State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, Chongqing, 400044, People's Republic of China.
Key Laboratory of the Three Gorges Reservoir Region's Eco-Environment, State Ministry of Education, Chongqing University, Chongqing, 400045, People's Republic of China.
Environ Sci Pollut Res Int. 2021 Sep;28(34):46934-46963. doi: 10.1007/s11356-021-15299-y. Epub 2021 Jul 14.
Biopolymer-based flocculants have become a potential substitute for inorganic coagulants and synthetic organic flocculants due to their wide natural reserves, environmental friendliness, easy natural degradation, and high material safety. In recent years, with more and more attention to clean technologies, a lot of researches on the modification and application of biopolymer-based flocculants have been carried out. The present paper reviews the latest important information about the base materials of biopolymer-based flocculants, including chitosan, starch, cellulose, and lignin etc. This review also highlights the various modification methods of these base materials according to reaction types in detail. Via the recent researches, the flocculation mechanisms of biopolymer-based flocculants, such as adsorption, bridging, charge neutralization, net trapping, and sweeping, as well as, some other special mechanisms are comprehensively summarized. This paper also focuses on the water treatment conditions, the removal efficiency, and advantages of biopolymer-based flocculants in applications. Further, this review sheds light on the future perspectives of biopolymer-based flocculants, which may make progress in the sources of base materials, modification processes, multi-function, and deepening application researches. We believe that this review can guide the further researches and developments of biopolymer-based flocculants in the future, to develop them with a higher efficiency, a lower cost, more safety, and multi-function for more diversified applications. Graphical abstract.
基于生物聚合物的絮凝剂由于其广泛的天然储量、环境友好性、易于自然降解以及高材料安全性,已成为无机混凝剂和合成有机絮凝剂的潜在替代品。近年来,随着对清洁技术的关注越来越多,人们对基于生物聚合物的絮凝剂的改性和应用进行了大量研究。本文综述了生物聚合物基絮凝剂的基础材料的最新重要信息,包括壳聚糖、淀粉、纤维素和木质素等。本综述还根据反应类型详细介绍了这些基础材料的各种改性方法。通过最近的研究,全面总结了生物聚合物基絮凝剂的絮凝机制,如吸附、桥联、电荷中和、网捕和扫集,以及一些其他特殊机制。本文还重点介绍了生物聚合物基絮凝剂在应用中的水处理条件、去除效率和优势。此外,本文还展望了生物聚合物基絮凝剂的未来前景,这可能会在基础材料的来源、改性工艺、多功能和深化应用研究方面取得进展。我们相信,这篇综述可以指导未来生物聚合物基絮凝剂的进一步研究和发展,以更高的效率、更低的成本、更高的安全性和多功能性为目标,开发出更多样化的应用。