2022
DOI: 10.1002/pol.20210922
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Biodegradation of water‐soluble and water‐dispersible polymers for agricultural, consumer, and industrial applications—Challenges and opportunities for sustainable materials solutions

Abstract: The development of more sustainable material solutions is one of the key challenges today. New materials are subject to an overall risk assessment of which their impact on the environment is an important aspect. The biodegradability of a material may support a positive risk assessment. Water‐soluble and water‐dispersible polymers are widely used in daily life in a very broad range of applications. In anticipation of a further tightening of regulatory requirements and as a consequence of the introduction of sus… Show more

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Cited by 14 publications
(32 citation statements)
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“…In this context, replacing nonbiodegradable with biodegradable WSPs offers a unique benefit: biodegradable WSPs undergo breakdown to defined metabolic end products. ,, In this Commentary, we highlight key concepts on the biodegradation of WSPs in natural and engineered environments and discuss experimental approaches to test WSP biodegradation as well as challenges associated with these approaches. The environmental fate of nonbiodegradable WSPs is beyond the scope of this commentary …”
Section: Water-soluble Polymers (Wsps): Use Areas and Entry Pathways ...mentioning
confidence: 99%
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“…In this context, replacing nonbiodegradable with biodegradable WSPs offers a unique benefit: biodegradable WSPs undergo breakdown to defined metabolic end products. ,, In this Commentary, we highlight key concepts on the biodegradation of WSPs in natural and engineered environments and discuss experimental approaches to test WSP biodegradation as well as challenges associated with these approaches. The environmental fate of nonbiodegradable WSPs is beyond the scope of this commentary …”
Section: Water-soluble Polymers (Wsps): Use Areas and Entry Pathways ...mentioning
confidence: 99%
“…Biodegradation tests of WSPs need to be both scientifically rigorous and highly practical. We acknowledge that biodegradability is but one desired property of WSPs that ought not to interfere with other warranted properties of the WSP during use and production (e.g., functionality, stability, nontoxicity, and sustainable feedstock sourcing) . An interdisciplinary approach with expertise from polymer chemistry, environmental chemistry, microbiology, and environmental engineering, among other fields, is therefore needed for the development of biodegradable WSPs.…”
Section: Testing Wsp Biodegradationmentioning
confidence: 99%
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“…In addition, incrustation inhibition and dispersion capacity make N VP-based polymers indispensable additives in high-performance home-care formulations. 20 While the amide side chains are able to facilitate the biodegradation process to a certain degree, the C–C backbones of the N VP-based polymers are hardly degradable. The environmental persistence of these materials creates a need for the application of green chemistry principles and the sustainable development of such polymers.…”
Section: Introductionmentioning
confidence: 99%