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A review of the potential utilisation of plastic waste as adsorbent for removal of hazardous priority contaminants from aqueous environments

机译:关于塑料废料作为吸附剂从水性环境中去除有害优先污染物的潜在用途的综述

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摘要

There is growing global awareness of the presence and negative impacts of waste plastic in the marine environment. Risks to wildlife include ingestion and entanglement for macro-plastic (larger than 5 mm in length), alongside food chain transfer for micro-plastics (less than 5 mm in length). Plastics in the marine environment have also been shown to adsorb and accumulate contaminants from seawater, e.g., heavy metals and hydrophobic organic compounds. This means that plastics can additionally act as vectors for transport of contaminants, permitting ecotoxicological risks to be spatially extended. However, the ability of waste plastic to adsorb pollutants also offers potential opportunity, if they can be used for the decontamination of wastewater. Here, we provide an overview of marine plastic types and distribution, and then systematically assess their potential to be repurposed as novel adsorbents. Data published in recent years are interrogated to gain an overview of the interaction mechanisms between marine plastics and both organic and inorganic contaminants. In addition, factors that may be exploited to enhance their performance in removal of contaminants are also reviewed and prioritised, e.g., surface modification and activation. This paper highlights the novel potential of repurposing plastic waste for wastewater treatment applications and seeks to identify key knowledge gaps and future research priorities for scientists and engineers. (C) 2019 Elsevier Ltd. All rights reserved.
机译:全球越来越意识到废塑料在海洋环境中的存在及其负面影响。野生生物面临的风险包括大塑料的摄入和纠缠(长度大于5毫米),以及微塑料的食物链转移(长度小于5毫米)。还已经表明,海洋环境中的塑料吸收并积聚了海水中的污染物,例如重金属和疏水性有机化合物。这意味着塑料还可以充当污染物运输的载体,从而使生态毒理学风险在空间上得以扩展。但是,如果废塑料可以用于废水的净化处理,则其吸收污染物的能力也提供了潜在的机会。在这里,我们提供了海洋塑料类型和分布的概述,然后系统地评估了它们被重新用作新型吸附剂的潜力。近年来发布的数据经过审视,以概述海洋塑料与有机和无机污染物之间的相互作用机理。另外,还对可用于增强其去除污染物性能的因素进行了审查并确定了优先次序,例如表面改性和活化。本文着重介绍了将塑料废物重新用于废水处理应用的新潜力,并力图确定关键的知识差距以及科学家和工程师的未来研究重点。 (C)2019 Elsevier Ltd.保留所有权利。

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