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Reuse of textiles
The production of textiles is resource-intensive, using energy, chemicals and water to produce the fibres, yarns and fabrics that are then made into textile products. Did you know that as much as 80 per cent of a textile's total environmental and climate impact occurs in the production phase?
If we transform our consumption culture and increase the use of the textile products already produced, we can reduce climate impact and water use by up to 50 per cent.
Reusing textile materials is an integral part of a circular economy. IVL Swedish Environmental Research Institute can help you and your company convert your textile value chain to become resource-efficient so that you both reduce climate impact and strengthen the profitability of your business. Are there residual streams from your company's production that can be taken care of and refined into a new product? What commitments in your business model can extend the lifecycle of your products and ensure they are reused again and again?
Design is crucial to ensure that textile products on the market are of high quality, made from recycled fibres and produced with respect for social rights and the environment. However, innovative business models that extend the value of textiles through different types of services and traceability to increase transparency in the textile value chain are also important.
IVL can help you analyse and evaluate upstream and downstream activities in your textile value chain to enable reuse.
Hire IVL for:
- Mapping and analysing streams suitable for reuse, development of tests and implementation for increased reuse of textile materials.
- Dialogue meetings and workshops with actors in the value chain to enable collaboration between research and industry.
- Circular business models for the reuse of textile materials.
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- Chemical support
- Resource flows and industrial symbiosis in the food sector
- Climate-adapted procurement
- EU compliance for cosmetic products
- WASH Governance
- Critical raw materials
- Permit applications and environmental impact assessments
- Safe and Sustainable by Design (SSbD)
- Biodiversity and ecosystems according to ESRS E4
- Sustainability management for small and medium-sized enterprises
- Transition planning according to the CSRD directive
- Detection of amphibians using environmental DNA
- DNSH criteria pollutants
- Sustainable ports
- Tools for Sustainable Construction – One stop shop
- Preparation of Status Reports
- Impact on Forests and Soil
- Measuring and reporting according to the TNFD framework
- PFAS simulator
- Textile collection and sorting
- Reuse of textiles
- Recycling of textiles
- Life cycle assessment of textiles
- Increased resource efficiency through reduced food waste
- Survey and purification of PFASs in soil and water
- PFAS analysis
- PFAS purification of water
- Analysis and visualization of environmental data
- Analyzing biodiversity with (eDNA)
- Digital environmental information for a circular construction industry eBVD
- Sustainability reporting as per CSRD
- EU's taxonomy for sustainable investments
- Management of marine ecosystems
- Water analyzes
- Spread calculations and modeling
- Reduce climate impact from construction
- Analysis of wastewater
- Analysis of soil and sediment
- Analysis of biota
- Air analyzes
- Water surveillance
- Water purification
- Underwater noise
- Traceability of materials
- Test beds, pilot plants and demonstrators
- Sustainable procurement
- Sustainable harbours and marinas
- Sustainable and resource-efficient energy solutions
- Sustainability label for furniture (Möbelfakta)
- Support for legal requirements for chemicals
- Strategies for climate-neutral properties
- Strategic sustainability work and sustainability management
- Socially sustainable adjustment
- Ship fuels and energy efficiency improvements
- Ship Emissions
- Dangerous Goods Safety Advisor
- Renewable fuels and biofuels
- Recycling and circular flows
- Net zero emissions of greenhouse gases
- Nature-based solutions in an urban environment
- Monitoring of air and precipitation
- Mobility for property owners
- Measures and strategies for increased circularity and resource efficiency
- Measure and evaluate biological diversity
- Marine micro-debris
- Life cycle analyzes
- Industrial symbiosis
- Industrial environmental issues
- Independent advice for effective climate compensation
- Greenhouse gas emissions
- Good indoor environment
- Forest diversity and ecosystem services
- Environmental product declaration (EPD)
- Environmental assessment system for construction products (BASTA)
- Energy and climate smart buildings
- Ecodesign in product development
- Digitize buildings
- Digital registration of construction product declarations (eBVD)
- Diffusion sampling
- Contaminated areas and oil damage
- Climate goals according to Science Based Targets
- Climate declaration of buildings, BM
- Climate assessment of energy measures (Tidstegen)
- Climate adaptation and vulnerability analyzes
- Clean Shipping Index
- Circular economy in a non-toxic environment
- Circular economy
- Circular construction and recycling in the construction sector
- Chemical health risks in the workplace
- Chart and make ecosystem services visible
- Build sustainably in a changing climate
- Biological tests
- Biogas solutions
- Aquaculture
- Appealing and socially sustainable residential areas
- Analysis of products and materials
- Analysis of pollutants in the work environment
- Analysis of indoor environment
- Anaerobic digestion experiments
- Accidents and safe workplace
- Research projects
- About IVL
- Publications
- Career
-
Our offer
- Digital services
- International
- Our focus areas
-
Our services
- Chemical support
- Resource flows and industrial symbiosis in the food sector
- Climate-adapted procurement
- EU compliance for cosmetic products
- WASH Governance
- Critical raw materials
- Permit applications and environmental impact assessments
- Safe and Sustainable by Design (SSbD)
- Biodiversity and ecosystems according to ESRS E4
- Sustainability management for small and medium-sized enterprises
- Transition planning according to the CSRD directive
- Detection of amphibians using environmental DNA
- DNSH criteria pollutants
- Sustainable ports
- Tools for Sustainable Construction – One stop shop
- Preparation of Status Reports
- Impact on Forests and Soil
- Measuring and reporting according to the TNFD framework
- PFAS simulator
- Textile collection and sorting
- Reuse of textiles
- Recycling of textiles
- Life cycle assessment of textiles
- Increased resource efficiency through reduced food waste
- Survey and purification of PFASs in soil and water
- PFAS analysis
- PFAS purification of water
- Analysis and visualization of environmental data
- Analyzing biodiversity with (eDNA)
- Digital environmental information for a circular construction industry eBVD
- Sustainability reporting as per CSRD
- EU's taxonomy for sustainable investments
- Management of marine ecosystems
- Water analyzes
- Spread calculations and modeling
- Reduce climate impact from construction
- Analysis of wastewater
- Analysis of soil and sediment
- Analysis of biota
- Air analyzes
- Water surveillance
- Water purification
- Underwater noise
- Traceability of materials
- Test beds, pilot plants and demonstrators
- Sustainable procurement
- Sustainable harbours and marinas
- Sustainable and resource-efficient energy solutions
- Sustainability label for furniture (Möbelfakta)
- Support for legal requirements for chemicals
- Strategies for climate-neutral properties
- Strategic sustainability work and sustainability management
- Socially sustainable adjustment
- Ship fuels and energy efficiency improvements
- Ship Emissions
- Dangerous Goods Safety Advisor
- Renewable fuels and biofuels
- Recycling and circular flows
- Net zero emissions of greenhouse gases
- Nature-based solutions in an urban environment
- Monitoring of air and precipitation
- Mobility for property owners
- Measures and strategies for increased circularity and resource efficiency
- Measure and evaluate biological diversity
- Marine micro-debris
- Life cycle analyzes
- Industrial symbiosis
- Industrial environmental issues
- Independent advice for effective climate compensation
- Greenhouse gas emissions
- Good indoor environment
- Forest diversity and ecosystem services
- Environmental product declaration (EPD)
- Environmental assessment system for construction products (BASTA)
- Energy and climate smart buildings
- Ecodesign in product development
- Digitize buildings
- Digital registration of construction product declarations (eBVD)
- Diffusion sampling
- Contaminated areas and oil damage
- Climate goals according to Science Based Targets
- Climate declaration of buildings, BM
- Climate assessment of energy measures (Tidstegen)
- Climate adaptation and vulnerability analyzes
- Clean Shipping Index
- Circular economy in a non-toxic environment
- Circular economy
- Circular construction and recycling in the construction sector
- Chemical health risks in the workplace
- Chart and make ecosystem services visible
- Build sustainably in a changing climate
- Biological tests
- Biogas solutions
- Aquaculture
- Appealing and socially sustainable residential areas
- Analysis of products and materials
- Analysis of pollutants in the work environment
- Analysis of indoor environment
- Anaerobic digestion experiments
- Accidents and safe workplace
- Research projects
- About IVL
- Publications
- Career