壳聚糖生物聚合物在废水脱铬中的可持续应用

Seema Lal, Shilpi Bhatnagar
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引用次数: 0

摘要

摘要:人类的快速工业化是水体废弃物的主要来源,造成了严重的环境问题,对陆地和水体生物的生存构成了挑战。水受到人类废物、生活污水、废水排放和工厂、炼油厂和矿山等工业场所的流出物、化学品意外泄漏、农业径流、有毒金属和放射性物质的污染。工业废水中的有毒不可生物降解化学物质可通过吸附、混凝、臭氧氧化、膜过滤、离子交换、化学氧化和生物处理等多种方法进行处理。纤维素、壳聚糖、海藻酸盐和角蛋白等生物聚合物是最具可持续性、可再生和生物相容性的聚合物,是废水净化的常用材料。六价铬是各种工业废水排放的严重水生污染物之一,被认为是对人类和水生生物具有潜在毒性的金属离子。在过去的几十年里,人们探索了各种常规方法来去除废水中的铬,各有优缺点。壳聚糖生物聚合物是一种高效、可持续去除废水中六价铬金属离子的材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chitosan Biopolymer As Sustainable Material For Chromium Removal From Waste Water Bodies
Abstract: Rapid industrialization by humans is a dominant source of waste materials in water bodies and has created serious environmental problems, which has made the survival of life forms on land as well as in water bodies a challenge. Water gets contaminated by human waste, domestic sewage, wastewater discharges and effluents from industrial sites such as factories, refineries, and mines, accidental spills of chemicals, agricultural run-off, toxic metals and radioactive materials. The toxic nonbiodegradable chemicals in industrial waste are treated by various methods such as adsorption, coagulation, ozonation, membrane filtration, ion exchange, chemical oxidation and biological treatments. Biopolymers such as cellulose, chitosan, alginate and keratin proteins are the most sustainable, renewable and biocompatible polymers commonly used materials for wastewater purification. Chromium VI is one of the serious aquatic pollutants released as effluent from various industries and is considered a potentially toxic metal ion for humans and aquatic life. In the past decades, various conventional methods with their own merits and demerits have been explored for Cr decontamination from wastewater bodies. The present study highlights the application of Chitosan biopolymer as an effective and sustainable material for efficiently removing Cr VI metal ions from wastewater bodies.
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来源期刊
Current Materials Science
Current Materials Science Materials Science-Materials Science (all)
CiteScore
0.80
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0.00%
发文量
38
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