Bucatariu Florin, Teodosiu Carmen, Morosanu Irina, Fighir Daniela, Ciobanu Ramona, Petrila Larisa-Maria, Mihai Marcela
"Petru Poni" Institute of Macromolecular Chemistry, 41A Grigore Ghica Voda Alley, 700487 Iasi, Romania.
Department of Environmental Engineering and Management, "Gheorghe Asachi" Technical University of Iasi, 73 D. Mangeron Street, 700050 Iasi, Romania.
Polymers (Basel). 2021 Nov 16;13(22):3963. doi: 10.3390/polym13223963.
Advanced wastewater treatment processes are required to implement wastewater reuse in agriculture or industry, the efficient removal of targeted priority and emerging organic & inorganic pollutants being compulsory (due to their eco-toxicological and human health effects, bio-accumulative, and degradation characteristics). Various processes such as membrane separations, adsorption, advanced oxidation, filtration, disinfection may be used in combination with one or more conventional treatment stages, but technical and environmental criteria are important to assess their application. Natural and synthetic polyelectrolytes combined with some inorganic materials or other organic or inorganic polymers create new materials (composites) that are currently used in sorption of toxic pollutants. The recent developments on the synthesis and characterization of composites based on polyelectrolytes, divided according to their macroscopic shape-beads, core-shell, gels, nanofibers, membranes-are discussed, and a correlation of their actual structure and properties with the adsorption mechanisms and removal efficiencies of various pollutants in aqueous media (priority and emerging pollutants or other model pollutants) are presented.
为了实现农业或工业废水的回用,需要采用先进的废水处理工艺,必须有效去除目标优先控制污染物以及新出现的有机和无机污染物(因其具有生态毒理学和人类健康影响、生物累积性及降解特性)。膜分离、吸附、高级氧化、过滤、消毒等各种工艺可与一个或多个传统处理阶段结合使用,但技术和环境标准对于评估其应用很重要。天然和合成聚电解质与一些无机材料或其他有机或无机聚合物结合,创造出了目前用于吸附有毒污染物的新材料(复合材料)。本文讨论了基于聚电解质的复合材料在合成和表征方面的最新进展,这些复合材料根据其宏观形状分为珠子、核壳结构、凝胶、纳米纤维、膜等,并阐述了它们的实际结构和性能与水性介质中各种污染物(优先控制污染物和新出现的污染物或其他模型污染物)的吸附机制及去除效率之间的相关性。