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Seawater‐Degradable Polymers—Fighting the Marine Plastic Pollution

机译:海水可降解聚合物 - 斗争海洋塑料污染

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摘要

Polymers shape human life but they also have been identified as pollutants in the oceans due to their long lifetime and low degradability. Recently, various researchers have studied the impact of (micro)plastics on marine life, biodiversity, and potential toxicity. Even if the consequences are still heavily discussed, prevention of unnecessary waste is desired. Especially, newly designed polymers that degrade in seawater are discussed as potential alternatives to commodity polymers in certain applications. Biodegradable polymers that degrade in vivo (used for biomedical applications) or during composting often exhibit too slow degradation rates in seawater. To date, no comprehensive summary for the degradation performance of polymers in seawater has been reported, nor are the studies for seawater‐degradation following uniform standards. This review summarizes concepts, mechanisms, and other factors affecting the degradation process in seawater of several biodegradable polymers or polymer blends. As most of such materials cannot degrade or degrade too slowly, strategies and innovative routes for the preparation of seawater‐degradable polymers with rapid degradation in natural environments are reviewed. It is believed that this selection will help to further understand and drive the development of seawater‐degradable polymers.
机译:聚合物形状的人类生活,但由于它们的长寿和低降低性,它们也已被鉴定为海洋中的污染物。最近,各种研究人员研究了(微)塑料对海洋生物,生物多样性和潜在毒性的影响。即使仍然讨论后果,也需要预防不必要的浪费。特别是,在某些应用中讨论了在海水中降解的新设计聚合物作为商品聚合物的潜在替代品。可生物降解的聚合物在体内降解(用于生物医学应用)或在堆肥期间通常表现出过度缓慢的海水降解速率。迄今为止,报告了海水中聚合物的降解性能的全面摘要,均匀标准之后的海水降解研究也不是研究。本综述总结了影响几种可生物降解的聚合物或聚合物共混物的海水中的概念,机制和影响降解过程的因素。由于大多数此类材料不能降低或降低太慢,综述了在自然环境中迅速降解的海水可降解聚合物的策略和创新途径。据信,这种选择将有助于进一步理解和推动海水可降解聚合物的发展。

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