digital printing. The dyeing plant in Masserano is a state-of-the-art facility that fulfils the strictest environmental standards. In general, Tintoria Finissaggio 2000 continuously invests in state-of-the-art technologies and production facilities in order to achieve high-quality results while ensuring sustainable production processes.

Tintoria Finissaggio 2000 is one of the most important Italian companies in the textile finishing sector. Founded in 1973 in Masserano in the textile district of Biella, the company offers the complete range of dyeing of all types of fibres, finishing, digital printing, lamination and membrane lining. These processes are used to give fabrics certain properties, such as colour, pattern, softness, shine or waterproofness.

At Tintoria Finissaggio 2000, customers benefit from the fact that all processes are handled under one roof, from design support to the finishing of fabrics, combining decades of experience with the new possibilities of lamination and digital printing. The dyeing plant in Masserano is a state-of-the-art facility that fulfils the strictest environmental standards. In general, Tintoria Finissaggio 2000 continuously invests in state-of-the-art technologies and production facilities in order to achieve high-quality results while ensuring sustainable production processes.

Tintoria Finissagio 2000 also focused on innovation when equipping a new stenter frame. The company opted for the latest development from German machine manufacturer Mahlo GmbH + Co. KG: the Orthopac RXVMC-20 automatic straightening system. The new straightening concept is specially designed for processing textiles with high distortion dynamics, i.e. textiles with highly variable distortion. Two individually controlled and driven straightening modules with a total of three bow and four skew rollers ensure that bow and skew distortions are corrected in small steps. The control concept is also new. A scanner group at the infeed of the straightener detects distortions even before they reach the correction rollers. This means that the rollers are brought directly into position and the fabric is corrected from the very first centimetre. A scanner group at the outfeed also recognises any residual distortion, which is then corrected on the second straightening module.

31.05.2024

Oerlikon Barmag: Pumps with magnetic coupling

Polyurethane has become an integral part of our daily lives, whether in the construction industry, in leisure activities, in the manufacture of furniture or in numerous other applications. The precision gear pumps from Oerlikon Barmag, which will be presented at this year's UTECH Asia / PU China 2024 in Shanghai, impress with customised solutions for demanding tasks in the chemical industry. They increase the productivity of the often complex manufacturing processes for this wide range of applications.

Oerlikon Barmag pumps handle demanding processes in PUR applications, in the chemical, plastics or paint and lacquers industries. One of the greatest challenges lies in the accurate and reliable metering of toxic or low-viscosity media. With the GM and GA series and the associated components, Oerlikon Barmag presents the optimum equipment for these applications.

Polyurethane has become an integral part of our daily lives, whether in the construction industry, in leisure activities, in the manufacture of furniture or in numerous other applications. The precision gear pumps from Oerlikon Barmag, which will be presented at this year's UTECH Asia / PU China 2024 in Shanghai, impress with customised solutions for demanding tasks in the chemical industry. They increase the productivity of the often complex manufacturing processes for this wide range of applications.

Oerlikon Barmag pumps handle demanding processes in PUR applications, in the chemical, plastics or paint and lacquers industries. One of the greatest challenges lies in the accurate and reliable metering of toxic or low-viscosity media. With the GM and GA series and the associated components, Oerlikon Barmag presents the optimum equipment for these applications.

GM pump
Pumps in the GM series achieve precise dosing by feeding the flow with low pulsation. The multi-stage GM pump conveys low-viscosity media even under high pressure and the most difficult operating conditions (e.g. 250 bar, 100 mPas). The standard pump for many dosing tasks is the GM series in a square design. With the development of the multi-stage pump, the range of applications for the GM series has been significantly expanded. The round 2-stage GM pump has been specially developed for use in high-pressure technology. It fulfils the special challenge of pumping small flow rates with low viscosities. The pump serves flow rates from 0.05 to 20 ccm/rev and is therefore particularly suitable for the production of PUR moulded parts, block foam, refrigeration unit insulation or sandwich panels.  

GA series
Making products and processes more efficient is a constant challenge for manufacturing companies. This is why Oerlikon Barmag has added the GA series to the GM series especially for the demanding conveying of high-viscosity media. The GA series is available in delivery volumes of 1.25 - 30 cm³/rev (0.6-144 l/h). It is designed for pressures up to 200 bar, for viscosities up to 1,500 Pas and for temperatures up to a maximum of 225°C. With this pump series, Oerlikon Barmag offers customised solutions for process engineering processes where highly accurate and uniform metering is required.

The drum pump
The drum pump from Oerlikon Barmag is specially designed for conveying and dosing highly viscous materials such as adhesives, silicones and other highly viscous materials from drums and other large containers and for pressures of up to 250 bar. One of its special features is not only that it discharges highly viscous materials from the drum, but also that the medium can be dosed directly without an intermediate stop.

The gear pump and drum follower plate are synchronised so that the plate effortlessly reaches the bottom of the container, leaving behind only a very small residual quantity of < 1%. This reduces material costs and has a positive effect on the production process.

Source:

Oerlikon Textile GmbH & Co. KG,

© Lindner Recyclingtech GmbH
At a joint presentation at IFAT in Munich, Michael Lackner, Managing Director of Lindner (on the right), and Manfred Hackl (on the left), CEO of the EREMA Group, presented the initial results of their two companies' joint venture.
24.05.2024

Lindner Washtech and EREMA Group: Jointly breaking new ground in plastics recycling

Breaking new ground in plastics recycling means assessing the value chain from end to end. The big opportunities for the future are in fine-tuning the individual process steps; from the collection of recyclable materials to the recycling process and the end product. This is where the cooperation of Lindner and the EREMA Group comes in, officially launched following the 50/50 founding of the holding BLUEONE Solutions in August 2023 to which shares of Lindner Washtech were contributed. The expertise of EREMA, a manufacturer of extruders and filtration solutions for plastics recycling and the largest company within the EREMA Group, has now been combined with the expert know-how from Lindner Washtech, a leading provider of all-in-one solutions for shredding, sorting and washing plastic feed materials.

Breaking new ground in plastics recycling means assessing the value chain from end to end. The big opportunities for the future are in fine-tuning the individual process steps; from the collection of recyclable materials to the recycling process and the end product. This is where the cooperation of Lindner and the EREMA Group comes in, officially launched following the 50/50 founding of the holding BLUEONE Solutions in August 2023 to which shares of Lindner Washtech were contributed. The expertise of EREMA, a manufacturer of extruders and filtration solutions for plastics recycling and the largest company within the EREMA Group, has now been combined with the expert know-how from Lindner Washtech, a leading provider of all-in-one solutions for shredding, sorting and washing plastic feed materials.

Data transfer ensures more efficient recycling processes
Process control is an especially important aspect of plastics recycling, which is why standardising the process control system was what the two companies focused on first. "Together, we have developed a platform that allows data to be exchanged between the extruder and the washing system," says Manfred Hackl, CEO of the EREMA Group at IFAT in Munich. "This enables us to analyse the data more precisely so that effective improvement measures can be deduced." All key parameters are taken into account and monitored via a digital interface. For example, it is possible to use information relating to the current throughput of the EREMA Pre Conditioning Unit to optimise the washing process as soon as possible so that it can compensate for fluctuations in capacity and achieve a significant increase in output. This data transfer represents a new step on the roadmap to digitalization.

High efficiency due to smart energy management
"To ensure sustainable recycling, it is necessary to find the right process for each application and to make sure that the individual process steps are perfectly coordinated," emphasizes Michael Lackner, Managing Director of Lindner. Coordinating the process steps has already achieved initial success in energy management, and a clear example of this is heat recovery. "We use the latent heat generated during the extrusion process as an energy source for the washing and drying process," explains Lackner. "This enables our customers to sustainably reduce their energy costs and carbon emissions".

Making the most of synergies along the value chain
Synergies need to be used to establish the quality standards specified for each end application. "The key question is how we can improve the end product and increase the overall efficiency of the recycling process at the same time," agree Manfred Hackl and Michael Lackner. This will only work if companies work together along the value chain. The industry leaders can already point to several examples where together they have improved recycling processes and made it possible to move away from downcycling. "An example of this is the recycling loop of HDPE starting material, which is processed into high-quality, food-safe rHDPE pellets using our two technologies," says Lackner. Lindner Washtech and EREMA continue to work intensively together to develop strategies for upcycling plastics and increase recycling rates.

Source:

Erema Group

07.05.2024

Drupa: touchpoint textile showcases textile printing solutions

By establishing touchpoint textile, drupa has created a special forum to showcase pioneering applications in digital textile printing. The highlight will be the Digital Textile Micro Factory – a fully connected, integrated process chain starting with the customer enquiry and design through to large-format digital textile printing.

touchpoint textile represents drupa’s growing expansion into new markets comprising such segments as packaging production, large-format or industrial and functional printing next to packaging production. All of these segments are undergoing the same transformation processes and offer enormous growth potential. The special forum revolves around the opportunities and challenges of digital textile printing, brings together renowned exhibitors, industry partners and brand owners and provides scope for cross-industry cooperation, new projects as well as product and manufacturing ideas. The operational content partners of touchpoint textile include the German Institutes for Textile and Fibre Research Denkendorf (DITF), as Europe’s largest textile research centre, as well as ESMA, the European Specialist Printing Manufacturers Association.

By establishing touchpoint textile, drupa has created a special forum to showcase pioneering applications in digital textile printing. The highlight will be the Digital Textile Micro Factory – a fully connected, integrated process chain starting with the customer enquiry and design through to large-format digital textile printing.

touchpoint textile represents drupa’s growing expansion into new markets comprising such segments as packaging production, large-format or industrial and functional printing next to packaging production. All of these segments are undergoing the same transformation processes and offer enormous growth potential. The special forum revolves around the opportunities and challenges of digital textile printing, brings together renowned exhibitors, industry partners and brand owners and provides scope for cross-industry cooperation, new projects as well as product and manufacturing ideas. The operational content partners of touchpoint textile include the German Institutes for Textile and Fibre Research Denkendorf (DITF), as Europe’s largest textile research centre, as well as ESMA, the European Specialist Printing Manufacturers Association.

Digital Textile Micro Factory: on-demand and virtual products – on the path towards sustainable production
In cooperation with 12 partners from industry and research the DITF will demonstrate a Digital Textile Micro Factory live at drupa and, hence, a fully connected, integrated process chain from design to finished product. This will present new possibilities for digitalisation and direct customer involvement, for instance in the form of 3D apparel simulations complete with links to design networks for creative input. Digital workflows and virtual products are integrated directly in the manufacturing process. As a special highlight for all trade visitors the technology partners of this Micro Factory will demonstrate an automated on-demand production, textile printing, cutting and sorting – without any manual interaction. Such decentralised and digitally connected design and production chains will enable the textile industry to respond to customers’ requests and trends in a more targeted manner in future. This means, touchpoint textile 2024 technologically points the way to a future without shelf-warmers. In addition, the carbon footprint for the complete process from virtual development to finished product will be modelled and presented at the trade fair.  

2024 will see the design competition “drupa – textile design talents” being held for the first time. This was conceived of by the DITF and will be implemented by the partner Mitwill. This provides up-coming textile designers and newcomers with a unique opportunity to introduce their ideas and visions to a professional audience.

Broad industry support
A project as comprehensive as the Micro Factory requires many strong partners. The companies “on board” here include: Assyst/Germany (3D simulation for digital apparel twins), Mitwill Textiles Europe/France (creative design network), D.G.I. Digital Graphics Incorporation/South Korea, Multi-Plot Europe/Germany (large-format textile printing), LEONHARD KURZ Stiftung/Germany, Zünd/Switzerland (digital cutting), robotfactory/Denmark, Asco/The Netherlands (presenting an innovative buffer solution between digital printing and cutting, automated sorting of cut parts from the cutter by robotfactory) as well as Brother/Japan (for small-format textile printing and bonding technology). Vaude and berger textiles will be sponsoring the touchpoint. Another key partner is the Albstadt-Sigmaringen University that is supporting the project as a conceptual sponsor and which has set itself the clear mission to incorporate these new topics into its curriculum. This means the staff of the future will be geared up to the new challenges ahead.

Another partner of touchpoint textile is the European Specialist Printing Manufacturers Association (ESMA), which is responsible for the lecture programme. ESMA represents industrial, functional and specialist printing and acts as an organiser of educational events in the field of textile printing. At drupa speakers from research, development, and industry will address issues related to printing and finishing techniques, workflows, market developments and sustainability, to name but a few. The focus will also be on trends and applications that unlock ever new potential through the interplay of digital printing and textile printing substrates. The lectures are divided into the categories Research, Finishing, Print Systems & Hardware, Substrates, Inks & Chemistry and Software & Electronics. Assyst, for example, will deliver talks on the virtual development of apparel as well as the research project ECOShoring, which is funded by the “Deutsche Bundesstiftung Umwelt” – DBU (German Federal Environmental Foundation) and focuses on personalised and on-demand sustainable manufacturing. Other speakers represent Adobe, Balta Group, Barbieri Electronic, Brother, Centexbel, CST, DITF, Fujifilm Speciality Ink Systems, HS Albsig, Kornit Digital, Meteor Inkjet, Mimaki, Mitwill, Multiplot, Print-Rite, RWTH Aachen, Seiko Instruments, Tiger Coatings, Xaar, Zünd and the list is updated on regular basis.

drupa will be held at the Düsseldorf Exhibition Centre from 28 May to 7 June 2024.

Source:

Messe Düsseldorf

Stratasys unveils D2G solution with Urban Tattoo denim collection Photo: Business Wire
19.04.2024

Stratasys unveils D2G solution with Urban Tattoo denim collection

Stratasys Ltd. announced the launch of its Direct-to-Garment (D2G) solution for the J850 TechStyle™ printer, the newest offering in the Stratasys 3DFashion™ direct-to-textile printing technology. The first example of its application is an Urban Tattoo denim collection which will be revealed at the Texprocess exhibition in Frankfurt, Germany on April 23.

The D2G solution is ideal for customization and personalization by enabling the application of full color multi-material 3D print directly on fully assembled garments of various fabric types including denim, cotton, polyester, and linen. It allows fashion brands to facilitate personalized and bespoke designs for customers, including the ability to tailor 3D prints according to individual preferences, sizes, and styles.  

Stratasys Ltd. announced the launch of its Direct-to-Garment (D2G) solution for the J850 TechStyle™ printer, the newest offering in the Stratasys 3DFashion™ direct-to-textile printing technology. The first example of its application is an Urban Tattoo denim collection which will be revealed at the Texprocess exhibition in Frankfurt, Germany on April 23.

The D2G solution is ideal for customization and personalization by enabling the application of full color multi-material 3D print directly on fully assembled garments of various fabric types including denim, cotton, polyester, and linen. It allows fashion brands to facilitate personalized and bespoke designs for customers, including the ability to tailor 3D prints according to individual preferences, sizes, and styles.  

Available in two sizes, the D2G tray kits facilitate the personalization of garments ranging from jeans to jackets, enabling designers and manufacturers to adopt more sustainable practices by reducing material waste. The seamless workflow delivers ease of calibration and compatibility with various garment sizes, streamlining the production process and fostering the creation of unique, personalized apparel.

Demonstrating this innovation, the Urban Tattoo collection showcases the potential and the ease of direct-to-garment 3D printing. Working with noted designers Karim Rashid, Travis Fitch, Zlatko Yanakiev at Meshroom along with Foraeva Studio, this collection shows the transformation of ordinary garments into pieces of wearable art, imbuing them with personal identity and meaning.

Like body tattoos, Urban Tattoos promote a deeper emotional connection, encouraging the upcycling of existing garments and contributing to a more sustainable fashion ecosystem. This aligns with Stratasys’ strategy for Mindful Manufacturing™. Stratasys has been able to create a new collection that will appeal to multiple brands that reach across diverse socio-economic backgrounds.

Source:

Stratasys Ltd

Collaboration between Archroma and DMIx (c) ColorDigital
16.04.2024

Collaboration between Archroma and DMIx

Archroma and ColorDigital GmbH, a company in textile supply chain digitalization, are joining forces to bring the library of engineered color standards to the DMIx ecosystem of fashion brands and suppliers.

All 5,760 color references in the Color Atlas by Archroma® will be integrated into ColorDigital’s DMIx interactive collaboration platform, enabling brands to embrace almost unlimited color creativity with an assurance of color precision. Based on digital twin technology, the DMIx solution ensures that color choices are aligned across design, sourcing and production, reducing sampling costs and collection development time as well as improving color accuracy and end-product quality. DMIx marks a significant step forward in enhancing color management processes for both digital product creation (DPC) and physical production.

Archroma and ColorDigital GmbH, a company in textile supply chain digitalization, are joining forces to bring the library of engineered color standards to the DMIx ecosystem of fashion brands and suppliers.

All 5,760 color references in the Color Atlas by Archroma® will be integrated into ColorDigital’s DMIx interactive collaboration platform, enabling brands to embrace almost unlimited color creativity with an assurance of color precision. Based on digital twin technology, the DMIx solution ensures that color choices are aligned across design, sourcing and production, reducing sampling costs and collection development time as well as improving color accuracy and end-product quality. DMIx marks a significant step forward in enhancing color management processes for both digital product creation (DPC) and physical production.

Sustainability is an essential factor for both Archroma and DMIx. Colors in the Archroma Color Atlas are formulated to comply with leading eco-standards while also delivering consistent and accurate color reproduction. This complements the DMIx ImpAct approach, which provides data on the environmental impact of raw materials to enable brands to select inputs that meet their sustainability targets.

A new feature on the DMIx platform is DMIx eXcite, an inspirational material and color-trend hub that uses interactive moodboards to share new color and material scenarios ahead of each season. Designers and colorists will be able to directly use colors presented in the eXcite trend reports, including colors from the Color Atlas by Archroma®, across the DMIx color and 3D technology tools.

Source:

Archroma

STOLL: Flat knitted balaclava in Design Museum in New York (c) KARL MAYER Group
05.04.2024

STOLL: Flat knitted balaclava in Design Museum in New York

The exhibition “Acquired! Shaping the National Design Collection” at Cooper Hewitt, Smithsonian Design Museum, which opened on 16 March, features a STOLL work that has been part of the museum’s permanent collection since 2017.

Visitors can expect more than 150 works that have been compiled from the museum’s collection and new acquisitions since 2017. The selection, which includes works by design pioneers of the recent past, also includes a highly functional balaclava from STOLL.

Blend of design and functionality.
The flat knitted balaclava from STOLL is part of an exhibition area that visualises the defining themes of our time. Alongside a hijab, it stands for considering inclusivity in design. The balaclava offers protection from extreme cold, is stylish and is the result of a combination of creativity and technology.

The exhibition “Acquired! Shaping the National Design Collection” at Cooper Hewitt, Smithsonian Design Museum, which opened on 16 March, features a STOLL work that has been part of the museum’s permanent collection since 2017.

Visitors can expect more than 150 works that have been compiled from the museum’s collection and new acquisitions since 2017. The selection, which includes works by design pioneers of the recent past, also includes a highly functional balaclava from STOLL.

Blend of design and functionality.
The flat knitted balaclava from STOLL is part of an exhibition area that visualises the defining themes of our time. Alongside a hijab, it stands for considering inclusivity in design. The balaclava offers protection from extreme cold, is stylish and is the result of a combination of creativity and technology.

The balaclava integrates an NFC chip for near-field communication, a heater to warm breathable air, a positive and negative power connector and reflective strips for passive visibility, all knitted directly into the fabric. STOLL’s state-of-the-art flat knitting technology is the basis for straightforward integration. Circuits and conductive yarns can also be incorporated in a fully automated process exactly where they are needed.

Other performance features do not require additional components. A knitted-to-shape 3D design – made possible by the goring technique – offers a perfect fit by following anatomy and eliminating the need for complex tailoring.

More information:
Stoll Karl Mayer Group
Source:

KARL MAYER Group

California’s Largest Sewage Collection Study Photo: INDA
05.04.2024

California’s Largest Sewage Collection Study: Wipes Clogging the Pipes?

In accordance with California’s Proper Labeling of Wet Wipes law (AB 818), state wastewater agencies and industry experts went deep to find out exactly what is passing through—and clogging up—municipal wastewater systems. The Responsible Flushing Alliance (RFA) alongside the California Association of Sanitation Agencies (CASA) and the Association of the Nonwoven Fabrics Industry (INDA) released the results from the largest known domestic sewage collection study conducted to reveal what’s really being flushed down the drain – and shouldn’t be.

“We took a forensic approach to this collection study, engaging industry and wastewater experts to examine our findings and determine what exactly is being flushed and how much of it,” said Adam Link, Executive Director at CASA, a co-sponsor of the Proper Labeling of Wet Wipes Law. “Now that we have the data to see what Californians are flushing and the types of non-flushable items that are causing issues within wastewater systems, local agencies can refine their public outreach and messaging to target specific problems and educate more efficiently.”

In accordance with California’s Proper Labeling of Wet Wipes law (AB 818), state wastewater agencies and industry experts went deep to find out exactly what is passing through—and clogging up—municipal wastewater systems. The Responsible Flushing Alliance (RFA) alongside the California Association of Sanitation Agencies (CASA) and the Association of the Nonwoven Fabrics Industry (INDA) released the results from the largest known domestic sewage collection study conducted to reveal what’s really being flushed down the drain – and shouldn’t be.

“We took a forensic approach to this collection study, engaging industry and wastewater experts to examine our findings and determine what exactly is being flushed and how much of it,” said Adam Link, Executive Director at CASA, a co-sponsor of the Proper Labeling of Wet Wipes Law. “Now that we have the data to see what Californians are flushing and the types of non-flushable items that are causing issues within wastewater systems, local agencies can refine their public outreach and messaging to target specific problems and educate more efficiently.”

Collection and material investigation took place in October 2023 at two locations: Inland Empire Utilities Agency (IEUA) in Southern California and Central Contra Costa Sanitary District (Central San) in the greater San Francisco Bay Area in Northern California. Wastewater and wipes experts collected, sorted and identified more than 1,700 items pulled from the two locations during peak flow times. Kennedy Jenks, an independent engineering firm, designed the study and compiled the findings into the report.

Why Study What’s Being Flushed?
When products that aren’t meant to be flushed down the toilet wind up in the sewer system, it can cause serious threats to public and environmental health. In fact, estimates show that local public agencies throughout California (and the ratepayers they represent) are spending more than $47 million annually to repair wastewater treatment equipment and respond to sewer overflows caused by improper flushing.

“Part of keeping communities healthy requires not flushing things we shouldn’t,” said Lara Wyss, President of the RFA. “However, the data to support which non-flushable items to target as part of education campaigns has been lacking. That’s likely why when we surveyed Californians about what they are flushing, the results revealed that approximately 25% think baby wipes are flushable (which is never true) and 60% self-reported that they flushed something they knew they shouldn’t have.2 Our study results reinforce that finding, as more than 99% of materials collected were items that shouldn’t have been flushed.”

The breakdown of items collected from pipes at the two study locations included:
•    34.1% wipes labeled with the “Do Not Flush” symbol (baby wipes, cleaning wipes, makeup wipes, etc.)
•    64.9% other non-flushable items (paper towels, period products, trash, etc.)
•    0.9% wipes labeled as flushable

“We pulled material larger than 1-inch square directly from the bar screens, and it wasn’t until everything was sorted and identified that we could see what we actually had,” said Matt O’Sickey, Director of Education and Technical Affairs, INDA. “There were a lot of paper towels and baby wipes and all of the ‘Do Not Flush’ labeled wipes we collected were fully intact, showcasing why they should never be flushed.”

What Not to Flush—and How We Tell Consumers
According to the Proper Wet Wipes Labeling law, manufacturers of non-flushable wipes, including products such as baby wipes, cleaning wipes, makeup removal wipes and many others that are primarily used in a bathroom setting must include the “Do Not Flush” symbol on the front of the packaging.
The #FlushSmart consumer education campaign promotes the “Do Not Flush” symbol and provides information on what should and should not be flushed. The message shared with consumers is simple: Look for the “Do Not Flush” symbol on wipes packaging, and if you see it – throw the wipe out. Extrapolating from the results of this study, refraining from flushing “Do Not Flush” labeled wipes, paper products and feminine hygiene products would capture over 90% of items clogging sewers.

Source:

INDA

Robot system (c) STFI
20.03.2024

STFI: Highlights of textile research at Techtextil 2024

STFI will be presenting high-end textile products and solutions at Techtextil 2024. The highlights from current research results and innovations provide an insight into the digitalisation of textile production, show applications for 3D printing and smart technical textiles and provide examples of particularly sustainably designed products as well as innovative approaches for protective and medical textiles.

The central highlight of STFI's presence at Techtextil is a robot system that demonstrates the automated processing of a bobbin frame on a small scale. The pick-and-place application demonstrates camera-supported gripping of the bobbins. The robot is part of the STFI's “Textile Factory of the Future” which demonstrates automation solutions for the textile industry in a laboratory environment.

STFI will be presenting high-end textile products and solutions at Techtextil 2024. The highlights from current research results and innovations provide an insight into the digitalisation of textile production, show applications for 3D printing and smart technical textiles and provide examples of particularly sustainably designed products as well as innovative approaches for protective and medical textiles.

The central highlight of STFI's presence at Techtextil is a robot system that demonstrates the automated processing of a bobbin frame on a small scale. The pick-and-place application demonstrates camera-supported gripping of the bobbins. The robot is part of the STFI's “Textile Factory of the Future” which demonstrates automation solutions for the textile industry in a laboratory environment.

From the field of sustainable products and solutions, a sleeping bag with bio-based and therefore vegan filling material and a natural fibre-based composite element for furniture construction, in which LEDs and capacitive proximity sensors for contactless function control have been applied using embroidery technology, will be on show. Printed heating conductor structures demonstrate current research work for the e-mobility of the future, as the individually controllable seat and interior heating should ultimately reduce weight and save energy compared to conventional heating systems.

While a protective suit for special task forces protects against the dangers of a Molotov cocktail attack, a shin guard and a knee brace with patellar ring illustrate the process combination of 3D printing and UV LED cross-linking. Other highlights from lightweight textile construction include the rib of a vertical rudder of an Airbus A320 and a green snowboard made from recycled carbon fibres.

More information:
STFI Techtextil Smart textiles
Source:

Sächsisches Textilforschungsinstitut e.V. (STFI)

KARL MAYER and Grabher: Competence platform for wearables (c) KARL MAYER GROUP
13.03.2024

KARL MAYER and Grabher: Competence platform for wearables

KARL MAYER has already produced a wide range of electrically conductive warp-knitted items for a wide variety of applications in the TEXTILE-CIRCUIT division of its TEXTILE MAKERSPACE, including a sensor shirt, a gesture control system and a conductive charging station. In order to drive the topic of wearables forward, the textile machine manufacturer has signed a cooperation agreement with the Grabher Group and delivered an MJ 52/1-S to the specialist for high-tech textiles in Lustenau. Managing Director Günter Grabher officially inaugurated the key machine for project work in the smart textiles sector in May 2023.

The machine is involved in various research projects, but is also available for new projects and tasks. The smart textiles competence team at KARL MAYER and Grabher is looking forward to supporting the ideas and work of interested parties also outside the research network with its know-how and the possibilities of the MJ 52/1-S.

KARL MAYER has already produced a wide range of electrically conductive warp-knitted items for a wide variety of applications in the TEXTILE-CIRCUIT division of its TEXTILE MAKERSPACE, including a sensor shirt, a gesture control system and a conductive charging station. In order to drive the topic of wearables forward, the textile machine manufacturer has signed a cooperation agreement with the Grabher Group and delivered an MJ 52/1-S to the specialist for high-tech textiles in Lustenau. Managing Director Günter Grabher officially inaugurated the key machine for project work in the smart textiles sector in May 2023.

The machine is involved in various research projects, but is also available for new projects and tasks. The smart textiles competence team at KARL MAYER and Grabher is looking forward to supporting the ideas and work of interested parties also outside the research network with its know-how and the possibilities of the MJ 52/1-S.

The MJ 52/1 S is also an extremely flexible project machine. The 138″ model in gauge E 28 produces a wide range of warp-knitted fabrics and incorporates conductive material directly into the textile surface - exactly where it is needed and with the structure that is required. The basis for the tailor-made fiber placement is KARL MAYER's string bar technology. The system for controlling the pattern guide bars ensures a fast, established textile production process and a high degree of pattern freedom.

Source:

KARL MAYER GROUP

DITF: Modernized spinning plant for sustainable and functional fibres Photo: DITF
Bi-component BCF spinning plant from Oerlikon Neumag
06.03.2024

DITF: Modernized spinning plant for sustainable and functional fibres

The German Institutes of Textile and Fiber Research Denkendorf (DITF) have modernized and expanded their melt spinning pilot plant with support from the State of Baden-Württemberg. The new facility enables research into new spinning processes, fiber functionalization and sustainable fibers made from biodegradable and bio-based polymers.

In the field of melt spinning, the DITF are working on several pioneering research areas, for example the development of various fibers for medical implants or fibers made from polylactide, a sustainable bio-based polyester. Other focal points include the development of flame-retardant polyamides and their processing into fibers for carpet and automotive applications as well as the development of carbon fibers from melt-spun precursors. The development of a bio-based alternative to petroleum-based polyethylene terephthalate (PET) fibers into polyethylene furanoate (PEF) fibers is also new. Bicomponent spinning technology, in which the fibers can be produced from two different components, plays a particularly important role, too.

The German Institutes of Textile and Fiber Research Denkendorf (DITF) have modernized and expanded their melt spinning pilot plant with support from the State of Baden-Württemberg. The new facility enables research into new spinning processes, fiber functionalization and sustainable fibers made from biodegradable and bio-based polymers.

In the field of melt spinning, the DITF are working on several pioneering research areas, for example the development of various fibers for medical implants or fibers made from polylactide, a sustainable bio-based polyester. Other focal points include the development of flame-retardant polyamides and their processing into fibers for carpet and automotive applications as well as the development of carbon fibers from melt-spun precursors. The development of a bio-based alternative to petroleum-based polyethylene terephthalate (PET) fibers into polyethylene furanoate (PEF) fibers is also new. Bicomponent spinning technology, in which the fibers can be produced from two different components, plays a particularly important role, too.

Since polyamide (PA) and many other polymers were developed more than 85 years ago, various melt-spun fibers have revolutionized the textile world. In the field of technical textiles, they can have on a variety of functions: depending on their exact composition, they can for example be electrically conductive or luminescent. They can also show antimicrobial properties and be flame-retardant. They are suitable for lightweight construction, for medical applications or for insulating buildings.

In order to protect the environment and resources, the use of bio-based fibers will be increased in the future with a special focus on easy-to-recycle fibers. To this end, the DITF are conducting research into sustainable polyamides, polyesters and polyolefins as well as many other polymers. Many 'classic', that is, petroleum-based polymers cannot or only insufficiently be broken down into their components or recycled directly after use. An important goal of new research work is therefore to further establish systematic recycling methods to produce fibers of the highest possible quality.

For these forward-looking tasks, a bicomponent spinning plant from Oerlikon Neumag was set up and commissioned on an industrial scale at the DITF in January. The BCF process (bulk continuous filaments) allows special bundling, bulking and processing of the (multifilament) fibers. This process enables the large-scale synthesis of carpet yarns as well as staple fiber production, a unique feature in a public research institute. The system is supplemented by a so-called spinline rheometer. This allows a range of measurement-specific chemical and physical data to be recorded online and inline, which will contribute to a better understanding of fiber formation. In addition, a new compounder will be used for the development of functionalized polymers and for the energy-saving thermomechanical recycling of textile waste.

FET: New Senior Materials and Process Scientist (c) FET
R&D Manager Dr Jonny Hunter (left) welcomes Dr Kristoffer Kortsen, Senior Materials and Process Scientist
28.02.2024

FET: New Senior Materials and Process Scientist

Fibre Extrusion Technology Ltd (FET) of Leeds, UK has appointed Dr Kristoffer Kortsen as Senior Materials and Process Scientist. He will report directly to R&D Manager, Dr Jonny Hunter, who joined FET in early 2023 in a growing Research and Development team.

Kortsen’s main area of work is in Gel Spinning of UHMWPE (Ultra-High Molecular Weight Polyethylene). His contribution will help provide gel spinning expertise and equipment in the near future to a range of industries including medical, aerospace, defence aerospace and marine.

Fibre Extrusion Technology Ltd (FET) of Leeds, UK has appointed Dr Kristoffer Kortsen as Senior Materials and Process Scientist. He will report directly to R&D Manager, Dr Jonny Hunter, who joined FET in early 2023 in a growing Research and Development team.

Kortsen’s main area of work is in Gel Spinning of UHMWPE (Ultra-High Molecular Weight Polyethylene). His contribution will help provide gel spinning expertise and equipment in the near future to a range of industries including medical, aerospace, defence aerospace and marine.

He completed a Master’s in chemistry at KU Leuven, graduating magna cum laude in 2018. For his Master’s placement, he worked on the production of impact modifier additives for PVC at Kaneka Belgium. Continuing a partnership with this international chemical manufacturing company, he joined the Howdle group at the University of Nottingham for a PhD project looking into the industrial potential of scCO2 dispersion polymerisations for additive production. After graduating, he worked in the Shaver group at the University of Manchester, developing a holistic approach to plastics recycling and sustainability across the many stakeholders in the field.

Source:

Fibre Extrusion Technology Ltd (FET)

20.02.2024

Texworld Apparel Sourcing Paris

Nearly 8,000 international visitors came to meet the 1,300 exhibitors at Texworld Apparel Sourcing Paris. This year's event was enhanced by a boldly designed showcase in the heart of Paris.
The offer was broader, more diversified and more accessible. Despite increasing requirements in the industry, visitor numbers remained stable. It was on these two objective notes that the latest edition of the Texworld and Apparel Sourcing Paris trade shows for the fashion industry came to a close, held from 5 to 7 February 2024 at the Paris Expo Porte de Versailles. During these 3 days, nearly 8,000 visitors came to meet 1,300 weaving and clothing companies from 25 countries on the two levels of Hall 7 (7.2 and 7.3).

Nearly 8,000 international visitors came to meet the 1,300 exhibitors at Texworld Apparel Sourcing Paris. This year's event was enhanced by a boldly designed showcase in the heart of Paris.
The offer was broader, more diversified and more accessible. Despite increasing requirements in the industry, visitor numbers remained stable. It was on these two objective notes that the latest edition of the Texworld and Apparel Sourcing Paris trade shows for the fashion industry came to a close, held from 5 to 7 February 2024 at the Paris Expo Porte de Versailles. During these 3 days, nearly 8,000 visitors came to meet 1,300 weaving and clothing companies from 25 countries on the two levels of Hall 7 (7.2 and 7.3).

Visitors: a Euro-Mediterranean Top 5
This unprecedented concentration of international companies in Europe, which exceeds in number that of February 2019, is a reminder of the central role of European markets for the global fashion industry. This position is confirmed by the weight of buyers from the Euromed zone in the visitor structure: Top 5 is concentrated around buyers from France (20% of the total, up sharply on 2023), the UK (8.3%), Italy (7.9%), Turkey (7.2%) and Spain (6.8%). This Parisian event is proving to be an essential point of contact between designers, buyers and suppliers of fabrics or finished products.

Making the offer ever more accessible “Despite the slowdown in the clothing market, Europe remains a major market for textile and finished goods manufacturers" explains Frédéric Bougeard, President of Messe Frankfurt France. “For some players, it is becoming a strategic market to offset the uncertainties weighing on the Russian and American markets" he continues. Our mission is to fulfill our role as a market place, to adapt to these changes and to make the international offer more and more accessible." The February event also highlighted near sourcing. Nine Ukrainian companies grouped together under the banner of the Ukrainian Association of Textile and Leather Industry Companies (Ukrlegprom), as well as Bulgarian, Italian and Dutch companies, were able to take advantage of the show's visibility to include their expertise in the sourcing plans of French and European buyers.

Texworld Apparel Sourcing Paris, a new name for our trade fairs
Reflecting the adaptation of Messe Frankfurt France's strategy to changes in the market, Texworld Evolution Paris is changing its name to Texworld Apparel Sourcing Paris. This move reflects developments in fashion sourcing and the expansion of brand universes. A growing number of buyers now want to be able to select materials, while also sourcing finished products directly to complement collections or expand their range. The new name is accompanied by a new dual baseline - Weaving the future; sourcing I business I solutions - to underline these developments and reinforce the fairs' service-led positioning.

From 1 to 3 July 2024 at Porte de Versailles
This new signature will be fully expressed at the next edition of Texworld Apparel Sourcing Paris, including Avantex and Leatherworld, which will take place from 1 to 3 July 2024 in Hall 7 (7.2 and 7.3) of the Paris Expo Porte de Versailles. The show, which will remain the same size and offer a more selective range of products, will reflect this convergence between textiles and finished products. This session will also have no interaction with the Paris 2024 Olympic Games, which are due to open on 26 July, three weeks after Texworld Apparel Sourcing Paris

Source:

Messe Frankfurt

IHKIB: Green Transformation Journey of the Turkish Apparel Industry (c) Istanbul Apparel Exporters' Association (IHKIB)
TIM and IHKIB President Mustafa Gültepe
05.02.2024

IHKIB: Green Transformation Journey of the Turkish Apparel Industry

The fashion industry, which has strategic importance for the Turkish economy with its value-added production, employment, and exports, came together with representatives of global brands and Laison offices at the 'Green transformation' summit. At the meeting hosted by the Istanbul Apparel Exporters' Association (IHKIB), the studies carried out in the process of adaptation to the Green Deal were put under the spotlight, and the expectations of the Turkish fashion industry from the stakeholders were also expressed.

The opening of the meeting, attended by representatives of relevant ministries and foreign representations, national and international fund providers, as well as brands and buying groups were brought together, was made by Türkiye Exporters Assembly (TIM) and IHKIB President Mustafa Gültepe. In his speech, Gültepe underlined Türkiye's importance in the global apparel industry, by realizing approximately 3.5 percent of world apparel exports. Gültepe continued as follows:

The fashion industry, which has strategic importance for the Turkish economy with its value-added production, employment, and exports, came together with representatives of global brands and Laison offices at the 'Green transformation' summit. At the meeting hosted by the Istanbul Apparel Exporters' Association (IHKIB), the studies carried out in the process of adaptation to the Green Deal were put under the spotlight, and the expectations of the Turkish fashion industry from the stakeholders were also expressed.

The opening of the meeting, attended by representatives of relevant ministries and foreign representations, national and international fund providers, as well as brands and buying groups were brought together, was made by Türkiye Exporters Assembly (TIM) and IHKIB President Mustafa Gültepe. In his speech, Gültepe underlined Türkiye's importance in the global apparel industry, by realizing approximately 3.5 percent of world apparel exports. Gültepe continued as follows:

"As IHKIB, we aim to increase our current annual exports, which are around $20 billion, to $40 billion. The road to the goal goes through Europe and America because the European Union is our largest market in apparel. We export 60 percent of our total apparel exports to EU countries. When we add other European countries and the USA, the ratio approaches 75 percent. While working on alternatives for the $40 billion in exports, we need to focus more on the European and U.S. markets because, as the data shows, the path to $40 billion in apparel exports goes through Europe and the U.S. We already have long-standing collaborations with brands centered in Europe and America. With our knowledge, speed, production quality, design power, and geographical proximity to Europe, we distinguish ourselves from competitors. We took a very important step in the transformation process exactly one year ago. We shared our action plan, which is a road map for our fashion industry's compliance with the Green Deal, with the public on January 30, 2023."

After Mustafa Gültepe's opening speech, Euratex Director General Dirk Vantyghem, Deputy Director General of the Ministry of Trade Bahar Güçlü, and Deputy Secretary General of ITKIB Özlem Güneş made presentations regarding the ongoing efforts in the Green Deal process.

Dirk Vantyghem discussed the sustainability strategy of the textile and apparel industry and the expectations from the EU administration, while Bahar Güçlü provided information about the reflections of legal regulations related to the Green Deal on Türkiye.

Deputy Secretary General of ITKIB Özlem Güneş emphasized the significant opportunity that the Green Deal represents for the Turkish apparel industry, providing comprehensive insights into the efforts conducted by IHKIB regarding the Green Deal adaptation process.

Source:

Istanbul Apparel Exporters' Association (IHKIB)

The research group Water Engineering Innovation Photo: Aarhus University
The research group Water Engineering Innovation, led by Associate Professor Zongsu Wei, works to develop water purification technologies, especially in connection with PFAS. The group collaborates in this project with the research group Robotics from the Department of Mechanical and Production Engineering.
24.01.2024

Artificial intelligence to help remove PFAS

A new research project links some of Denmark's leading researchers in PFAS remediation with artificial intelligence. The goal is to develop and optimise a new form of wastewater and drinking water treatment technology using artificial intelligence for zero-pollution goals.

In a new research and development project, researchers from Aarhus University aim to develop a new technology that can collect and break down perpetual chemicals (PFAS) in one step in a purification process that can be connected directly to drinking water wells and treatment plants.

The project has received funding from the Villum Foundation of DKK 3 million, and it will combine newly developed treatment technology from some of Denmark's leading PFAS remediation researchers with artificial intelligence that can ensure optimal remediation.

A new research project links some of Denmark's leading researchers in PFAS remediation with artificial intelligence. The goal is to develop and optimise a new form of wastewater and drinking water treatment technology using artificial intelligence for zero-pollution goals.

In a new research and development project, researchers from Aarhus University aim to develop a new technology that can collect and break down perpetual chemicals (PFAS) in one step in a purification process that can be connected directly to drinking water wells and treatment plants.

The project has received funding from the Villum Foundation of DKK 3 million, and it will combine newly developed treatment technology from some of Denmark's leading PFAS remediation researchers with artificial intelligence that can ensure optimal remediation.

"In the project, we will design, construct and test a new, automated degradation technology for continuous PFAS degradation. We’re also going to set up an open database to identify significant and limiting factors for degradation reactions with PFAS molecules in the reactor," says Associate Professor Xuping Zhang from the Department of Mechanical and Production Engineering at Aarhus University, who is co-heading the project in collaboration with Associate Professor Zongsu Wei from the Department of Biological and Chemical Engineering.

Ever since the 1940s, PFAS (per- and polyfluoroalkyl substances) have been used in a myriad of products, ranging from raincoats and building materials to furniture, fire extinguishers, solar panels, saucepans, packaging and paints.

However, PFAS have proven to have a number of harmful effects on humans and the environment, and unfortunately the substances are very difficult to break down in nature. As a result, the substances continuously accumulate in humans, animals, and elsewhere in nature.

In Denmark, PFAS have been found in drinking water wells, in surface foam on the sea, in the soil at sites for fire-fighting drills, and in many places elsewhere, for example in organic eggs. It is not possible to remove PFAS from everything, but work is underway to remove PFAS from the groundwater in drinking water wells that have been contaminated with the substances.

Currently, the most common method to filter drinking water for PFAS is via an active carbon filter, an ion-exchange filter, or by using a specially designed membrane. All of these possibilities filter PFAS from the water, but they do not destroy the PFAS. The filters are therefore all temporary, as they have to be sent for incineration to destroy the accumulated PFAS, or they end in landfills.

The project is called 'Machine Learning to Enhance PFAS Degradation in Flow Reactor', and it aims to design and develop an optimal and permanent solution for drinking water wells and treatment plants in Denmark that constantly captures and breaks down PFAS, while also monitoring itself.

"We need to be creative and think outside the box. I see many advantages in linking artificial intelligence with several different water treatment technologies, but integrating intelligence-based optimisation is no easy task. It requires strong synergy between machine learning and chemical engineering, but the perspectives are huge," says Associate Professor Zongsu Wei from the Department of Biological and Chemical Engineering at Aarhus University.

More information:
PFAS Aarhuis University
Source:

Aarhus University
Department of Biological and Chemical Engineering
Department of Mechanical and Production Engineering

Photo: The GoodTextiles Foundation
16.01.2024

GoodTextiles Foundation donates library for Indian primary school

The GoodTextiles Foundation has implemented a school library in the local primary school in Tamil Nadu, India. As a result, the children now have unrestricted access to additional literature.

At the PUPS Naranikuppam primary school in Tamil Nadu, the GoodTextiles Foundation has already provided access to separate sanitary facilities and clean drinking water. Now, with the help of the foundation, a school library has also been set up. The GoodTextiles Foundation is supporting the project with a total of €3,900.00, of which €1,425.00 comes from a donation from Dibella, which was realised with the greenhouse gas premium. The remainder was financed with donations already received.

A large selection of books tailored to the age and interests of the pupils was purchased for the library, as well as a shelf and a seating area. With a new Smart TV, the children can now also be introduced to digital media and how to use it. An air conditioning system provides pleasant temperatures to improve learning conditions. The newly tiled floor, new glass windows and a new glass door also improve the building-specific conditions.

The GoodTextiles Foundation has implemented a school library in the local primary school in Tamil Nadu, India. As a result, the children now have unrestricted access to additional literature.

At the PUPS Naranikuppam primary school in Tamil Nadu, the GoodTextiles Foundation has already provided access to separate sanitary facilities and clean drinking water. Now, with the help of the foundation, a school library has also been set up. The GoodTextiles Foundation is supporting the project with a total of €3,900.00, of which €1,425.00 comes from a donation from Dibella, which was realised with the greenhouse gas premium. The remainder was financed with donations already received.

A large selection of books tailored to the age and interests of the pupils was purchased for the library, as well as a shelf and a seating area. With a new Smart TV, the children can now also be introduced to digital media and how to use it. An air conditioning system provides pleasant temperatures to improve learning conditions. The newly tiled floor, new glass windows and a new glass door also improve the building-specific conditions.

The school is located directly next to a sewing company where the single mothers of the pupils work.

In 2016, the textile company Dibella established the GoodTextiles Foundation with the aim of making textile value chains more sustainable. It raises donations and implements its own funding projects to benefit people at all stages of the textile industry.

Source:

The GoodTextiles Foundation

Photo: akiragiulia, Pixabay
05.01.2024

Research to reduce shed of microplastics during laundering

A collaboration between Deakin University researchers and Australia’s largest commercial linen supplier Simba Global is tackling a critical global issue, the spread of harmful microplastics through our laundry.

Clothing and textiles are estimated to generate up to 35 per cent of the microplastics found in the world’s oceans, making them one of the biggest contributors. But there is still a lot to be learnt about the characteristics of these microplastics and exactly how and why they are generated.

Researchers at the ARC Research Hub for Future Fibres in Deakin’s Institute for Frontier Materials (IFM) have teamed up with Simba Global, a global textile manufacturing and supply company, to better understand the extent and type of microplastics shed when their products are laundered. Simba Global wants to lead the charge to reduce the environmental impact of textiles.

Lead scientist IFM Associate Professor Maryam Naebe said working with an industry partner on the scale of Simba Global meant the research could have a huge real-world impact.

A collaboration between Deakin University researchers and Australia’s largest commercial linen supplier Simba Global is tackling a critical global issue, the spread of harmful microplastics through our laundry.

Clothing and textiles are estimated to generate up to 35 per cent of the microplastics found in the world’s oceans, making them one of the biggest contributors. But there is still a lot to be learnt about the characteristics of these microplastics and exactly how and why they are generated.

Researchers at the ARC Research Hub for Future Fibres in Deakin’s Institute for Frontier Materials (IFM) have teamed up with Simba Global, a global textile manufacturing and supply company, to better understand the extent and type of microplastics shed when their products are laundered. Simba Global wants to lead the charge to reduce the environmental impact of textiles.

Lead scientist IFM Associate Professor Maryam Naebe said working with an industry partner on the scale of Simba Global meant the research could have a huge real-world impact.

Simba Global is the major linen supplier to Australia’s hospitals, hotels and mining camps, resulting in 950,000 tonnes of textile products – including bedsheets, bath towels, scrubs and much more – going through the commercial laundering process each year. It also supplies international markets in New Zealand, Singapore and the US.

“As part of our research, we will investigate potential solutions including the pre-treatment of textiles to reduce the shedding of microplastics, or even increasing the size of the plastics that break down so they can be better captured and removed by filtration during the laundering process,” Associate Professor Naebe said.

“Microplastics are now ubiquitous in the environment, they’re in the air we breathe, the food we eat and the earth we walk on. The magnitude of the problem is bigger than previously thought.

“Of serious concern is the mounting evidence that microplastics are having a negative impact on human and animal health. There are not just physical, but chemical and biological impacts.”

Associate Professor Naebe’s team have taken the first steps in the project, analysing wastewater samples from commercial laundries with high-powered electron microscopes in their Geelong laboratory, part of the largest fibres and textiles research facility in Australia.

The team recently presented a new scientific paper at the Association of Universities for Textiles (AUTEX) Conference 2023, which started the important process of formally categorising these types of microplastics, as well as developing standard terminology and testing methods.

“Because our understanding of microplastics is still in its infancy, we needed to start right at the beginning,” Associate Professor Naebe said.

“We need to have a standard definition of what is a microplastic. Up to this point that has been lacking, which makes it difficult to compare and incorporate other studies in this area.

“We are now developing a systematic method for sampling and identifying microplastics in laundry wastewater. It has been tricky to measure the different sizes, but this is important information to have. For example, there are studies that suggest some sizes of microplastics are causing more issues in certain animals.

“The next step will be establishing an essential method to prevent the release of microplastics from textile laundering. This may involve a coating on the surface of the textile or better ways to collect the waste during the washing process.”

Simba Global Executive Chair Hiten Somaia said the company had a strong focus on sustainability, driven by the business’ purpose statement.

“We are proud to partner with Deakin University in what is the first significant research into textile microplastic pollution in Australia. What we are most excited about is sharing the results of this research with all other textile markets in Australia – including clothing – and putting an end to microplastic pollution from textiles.”

Source:

Deakin University