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01.09.2026

MELANGE project moves colour design upstream in interior-textile production

The new Horizon Europe project MELANGE aims to reorganise how colour is designed and applied in interior textiles. Rather than treating coloration mainly as a finishing-stage operation, the project moves colour decisions upstream and explores fibre-stage technologies including spin, dope and solution dyeing, as well as the use of pre-coloured recycled fibres. The rationale is that conventional coloration consumes substantial water, energy and chemicals, while the pursuit of near-perfect uniformity can drive additional trials and material losses.

The new Horizon Europe project MELANGE aims to reorganise how colour is designed and applied in interior textiles. Rather than treating coloration mainly as a finishing-stage operation, the project moves colour decisions upstream and explores fibre-stage technologies including spin, dope and solution dyeing, as well as the use of pre-coloured recycled fibres. The rationale is that conventional coloration consumes substantial water, energy and chemicals, while the pursuit of near-perfect uniformity can drive additional trials and material losses.

MELANGE brings together nine partners from seven European countries under the leadership of Aalto University, with Textile ETP responsible for dissemination and stakeholder engagement. The project proposes treating variation as a design feature rather than automatically as a defect. It draws inspiration from Prato’s practice of blending pre-coloured recycled fibres by shade to avoid re-dyeing. According to the project communication, the approach aims to reduce water and chemical use by up to 50% compared with conventional finishing-stage processes. Business models, B2B marketing, standards and policy are also part of the work.

Source:

Textile ETP / MELANGE consortium

01.09.2026

bluesign links textile-mill water management to input-stream chemistry

bluesign argues that water management in textile wet processing starts with the chemicals and raw materials entering the process. Its core point is that water in dyeing and finishing is not simply a resource but a carrier for chemistry. What enters the process therefore affects water demand, wastewater load, air emissions, workplace exposure and potential residues in the finished textile.

The input-stream-management approach intervenes before wastewater treatment. By selecting appropriate chemical products and controlling the process, substances of concern should ideally be prevented from entering the system in the first place. For mills, the point is operationally important because investment in water and effluent treatment alone does not address the source of many impacts. The article provides useful context as chemical restrictions, water scarcity and supply-chain transparency requirements become more demanding.

bluesign argues that water management in textile wet processing starts with the chemicals and raw materials entering the process. Its core point is that water in dyeing and finishing is not simply a resource but a carrier for chemistry. What enters the process therefore affects water demand, wastewater load, air emissions, workplace exposure and potential residues in the finished textile.

The input-stream-management approach intervenes before wastewater treatment. By selecting appropriate chemical products and controlling the process, substances of concern should ideally be prevented from entering the system in the first place. For mills, the point is operationally important because investment in water and effluent treatment alone does not address the source of many impacts. The article provides useful context as chemical restrictions, water scarcity and supply-chain transparency requirements become more demanding.

31.08.2026

Circ and Shenghong move textile-recycled polyester into commercial filament yarn production


US textile-to-textile recycler Circ has entered into a partnership with Shenghong Chemical Fiber New Material for the commercial production of polyester filament yarn using Circ’s recycled material. Shenghong will purchase Circ PET chip and manufacture recycled-content filament yarn at commercial scale. For Circ, the agreement expands access to one of China’s major fibre producers and creates an additional route to market for polyester recovered from textile waste. For brands and mills, the key point is that textile-to-textile feedstock is moving closer to established high-volume yarn manufacturing structures. The partnership also underlines that scaling chemical recycling depends not only on polymer recovery but on robust downstream relationships with fibre and yarn producers.


US textile-to-textile recycler Circ has entered into a partnership with Shenghong Chemical Fiber New Material for the commercial production of polyester filament yarn using Circ’s recycled material. Shenghong will purchase Circ PET chip and manufacture recycled-content filament yarn at commercial scale. For Circ, the agreement expands access to one of China’s major fibre producers and creates an additional route to market for polyester recovered from textile waste. For brands and mills, the key point is that textile-to-textile feedstock is moving closer to established high-volume yarn manufacturing structures. The partnership also underlines that scaling chemical recycling depends not only on polymer recovery but on robust downstream relationships with fibre and yarn producers.

31.08.2026

Better Cotton and Avalo use AI to accelerate climate-resilient cotton breeding

The Better Cotton Initiative (BCI) has partnered with agricultural technology company Avalo to accelerate the breeding of more climate-resilient cotton. Avalo uses an AI-enabled platform to identify genetic traits relevant to locally adapted plants that require less water and fertiliser. According to BCI, the approach can shorten the time needed to develop new varieties, an increasingly important factor as heat, water scarcity and shifting rainfall patterns affect cotton-growing regions. Avalo has already worked with BCI to enrol a significant number of new producers for the 2026 season and has tested a digital platform for collecting and reporting programme data. The partnership therefore connects plant breeding, digital data management and the requirements of an international cotton standard.

The Better Cotton Initiative (BCI) has partnered with agricultural technology company Avalo to accelerate the breeding of more climate-resilient cotton. Avalo uses an AI-enabled platform to identify genetic traits relevant to locally adapted plants that require less water and fertiliser. According to BCI, the approach can shorten the time needed to develop new varieties, an increasingly important factor as heat, water scarcity and shifting rainfall patterns affect cotton-growing regions. Avalo has already worked with BCI to enrol a significant number of new producers for the 2026 season and has tested a digital platform for collecting and reporting programme data. The partnership therefore connects plant breeding, digital data management and the requirements of an international cotton standard.

Source:

Better Cotton Initiative

28.08.2026

NC State joins $160 million initiative for biobased fibre materials

NC State University is a core partner in the BRIDGES Engine initiative backed by the US National Science Foundation, with up to $160 million available over ten years. A central focus is the development of miscanthus and switchgrass as feedstocks for biobased products.

The plant fibres are intended for applications including automotive, construction and packaging. NC State will contribute techno-economic assessment, sustainability analysis and processing expertise to convert agricultural feedstocks into fibre materials suitable for industrial use.

For technical textiles, the initiative is particularly relevant because it goes beyond laboratory-scale material development and aims to build supply chains, processing capacity and regional markets in parallel.

NC State University is a core partner in the BRIDGES Engine initiative backed by the US National Science Foundation, with up to $160 million available over ten years. A central focus is the development of miscanthus and switchgrass as feedstocks for biobased products.

The plant fibres are intended for applications including automotive, construction and packaging. NC State will contribute techno-economic assessment, sustainability analysis and processing expertise to convert agricultural feedstocks into fibre materials suitable for industrial use.

For technical textiles, the initiative is particularly relevant because it goes beyond laboratory-scale material development and aims to build supply chains, processing capacity and regional markets in parallel.

Source:

NC State University

Valmet 3D Fiber technology combines high capacity and speed, automation, and resource efficiency to produce high-quality molded fiber packaging. Photo by VALMET
Valmet 3D Fiber technology combines high capacity and speed, automation, and resource efficiency to produce high-quality molded fiber packaging.
28.08.2026

Valmet and Metsä scale 3D fibre forming to commercial production

Metsä Group has selected Valmet to supply what the companies describe as the world’s first commercial-scale production line for Valmet’s 3D Fiber technology. The line will be installed in Äänekoski and is scheduled to start up in 2028, with a nominal capacity of more than 100 million three-dimensional fibre products per year.

The process converts cellulose fibres directly into lightweight yet rigid end products. Valmet combines fibre processing, forming, automation and final packing in an integrated production chain. The technology has been co-developed with Metsä Spring since 2020 and was initially validated in a demonstration plant.

Although packaging is the primary target market, the development is relevant to the textile and fibre sector because it demonstrates how fibre-based structures and forming technologies are moving into three-dimensional industrial applications.

Metsä Group has selected Valmet to supply what the companies describe as the world’s first commercial-scale production line for Valmet’s 3D Fiber technology. The line will be installed in Äänekoski and is scheduled to start up in 2028, with a nominal capacity of more than 100 million three-dimensional fibre products per year.

The process converts cellulose fibres directly into lightweight yet rigid end products. Valmet combines fibre processing, forming, automation and final packing in an integrated production chain. The technology has been co-developed with Metsä Spring since 2020 and was initially validated in a demonstration plant.

Although packaging is the primary target market, the development is relevant to the textile and fibre sector because it demonstrates how fibre-based structures and forming technologies are moving into three-dimensional industrial applications.

Source:

VALMET

(c) Eastman Naia™
18.08.2026

Naia™ from Eastman: First appearance at Apparel Sourcing Show Guatemala

At Booth 50, Eastman will present U.S.-produced Naia™ staple fibers and filament yarns for casualwear and activewear, supporting closer collaboration across the regional value chain.

As brands and retailers explore more diversified and responsive sourcing networks, the Naia™ from Eastman brand is strengthening its engagement with the textile and apparel value chain across the western hemisphere. From August 18 to 20, the company will participate for the first time in Apparel Sourcing Show Guatemala, a regional meeting point for apparel sourcing, manufacturing and nearshoring.

Produced in the United States, Naia™ offers regional manufacturers, brands and sourcing teams a cellulosic fiber option within the western hemisphere, creating opportunities for direct dialogue and new collaborations across the regional textile and apparel supply chain.

At Booth 50, Eastman will present U.S.-produced Naia™ staple fibers and filament yarns for casualwear and activewear, supporting closer collaboration across the regional value chain.

As brands and retailers explore more diversified and responsive sourcing networks, the Naia™ from Eastman brand is strengthening its engagement with the textile and apparel value chain across the western hemisphere. From August 18 to 20, the company will participate for the first time in Apparel Sourcing Show Guatemala, a regional meeting point for apparel sourcing, manufacturing and nearshoring.

Produced in the United States, Naia™ offers regional manufacturers, brands and sourcing teams a cellulosic fiber option within the western hemisphere, creating opportunities for direct dialogue and new collaborations across the regional textile and apparel supply chain.

At Booth 50, Eastman will showcase both Naia™ staple fiber and filament yarn offerings for casualwear and activewear. A key focus of the presentation will be Naia™ On The Move, an application designed for active, everyday wear and built around Naia™ Renew staple fiber, made with 40% GRS-certified recycled materials* and 60% sustainably sourced wood pulp. The application demonstrates how Naia™ fiber blends can deliver next-to-skin comfort, breathability and a soft hand feel, together with moisture management and quick-dry performance. 

Developed to help garments stay fresh and comfortable throughout the day, Naia™ On The Move highlights the versatility needed for urban lifestyles, where changing temperatures, humidity and active routines call for adaptable apparel solutions. 

“The western hemisphere is becoming an increasingly important part of the sourcing conversation,” said Chad Doub, Global Segment Market Manager, Casual Wear and Home at Eastman. “Our participation in Guatemala gives us the opportunity to build new relationships and explore how Naia™ staple fibers and filament yarns can support innovative fabric developments for casualwear and activewear. We believe Naia™ On The Move, our application designed for this segment, is particularly well suited to the needs of the region and of the brands sourcing here, where versatility, comfort and performance are increasingly important.”

The Apparel Sourcing Show brings together businesses operating across the textile and apparel supply chain, including textiles, machinery, accessories, services and manufacturing. Eastman’s participation also builds on its engagement with the Americas Apparel Producers’ Network.

Following the 2026 pro:Americas Annual Conference in May, the Guatemala show represents another step in the company’s efforts to connect with businesses developing more integrated supply chains across the region.