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09.10.2026

UNIFI combines spun-yarn hand with filament performance and adds fluorine-free water resistance

UNIFI has introduced Cofira™, a yarn platform designed to combine the visual and tactile character of spun yarns with filament-yarn functionality. The construction can incorporate other UNIFI technologies and is offered in virgin and REPREVE polyester, including REPREVE Takeback. 

Recycled options can be traced through FiberPrint and are linked to U-TRUST, GRS and SCS certification claims. The company is also expanding its water-resistant portfolio with Resist2O™ Pro. Rather than relying on a conventional topical durable-water-repellent finish, the technology is engineered for different forms of fabric construction and is described as fluorine-free and PFOA-free below 5 ppb.

UNIFI positions the two developments for apparel, furnishings, gear, accessories and industrial applications. Both will be presented in October at Performance Days in Munich and Functional Fabric Fair in Portland, giving the technologies immediate exposure to performance-material developers.

 

UNIFI has introduced Cofira™, a yarn platform designed to combine the visual and tactile character of spun yarns with filament-yarn functionality. The construction can incorporate other UNIFI technologies and is offered in virgin and REPREVE polyester, including REPREVE Takeback. 

Recycled options can be traced through FiberPrint and are linked to U-TRUST, GRS and SCS certification claims. The company is also expanding its water-resistant portfolio with Resist2O™ Pro. Rather than relying on a conventional topical durable-water-repellent finish, the technology is engineered for different forms of fabric construction and is described as fluorine-free and PFOA-free below 5 ppb.

UNIFI positions the two developments for apparel, furnishings, gear, accessories and industrial applications. Both will be presented in October at Performance Days in Munich and Functional Fabric Fair in Portland, giving the technologies immediate exposure to performance-material developers.

 

09.10.2026

Recover™One blends recycled cotton and polyester without downstream overdyeing

Recover has launched Recover™One, a range of ready-to-spin blends made entirely from recycled cotton and recycled polyester. Cotton-to-polyester ratios can be adjusted for different applications, and the material can be supplied as fiber blends or as fabric through Recover’s supply-chain partners.

The technical point is color management. Recover combines the original colors of textile-waste feedstocks with color-matched, dope-dyed recycled polyester through an intimate blending process.
The company says this creates consistent solid, heather and mélange options without a downstream overdyeing stage, reducing processing time and avoiding an additional wet-finishing step.

Applications cited include single jersey, French terry and fleece. Recover also refers to previously verified life-cycle assessments for its recycled cotton, but the new development is the system-level combination of recycled inputs, predefined color and spinning-ready consistency rather than recycled cotton alone.

Recover has launched Recover™One, a range of ready-to-spin blends made entirely from recycled cotton and recycled polyester. Cotton-to-polyester ratios can be adjusted for different applications, and the material can be supplied as fiber blends or as fabric through Recover’s supply-chain partners.

The technical point is color management. Recover combines the original colors of textile-waste feedstocks with color-matched, dope-dyed recycled polyester through an intimate blending process.
The company says this creates consistent solid, heather and mélange options without a downstream overdyeing stage, reducing processing time and avoiding an additional wet-finishing step.

Applications cited include single jersey, French terry and fleece. Recover also refers to previously verified life-cycle assessments for its recycled cotton, but the new development is the system-level combination of recycled inputs, predefined color and spinning-ready consistency rather than recycled cotton alone.

Source:

 Recover Textile Systems, S.L.

09.10.2026

Circ and Huafon plan 200-tonne-per-day first phase for textile recycling in China

Circ and Huafon are partnering on a multi-phase textile-to-textile recycling site within Huafon’s industrial footprint in China. 
The plant will use Circ’s process for polycotton waste and recover both major material streams: recycled PTA and MEG for polyester production and recycled cellulosic pulp for new textiles.

Phase one is designed to process approximately 200 metric tonnes of textile waste per day, with additional capacity planned. Huafon will invest in the project and contribute engineering, procurement, logistics and commercial capabilities, while Circ brings its recycling technology and a network of brands, manufacturing partners and downstream customers.

Textination has previously covered Circ partnerships in China, including recycled polyester filament production with Shenghong. This project represents a distinct new development.
It concerns construction of recycling capacity itself rather than downstream yarn conversion. Circ is simultaneously developing its first industrial-scale facility in France.

Circ and Huafon are partnering on a multi-phase textile-to-textile recycling site within Huafon’s industrial footprint in China. 
The plant will use Circ’s process for polycotton waste and recover both major material streams: recycled PTA and MEG for polyester production and recycled cellulosic pulp for new textiles.

Phase one is designed to process approximately 200 metric tonnes of textile waste per day, with additional capacity planned. Huafon will invest in the project and contribute engineering, procurement, logistics and commercial capabilities, while Circ brings its recycling technology and a network of brands, manufacturing partners and downstream customers.

Textination has previously covered Circ partnerships in China, including recycled polyester filament production with Shenghong. This project represents a distinct new development.
It concerns construction of recycling capacity itself rather than downstream yarn conversion. Circ is simultaneously developing its first industrial-scale facility in France.

09.10.2026

Textile Exchange puts numbers on textile-to-textile recycling capacity for the first time

Editorial relevance: Very high – establishes a global baseline for available spinnable textile-to-textile recycled fiber and quantifies the gap between waste availability and usable output.

Textile Exchange has published a first global methodology for estimating textile-to-textile recycled fiber availability for apparel and home textiles. Developed with Fashion for Good, Reverse Resources and TEXroad, the framework combines available waste volumes with collection, sorting, processing and technology constraints to estimate how much material can actually become spinnable fiber.

The analysis projects recyclable textile feedstocks to increase from roughly 10 million tonnes in 2025 to around 15 million tonnes by 2030. Yet the quantity of recycled spinnable fiber is estimated at only 1–1.5 million tonnes in 2025, rising to approximately 3–5 million tonnes by 2030.

Editorial relevance: Very high – establishes a global baseline for available spinnable textile-to-textile recycled fiber and quantifies the gap between waste availability and usable output.

Textile Exchange has published a first global methodology for estimating textile-to-textile recycled fiber availability for apparel and home textiles. Developed with Fashion for Good, Reverse Resources and TEXroad, the framework combines available waste volumes with collection, sorting, processing and technology constraints to estimate how much material can actually become spinnable fiber.

The analysis projects recyclable textile feedstocks to increase from roughly 10 million tonnes in 2025 to around 15 million tonnes by 2030. Yet the quantity of recycled spinnable fiber is estimated at only 1–1.5 million tonnes in 2025, rising to approximately 3–5 million tonnes by 2030.

The scope covers post-industrial and post-consumer textiles and both mechanical and chemical recycling of cotton, polyester, nylon, manmade cellulosics, wool and and blends.
Textile Exchange stresses that the figures are directional: data quality remains uneven, and future editions are intended to incorporate more primary data from recyclers and suppliers.

 

FiltXPO™ Innovation Award Graphic (c) Association of the Nonwoven Fabrics Industry INDA
23.09.2026

Finalists for the FiltXPO™ 2026 Innovation Awards published

INDA, the Association of the Nonwoven Fabrics Industry, in partnership with International Filtration News, has announced the finalists for the FiltXPO™ 2026 Innovation Awards. The awards recognize innovative new products introduced to the filtration industry since the last FiltXPO event in 2025.

The FiltXPO Innovation Awards celebrate advancements in filtration technology for air and gas and water and liquid applications. Entries are evaluated on creativity, novelty of approach, uniqueness and technical sophistication.

The winners will be announced during FiltXPO 2026, the premier global event for the filtration industry, Oct. 28-29 at the Minneapolis Convention Center in Minneapolis.

The FiltXPO 2026 Innovation Award finalists are: 

FiltXPO Innovation in Air/Gas Filtration Award 

  • Hifyber: CombiNano
  • Leanfil Oy: Leanfil®
  • Solberg Manufacturing, Inc.: Fully Automated Liquid Management System

 FiltXPO Innovation in Water/Liquid Filtration Award 

INDA, the Association of the Nonwoven Fabrics Industry, in partnership with International Filtration News, has announced the finalists for the FiltXPO™ 2026 Innovation Awards. The awards recognize innovative new products introduced to the filtration industry since the last FiltXPO event in 2025.

The FiltXPO Innovation Awards celebrate advancements in filtration technology for air and gas and water and liquid applications. Entries are evaluated on creativity, novelty of approach, uniqueness and technical sophistication.

The winners will be announced during FiltXPO 2026, the premier global event for the filtration industry, Oct. 28-29 at the Minneapolis Convention Center in Minneapolis.

The FiltXPO 2026 Innovation Award finalists are: 

FiltXPO Innovation in Air/Gas Filtration Award 

  • Hifyber: CombiNano
  • Leanfil Oy: Leanfil®
  • Solberg Manufacturing, Inc.: Fully Automated Liquid Management System

 FiltXPO Innovation in Water/Liquid Filtration Award 

  • Acuriant Technologies Inc.: CUF Flow - More Water, Same Footprint
  • Ahlstrom: Ahlstrom OptiPad™
  • Gessner, a Mativ Brand: GESSNER PFAS Filter Media

Voting for the winner in each category is open on the International Filtration News website. Winners will be announced Oct. 28 at FiltXPO 2026.

Source:

Association of the Nonwoven Fabrics Industry INDA

Microscopic “rebar” adds strength to a new kind of carbon fiber material that features functionalized single-walled carbon nanotubes. WashU engineers developed the manufacturing process to make use of the waste material lignin and to further strengthen carbon fiber for use in the automotive and energy industries. Photo: Yuan-Labor
Microscopic “rebar” adds strength to a new kind of carbon fiber material that features functionalized single-walled carbon nanotubes. WashU engineers developed the manufacturing process to make use of the waste material lignin and to further strengthen carbon fiber for use in the automotive and energy industries.
22.09.2026

Lignin cuts PAN content in carbon fibre

Researchers at Washington University in St. Louis have developed a route in which lignin replaces a substantial share of the polyacrylonitrile (PAN) normally used in carbon fibre. Lignin is generated in large volumes as a by-product of pulp and biorefinery operations. The university reports that PAN use can be cut by half, with corresponding potential reductions in production cost and emissions.

The central technical challenge is mechanical performance. The team functionalises single-walled carbon nanotubes and incorporates them into the lignin-PAN matrix. The nanotubes act as nanoscale reinforcement and promote stronger crystalline alignment during spinning and thermal treatment.

The precursor solution is wet-spun, tension-assisted heat-treated and carbonised. The researchers report that the resulting renewable carbon fibre can reach quality requirements relevant to automotive manufacturing. Aerospace, energy infrastructure, sporting goods and wind energy are cited as additional markets.

Researchers at Washington University in St. Louis have developed a route in which lignin replaces a substantial share of the polyacrylonitrile (PAN) normally used in carbon fibre. Lignin is generated in large volumes as a by-product of pulp and biorefinery operations. The university reports that PAN use can be cut by half, with corresponding potential reductions in production cost and emissions.

The central technical challenge is mechanical performance. The team functionalises single-walled carbon nanotubes and incorporates them into the lignin-PAN matrix. The nanotubes act as nanoscale reinforcement and promote stronger crystalline alignment during spinning and thermal treatment.

The precursor solution is wet-spun, tension-assisted heat-treated and carbonised. The researchers report that the resulting renewable carbon fibre can reach quality requirements relevant to automotive manufacturing. Aerospace, energy infrastructure, sporting goods and wind energy are cited as additional markets.

Source:

Washington University in St. Louis

Ravel - shredded polyester/elastane material ready for processing (c) Ravel
18.09.2026

Ravel raises $8.2m to scale blended-textile recycling

Ravel has closed an oversubscribed $8.2 million seed round led by One Small Planet, with participation from AP Ventures, Overlay Capital, Lichen Ventures and existing investors. The funding is intended to move the Seattle-based recycling company from pilot operation towards commercial readiness.

Its Purification Recycling process is aimed at one of apparel recycling's persistent problems: stretch blends. Elastane is widely used in activewear, denim, underwear and other garments, yet even relatively small percentages can interfere with established recycling routes.

Rather than treating the whole textile as a single feedstock, Ravel is developing a separation and purification route for polyester/elastane blends. The company says recovered material can be converted into recycled plastic pellets for renewed use as a raw material.

The next phase will test more than chemistry. Commercial viability depends on throughput, feedstock variability, separation efficiency, energy and chemical inputs, and the quality of the recovered fractions. Ravel plans to validate the process at production scale with textile partners.

Ravel has closed an oversubscribed $8.2 million seed round led by One Small Planet, with participation from AP Ventures, Overlay Capital, Lichen Ventures and existing investors. The funding is intended to move the Seattle-based recycling company from pilot operation towards commercial readiness.

Its Purification Recycling process is aimed at one of apparel recycling's persistent problems: stretch blends. Elastane is widely used in activewear, denim, underwear and other garments, yet even relatively small percentages can interfere with established recycling routes.

Rather than treating the whole textile as a single feedstock, Ravel is developing a separation and purification route for polyester/elastane blends. The company says recovered material can be converted into recycled plastic pellets for renewed use as a raw material.

The next phase will test more than chemistry. Commercial viability depends on throughput, feedstock variability, separation efficiency, energy and chemical inputs, and the quality of the recovered fractions. Ravel plans to validate the process at production scale with textile partners.

The financing adds capacity at a point where recyclers are increasingly trying to tackle blends that mechanical systems cannot readily return to fibre.

Ben Muller (c) INDA Association of the Nonwoven Fabrics Industry
15.09.2026

INDA Hires Ben Muller as Executive Director

INDA, the Association of the Nonwoven Fabrics Industry, announced today that Ben Muller has joined the association as executive director. Mr. Muller brings more than 20 years of progressive leadership experience spanning nonprofit organizations, corporations and trade associations.

Most recently, Mr. Muller served on the senior executive team of the High Point Market Authority, where he led marketing, public relations and educational programming for one of the world’s largest trade shows. Previously, he held senior brand and marketing leadership positions with Hanesbrands and Kayser-Roth, gaining extensive experience in textile and apparel supply chains. He began his career serving mission-driven organizations, including the American Cancer Society and the National Multiple Sclerosis Society.

Tony Fragnito, INDA’s current president and CEO, will transition to an executive consultant role in January 2027 to support the leadership transition and focus on projects and initiatives designed to expand the reach and participation of the Global Nonwovens Alliance (GNA). His planned retirement will occur in December 2027.

INDA, the Association of the Nonwoven Fabrics Industry, announced today that Ben Muller has joined the association as executive director. Mr. Muller brings more than 20 years of progressive leadership experience spanning nonprofit organizations, corporations and trade associations.

Most recently, Mr. Muller served on the senior executive team of the High Point Market Authority, where he led marketing, public relations and educational programming for one of the world’s largest trade shows. Previously, he held senior brand and marketing leadership positions with Hanesbrands and Kayser-Roth, gaining extensive experience in textile and apparel supply chains. He began his career serving mission-driven organizations, including the American Cancer Society and the National Multiple Sclerosis Society.

Tony Fragnito, INDA’s current president and CEO, will transition to an executive consultant role in January 2027 to support the leadership transition and focus on projects and initiatives designed to expand the reach and participation of the Global Nonwovens Alliance (GNA). His planned retirement will occur in December 2027.

The creation of the executive director position follows the formation of the GNA by INDA and EDANA and represents the next step in the evolution of INDA’s staff leadership to support the alliance. Mr. Muller’s broad leadership experience, strategic marketing expertise and deep understanding of member and industry engagement will be valuable as he leads INDA’s strategic initiatives, oversees operations and represents the interests of the nonwovens industry across the Americas.

“I am honored to join INDA at such a pivotal moment for the industry,” said Mr. Muller. “The formation of the Global Nonwovens Alliance creates an exciting opportunity to strengthen collaboration and expand the value we provide to members. I look forward to listening to our members, learning from their expertise and ensuring INDA continues to be a strong advocate and resource for the industry throughout the Americas.”

“Tony has provided outstanding leadership to INDA during a transformational period for both the association and the global nonwovens industry,” said Mark A. Thornton, chair of the INDA Board of Directors and vice president, Baby Care, Fem Care and Family Care Quality Assurance, The Procter & Gamble Company. “The Board is deeply appreciative of his leadership, commitment to our members and role in helping establish the Global Nonwovens Alliance. As we look ahead, we are confident Ben brings the strategic thinking, industry experience and collaborative leadership needed to build on that strong foundation and guide INDA into its next chapter.”

“Ben’s appointment represents an important step in bringing the vision of the Global Nonwovens Alliance to life,” said Murat Dogru, CEO, GNA. “The strength of the Alliance will depend on combining a truly global perspective with strong regional leadership that understands the priorities of its members. I am very pleased to welcome him and look forward to working closely together as we build the next chapter of the Alliance.”

“Leading INDA has been one of the most rewarding experiences of my career, and I am grateful for the opportunity to work with such a dedicated staff, Board, and membership,” said Fragnito. “It has been a meaningful way to cap off my career, and I look forward to working closely with Ben to ensure a seamless transition of INDA’s business operations and member relationships. I am excited to support him as he helps lead INDA and a partner with Murat as he leads the Global Nonwovens Alliance.”

Source:

INDA Association of the Nonwoven Fabrics Industry

Tacnera: Freudenberg’s innovative technology for silicone-coated secondary foam dressings. © Freudenberg Performance Materials
Tacnera: Freudenberg’s innovative technology for silicone-coated secondary foam dressings.
14.09.2026

Wound care becomes more textile-integrated

Freudenberg Performance Materials and Foshan United Medical Technologies (UMT) will make their first joint appearance at the WUWHS congress in Kuala Lumpur since Freudenberg acquired the Chinese wound-care specialist at the end of July. The combined platform stretches from fibre and nonwoven technologies to finished advanced wound-care solutions.

UMT’s primary dressings include alginate, carboxymethylcellulose (CMC) and chitosan technologies. Alginate variants include silver-containing options for antimicrobial protection, while CMC is used for moisture management and gel formation. Chitosan brings haemostatic and bacteriostatic properties. UMT is also presenting a non-invasive wound-closure system.

Freudenberg Performance Materials and Foshan United Medical Technologies (UMT) will make their first joint appearance at the WUWHS congress in Kuala Lumpur since Freudenberg acquired the Chinese wound-care specialist at the end of July. The combined platform stretches from fibre and nonwoven technologies to finished advanced wound-care solutions.

UMT’s primary dressings include alginate, carboxymethylcellulose (CMC) and chitosan technologies. Alginate variants include silver-containing options for antimicrobial protection, while CMC is used for moisture management and gel formation. Chitosan brings haemostatic and bacteriostatic properties. UMT is also presenting a non-invasive wound-closure system.

Freudenberg complements these primary-care products with Tacnera®, its patented silicone-coated foam-dressing technology. A dual-silicone construction combines secure edge adhesion with a gentler wound-contact layer, while a wave-pattern coating is designed to improve flexibility and exudate management. The wider industrial story is vertical integration: UMT’s capabilities run from fibre production and functionalisation through nonwovens, packaging, sterilisation and regulatory approval.

Source:

Freudenberg Performance Materials Holding GmbH

Photo Richard Harnisch, IÖW
11.09.2026

Lusatia builds a regional fibre economy

A new German research project is exploring how Lusatia can build a regional natural-fibre economy as the former lignite region undergoes structural transformation. Over three years, IÖW and Zittau/Görlitz University of Applied Sciences will examine value chains based on flax, industrial hemp, fibre nettle, miscanthus and residues such as straw and municipal leaves.

The focus is explicitly on industrial applications rather than conventional apparel textiles. Potential outlets include natural-fibre-reinforced plastics, specialty papers, lightweight panels, composites, automotive components and new packaging materials. A regionally resolved material-flow model will map feedstock availability, processing routes, land-use conflicts and possible bottlenecks.

The project treats raw-material availability and industrialisation as one system. Workshops with farmers, processors, manufacturers, municipalities and economic-development actors are intended to produce practical transformation pathways for a circular bioeconomy.

 

A new German research project is exploring how Lusatia can build a regional natural-fibre economy as the former lignite region undergoes structural transformation. Over three years, IÖW and Zittau/Görlitz University of Applied Sciences will examine value chains based on flax, industrial hemp, fibre nettle, miscanthus and residues such as straw and municipal leaves.

The focus is explicitly on industrial applications rather than conventional apparel textiles. Potential outlets include natural-fibre-reinforced plastics, specialty papers, lightweight panels, composites, automotive components and new packaging materials. A regionally resolved material-flow model will map feedstock availability, processing routes, land-use conflicts and possible bottlenecks.

The project treats raw-material availability and industrialisation as one system. Workshops with farmers, processors, manufacturers, municipalities and economic-development actors are intended to produce practical transformation pathways for a circular bioeconomy.

 

Source:

Institut für ökologische Wirtschaftsforschung (IÖW) / Hochschule Zittau/Görlitz

11.09.2026

Recycled polyester heads to New York

Indorama Ventures is supplying fabrics woven with deja™ recycled polyester yarn to Thai label KH Editions. Two looks and accessories from the ten-look Spring/Summer 2027 collection will be shown in New York on 15 September during New York Fashion Week.

The collaboration builds on Indorama Ventures’ RECO programme, launched in 2011 and expanded into RECO Collective in 2023. The initiative combines recycled materials and industry support with emerging designers, aiming to demonstrate that circular inputs can meet the quality and aesthetic requirements of internationally presented fashion.

For the wider value chain, the project is a useful example of material innovation being connected to design, brand building and market access rather than remaining a stand-alone recycling story. Commercial scaling will ultimately depend on consistent quality, available volumes and the ability of recycled yarns to work within established fabric and garment production.

Indorama Ventures is supplying fabrics woven with deja™ recycled polyester yarn to Thai label KH Editions. Two looks and accessories from the ten-look Spring/Summer 2027 collection will be shown in New York on 15 September during New York Fashion Week.

The collaboration builds on Indorama Ventures’ RECO programme, launched in 2011 and expanded into RECO Collective in 2023. The initiative combines recycled materials and industry support with emerging designers, aiming to demonstrate that circular inputs can meet the quality and aesthetic requirements of internationally presented fashion.

For the wider value chain, the project is a useful example of material innovation being connected to design, brand building and market access rather than remaining a stand-alone recycling story. Commercial scaling will ultimately depend on consistent quality, available volumes and the ability of recycled yarns to work within established fabric and garment production.

Source:

Indorama Ventures Public Company Limited

 

11.09.2026

Wool turns sunlight into clean water

Cornell University researchers have demonstrated that polydopamine-dyed wool can serve as a low-cost, renewable material for solar-driven water purification. The approach uses interfacial solar vapor generation, concentrating solar heat at the water surface while a textile structure transports water and converts it into vapor.

The strongest configuration used ultrablack wool positioned vertically and illuminated from both sides. It produced 2.43 kilograms of water per square metre of fabric per hour, while polydopamine-only wool achieved 2.21 kilograms. Both rates were nearly twice those reported for conventional horizontal two-dimensional evaporation systems. The material also operated continuously for ten hours without salt accumulation.

Performance depends on fibre choice, dye chemistry, surface structure and textile geometry acting together. Salt levels in the collected water were below the World Health Organization drinking-water threshold. Future work will test rainwater and wastewater and improve water-collection designs.

 

Cornell University researchers have demonstrated that polydopamine-dyed wool can serve as a low-cost, renewable material for solar-driven water purification. The approach uses interfacial solar vapor generation, concentrating solar heat at the water surface while a textile structure transports water and converts it into vapor.

The strongest configuration used ultrablack wool positioned vertically and illuminated from both sides. It produced 2.43 kilograms of water per square metre of fabric per hour, while polydopamine-only wool achieved 2.21 kilograms. Both rates were nearly twice those reported for conventional horizontal two-dimensional evaporation systems. The material also operated continuously for ten hours without salt accumulation.

Performance depends on fibre choice, dye chemistry, surface structure and textile geometry acting together. Salt levels in the collected water were below the World Health Organization drinking-water threshold. Future work will test rainwater and wastewater and improve water-collection designs.

 

Source:

Cornell University / Cornell Chronicle