https://www.avient.com/knowledge-base/case-study/reduce-carbon-footprint-replacing-traditional-materials?sust[]=1165
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Reduce Carbon Footprint by Replacing Traditional Materials
Avient developed a technology suite that uses specialty engineered polyketone (PK) thermoplastics and helps our customers meet their goals to lower the carbon footprint of their products versus traditional materials, like PA66 and PA6.
The new materials also offer sustainability benefits over the product lifecycle through carbon footprint reductions compared to competitive materials—PK base resin production emits up to 61 percent less carbon dioxide (CO2) than nylon and POM.
https://www.avient.com/knowledge-base/case-study/reduce-carbon-footprint-replacing-traditional-materials?sust[]=1136
Home //
Reduce Carbon Footprint by Replacing Traditional Materials
Avient developed a technology suite that uses specialty engineered polyketone (PK) thermoplastics and helps our customers meet their goals to lower the carbon footprint of their products versus traditional materials, like PA66 and PA6.
The new materials also offer sustainability benefits over the product lifecycle through carbon footprint reductions compared to competitive materials—PK base resin production emits up to 61 percent less carbon dioxide (CO2) than nylon and POM.
https://www.avient.com/knowledge-base/case-study/reduce-carbon-footprint-replacing-traditional-materials?pname[]=19476
Home //
Reduce Carbon Footprint by Replacing Traditional Materials
Avient developed a technology suite that uses specialty engineered polyketone (PK) thermoplastics and helps our customers meet their goals to lower the carbon footprint of their products versus traditional materials, like PA66 and PA6.
The new materials also offer sustainability benefits over the product lifecycle through carbon footprint reductions compared to competitive materials—PK base resin production emits up to 61 percent less carbon dioxide (CO2) than nylon and POM.
https://www.avient.com/knowledge-base/case-study/reduce-carbon-footprint-replacing-traditional-materials?ind[]=6595
Home //
Reduce Carbon Footprint by Replacing Traditional Materials
Avient developed a technology suite that uses specialty engineered polyketone (PK) thermoplastics and helps our customers meet their goals to lower the carbon footprint of their products versus traditional materials, like PA66 and PA6.
The new materials also offer sustainability benefits over the product lifecycle through carbon footprint reductions compared to competitive materials—PK base resin production emits up to 61 percent less carbon dioxide (CO2) than nylon and POM.
https://www.avient.com/industries/healthcare/labware-diagnostics
Call on our polymer experts to help you select healthcare diagnostic materials for laboratory research and testing.
Our polymer solutions and engineering materials include colorants for identification and differentiation, additives for added properties and functionalities, and thermoplastics that can withstand harsh chemicals and reagents.
Catheter Materials & Medical Tubing
https://www.avient.com/industries/building-construction/leds-lighting
That means there's a need for more efficient manufacturing with innovative new materials.
Catheter Materials & Medical Tubing
Avient has a broad portfolio of sustainable solutions that can help customers meet their innovation and sustainable goals through material science.
https://www.avient.com/industries/energy/electronic-equipment
Your products need to function, often non-stop, and the materials you select need to be dependable.
Catheter Materials & Medical Tubing
https://www.avient.com/news/new-black-colorants-polyone-support-circular-economy-turn-former-waste-recyclable-packaging
CLEVELAND – July 8, 2019 – PolyOne today launched a new portfolio of infrared- detectable black colorants for plastic packaging, which will allow formerly unrecyclable black waste plastic to be properly sorted at recycling facilities.
Detection and sorting of carbon black-filled plastic waste in material recovery facilities is a vexing issue for the packaging and recycling industries, because the equipment relies on the reflectance of near infrared (NIR) wavelengths.
Barrier technologies that preserve the shelf-life and quality of food, beverages, medicine and other perishable goods through high-performance materials that require less plastic
https://www.avient.com/products/fiber-line-engineered-fiber-solutions/high-performance-synthetic-fibers/ultra-high-molecular-weight-polyethylene
https://www.avient.com/knowledge-base/article/how-lightweight-automotive-components?ind[]=6601
Three Automotive Parts Primed for Metal-to-Plastic Conversion
However, long-fiber thermoplastic (LFT) technology addresses these concerns, bridging the gap between short-fiber reinforced formulations and over-engineered materials.
Electrically conductive and static dissipative materials can provide the necessary protection without the weight and design constraints of traditional metal components.