水生环境中的微塑料:分离技术的最新进展

IF 1.4 4区 工程技术 Q3 ENGINEERING, CHEMICAL Periodica Polytechnica Chemical Engineering Pub Date : 2022-02-03 DOI:10.3311/ppch.18930
Fahimeh Hooriabad Saboor, Samaneh Hadian-Ghazvini, M. Torkashvand
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引用次数: 6

摘要

从水生环境中分离和去除微塑料污染是一个全球性的环境问题,是水和废水处理厂关注的主要问题之一。微塑料是指在至少一个维度上小于5mm的聚合颗粒,在土壤、水和沉积物中具有不同的形状、化学成分和大小。传统的有机分离处理方法对微塑料的去除效率很高,而污水处理厂中主要小于100µm的小微塑料颗粒的分离尤其具有挑战性。本文综述了各种物理和化学方法分离和去除水生环境中塑料微粒的原理和应用,特别是在水处理过程中,重点介绍了一些替代的和新兴的分离方法。讨论了澄清、沉淀、浮选、活性污泥、筛分、过滤和密度分离等常规分离技术的优缺点。先进的分离方法可以与传统技术相结合,也可以作为分离小微塑料颗粒的单独步骤。这些先进的微塑料分离方法包括膜生物反应器、磁分离、微机械和基于降解的方法,如电催化、光催化、生物降解和热降解。
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Microplastics in Aquatic Environments: Recent Advances in Separation Techniques
Separation and removal of microplastic pollution from aquatic environments as a global environmental issue is classified as one of the major concerns in both water and wastewater treatment plants. Microplastics as polymeric particles less than 5 mm in at least one dimension are found with different shapes, chemical compositions, and sizes in soil, water, and sediments. Conventional treatment methods for organic separation have shown high removal efficiency for microplastics, while the separation of small microplastic particles, mainly less than 100 µm, in wastewater treatment plants is particularly challenging. This review aims to review the principle and application of different physical and chemical methods for the separation and removal of microplastic particles from aquatic environments, especially in water treatments process, with emphasis on some alternative and emerging separation methods. Advantages and disadvantages of conventional separation techniques such as clarification, sedimentation, floatation, activated sludge, sieving, filtration, and density separation are discussed. The advanced separation methods can be integrated with conventional techniques or utilize as a separate step for separating small microplastic particles. These advanced microplastic separation methods include membrane bioreactor, magnetic separation, micromachines, and degradation-based methods such as electrocatalysis, photocatalysis, biodegradation, and thermal degradation.
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来源期刊
CiteScore
3.10
自引率
7.70%
发文量
44
审稿时长
>12 weeks
期刊介绍: The main scope of the journal is to publish original research articles in the wide field of chemical engineering including environmental and bioengineering.
期刊最新文献
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