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近期基于淀粉的磁性吸附剂在去除废水中污染物方面的进展:综述。

Recent advances in starch-based magnetic adsorbents for the removal of contaminants from wastewater: A review.

机构信息

School of Chemistry and Chemical Engineering, School of Resources, Environment and Materials, Guangxi Key Laboratory of Processing for Non-ferrous Metallic and Featured Materials Guangxi University, Nanning 530004, Guangxi, China; College of Light Industry and Food Engineering, the Collaborative Innovation Center for Guangxi Sugar Industry, Nanning 530004, Guangxi, China.

College of Light Industry and Food Engineering, the Collaborative Innovation Center for Guangxi Sugar Industry, Nanning 530004, Guangxi, China.

出版信息

Int J Biol Macromol. 2022 Oct 1;218:909-929. doi: 10.1016/j.ijbiomac.2022.07.175. Epub 2022 Jul 29.

Abstract

Considerable concern exists regarding water contamination by various pollutants, such as conventional pollutants (e.g., heavy metals and organics) and emerging micropollutants (e.g., consumer care products and interfering endocrine-related compounds). Currently, academics are continuously exploring sustainability-related materials and technologies to remove contaminants from wastewater. Magnetic starch-based adsorbents (MSAs) can combine the advantages of starch and magnetic nanoparticles, which exhibit unique critical features such as availability, cost-effectiveness, size, shape, crystallinity, magnetic properties, stability, adsorption properties, and excellent surface properties. However, limited reviews on MSAs' preparations, characterizations, applications, and adsorption mechanisms could be available nowadays. Hence, this review not only focuses on their activation and preparation methods, including physical (e.g., mechanical activation treatment, microwave radiation treatment, sonication, and extrusion), chemical (e.g., grafting, cross-linking, oxidation and esterification), and enzymatic modifications to enhance their adsorption properties, but also offers an all-round state-of-the-art analysis of the full range of its characterization methods, the adsorption of various contaminants, and the underlying adsorption mechanisms. Eventually, this review focuses on the recycling and reclamation performance and highlights the main gaps in the areas where further studies are warranted. We hope that this review will spark an interdisciplinary discussion and bring about a revolution in the applications of MSAs.

摘要

人们对各种污染物(如重金属和有机物等常规污染物以及个人护理产品和干扰内分泌相关化合物等新兴微污染物)对水造成的污染表示极大关注。目前,学术界正在不断探索与可持续性相关的材料和技术,以去除废水中的污染物。基于淀粉的磁性吸附剂(MSAs)可以结合淀粉和磁性纳米粒子的优点,具有可用性、成本效益、尺寸、形状、结晶度、磁性能、稳定性、吸附性能和出色的表面性能等独特的关键特征。然而,目前可用的关于 MSAs 的制备、表征、应用和吸附机制的综述有限。因此,本综述不仅重点介绍了其活化和制备方法,包括物理方法(例如机械活化处理、微波辐射处理、超声和挤压)、化学方法(例如接枝、交联、氧化和酯化)以及酶改性以增强其吸附性能,还全面分析了其各种表征方法、对各种污染物的吸附作用以及潜在的吸附机制。最后,本综述重点关注回收和再利用性能,并强调了需要进一步研究的主要空白领域。我们希望本综述将引发跨学科讨论,并带来 MSAs 应用的革命。

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