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Microplastics in Ecosystems: From Current Trends to Bio-Based Removal Strategies

机译:生态系统中的微塑料:从当前趋势到生物的去除策略

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摘要

Plastics are widely used due to their excellent properties, inexpensiveness and versatility leading to an exponential consumption growth during the last decades. However, most plastic does not biodegrade in any meaningful sense; it can exist for hundreds of years. Only a small percentage of plastic waste is recycled, the rest being dumped in landfills, incinerated or simply not collected. Waste-water treatment plants can only minimize the problem by trapping plastic particles of larger size and some smaller ones remain within oxidation ponds or sewage sludge, but a large amount of microplastics still contaminate water streams and marine systems. Thus, it is clear that in order to tackle this potential ecological disaster, new strategies are necessary. This review aims at briefly introducing the microplastics threat and critically discusses emerging technologies, which are capable to efficiently clean aqueous media. Special focus is given to novel greener approaches based on lignocellulose flocculants and other biomaterials. In the final part of the present review, it was given a proof of concept, using a bioflocculant to remove micronized plastic from aqueous medium. The obtained results demonstrate the huge potential of these biopolymers to clean waters from the microplastics threat, using flocculants with appropriate structure.
机译:由于其优异的性质,廉价和多功能性而导致塑料广泛使用,从而导致在过去十年中导致指数消耗增长。然而,大多数塑料在任何有意义的意义上都不会生物降解;它可以存在数百年。只有一小部分塑料废物被回收,其余的被倾倒在垃圾填埋场,焚烧或根本没有收集。废水处理厂只能通过捕获较大尺寸的塑料颗粒和一些较小的污水污泥留在氧化池或污水污泥中的问题,而是污染水流和海洋系统的塑料颗粒。因此,很明显,为了解决这种潜在的生态灾害,需要新的策略。该审查旨在简要介绍微薄的威胁,并批判性讨论新兴技术,能够有效地清洁水性介质。特别焦点基于木质纤维素絮凝剂和其他生物材料的新型绿色方法。在本综述的最后一部分中,使用生物絮凝剂从水性介质中除去微生化塑料的概念证明。所获得的结果证明了这些生物聚合物的巨大潜力,以使用具有适当结构的絮凝剂来清洁微薄威胁的水域。

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