微塑料污染及其修复研究进展

P. Mondal, Sanjeevani Hooda
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引用次数: 1

摘要

在我们的生态系统中无处不在的微塑料(<5mm)已经引起了全世界对未来可能出现的威胁的关注。本文综述了微塑料对海洋生物的毒性作用,指出了微塑料识别技术(傅里叶变换红外光谱、拉曼光谱、热解-气相色谱/质谱等)和现有修复技术(絮凝、膜生物反应器、生物修复等)的研究空白,并展望了减轻微塑料对环境污染的前景。海洋中大量的微塑料及其随后的摄入会导致虚假饱足,导致饥饿、免疫系统减弱、繁殖率降低,并对海洋生物产生其他毒性影响。最近的研究也发现了微塑料在人体内的存在,但对其影响却没有真正的了解。根据文献综述,与任何一种单独的技术相比,不同分析(鉴定)技术的组合被证明在提供对微塑料样品的详细了解方面更有用。在所有可用的修复技术中,生物修复已经显示出其作为一种可持续的、环境友好的原位修复过程的潜力,工程微生物/酶是微塑料修复的有力未来。
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Recent trends on microplastics pollution and its remediation: A review
Omnipresence of microplastics (<5mm) in our ecosystem has presented a worldwide concern for the threat it might present in the future. This review aims to highlight the toxic effect of microplastic on marine organisms, identify the research gaps in the microplastic identification techniques (Fourier transform infrared spectroscopy, Raman spectroscopy, Pyrolysis-gas chromatography/mass spectroscopy, etc.) and remediation processes available (flocculation, membrane bioreactor, bioremediation, etc.) as well as throw light on the prospects to mitigate the microplastic pollution in the environment. The abundance of microplastics in the oceans and its subsequent ingestion causes false satiation leading to starvation, weakened immune system, reduced reproduction rate, and other toxic effects on marine organisms. Recent studies have also found the presence of microplastics in human bodies, without the true knowledge of its effects. Based on reviewed literature, combination of different analytical (identification) techniques are proven to be more useful in providing the detailed understanding of the microplastic sample in comparison to any one individual technique. Amongst all the available remediation techniques, bioremediation has shown the potency to be used as a sustainable, environment friendly, in-situ remediation process with engineered microbes/enzymes as the potent future of microplastic remediation.
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来源期刊
Recent Innovations in Chemical Engineering
Recent Innovations in Chemical Engineering Chemical Engineering-Chemical Engineering (all)
CiteScore
2.10
自引率
0.00%
发文量
20
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