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用于废水修复的生物聚合物纳米复合材料:最新进展与挑战概述

Biopolymeric Nanocomposites for Wastewater Remediation: An Overview on Recent Progress and Challenges.

作者信息

Mittal Mona, Tripathi Smriti, Shin Dong Kil

机构信息

School of Mechanical Engineering, Yeungnam University, 280-Daehak-ro, Gyeongsan 38541, Republic of Korea.

Department of Applied Sciences (Chemistry), Galgotias College of Engineering and Technology, Greater Noida 201310, Uttar Pradesh, India.

出版信息

Polymers (Basel). 2024 Jan 21;16(2):294. doi: 10.3390/polym16020294.

Abstract

Essential for human development, water is increasingly polluted by diverse anthropogenic activities, containing contaminants like organic dyes, acids, antibiotics, inorganic salts, and heavy metals. Conventional methods fall short, prompting the exploration of advanced, cost-effective remediation. Recent research focuses on sustainable adsorption, with nano-modifications enhancing adsorbent efficacy against persistent waterborne pollutants. This review delves into recent advancements (2020-2023) in sustainable biopolymeric nanocomposites, spotlighting the applications of biopolymers like chitosan in wastewater remediation, particularly as adsorbents and filtration membranes along with their mechanism. The advantages and drawbacks of various biopolymers have also been discussed along with their modification in synthesizing biopolymeric nanocomposites by combining the benefits of biodegradable polymers and nanomaterials for enhanced physiochemical and mechanical properties for their application in wastewater treatment. The important functions of biopolymeric nanocomposites by adsorbing, removing, and selectively targeting contaminants, contributing to the purification and sustainable management of water resources, have also been elaborated on. Furthermore, it outlines the reusability and current challenges for the further exploration of biopolymers in this burgeoning field for environmental applications.

摘要

水对人类发展至关重要,但正日益受到各种人为活动的污染,含有有机染料、酸、抗生素、无机盐和重金属等污染物。传统方法存在不足,促使人们探索先进且经济高效的修复方法。近期研究聚焦于可持续吸附,纳米改性提高了吸附剂对持久性水污染物的去除效果。本综述深入探讨了2020年至2023年可持续生物聚合物纳米复合材料的最新进展,重点介绍了壳聚糖等生物聚合物在废水修复中的应用,特别是作为吸附剂和过滤膜及其作用机制。还讨论了各种生物聚合物的优缺点,以及通过结合可生物降解聚合物和纳米材料的优点来合成生物聚合物纳米复合材料,以增强其物理化学和机械性能,用于废水处理。阐述了生物聚合物纳米复合材料通过吸附、去除和选择性靶向污染物,对水资源净化和可持续管理的重要作用。此外,还概述了生物聚合物在这个新兴的环境应用领域的可重复使用性和进一步探索面临的当前挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b80/10818902/b6d6711c35f1/polymers-16-00294-g001.jpg

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