Starch-Based Hybrid Nanomaterials for Environmental Remediation

A. Gamage, Thiviya Punniamoorthy, T. Madhujith
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引用次数: 4

Abstract

Environmental pollution is becoming a major global issue with increasing anthropogenic activities that release massive toxic pollutants into the land, air, and water. Nanomaterials have gained the most popularity in the last decades over conventional methods because of their high surface area to volume ratio and higher reactivity. Nanomaterials including metal, metal oxide, zero-valent ions, carbonaceous nanomaterials, and polymers function as adsorbents, catalysts, photocatalysts, membrane (filtration), disinfectants, and sensors in the detection and removal of various pollutants such as heavy metals, organic pollutants, dyes, industrial effluents, and pathogenic microbial. Polymer-inorganic hybrid materials or nanocomposites are highly studied for the removal of various contaminants. Starch, a heteropolysaccharide, is a natural biopolymer generally incorporated with other metal, metal oxide, and other polymeric nanoparticles and has been reported in various environmental remediation applications as a low-cost alternative for petroleum-based polymers. Therefore, this chapter mainly highlights the various nanomaterials used in environmental remediation, starch-based hybrid nanomaterials, and their application and limitations.
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用于环境修复的淀粉基杂化纳米材料
随着人类活动的增加,环境污染正在成为一个主要的全球性问题,人类活动向土地、空气和水中释放了大量有毒污染物。纳米材料由于其高表面积体积比和较高的反应性,在过去的几十年里比传统的方法获得了最广泛的应用。纳米材料包括金属、金属氧化物、零价离子、碳质纳米材料和聚合物,在检测和去除各种污染物(如重金属、有机污染物、染料、工业废水和病原微生物)方面具有吸附剂、催化剂、光催化剂、膜(过滤)、消毒剂和传感器的功能。聚合物-无机杂化材料或纳米复合材料在去除各种污染物方面得到了广泛的研究。淀粉是一种杂多糖,是一种天然的生物聚合物,通常与其他金属、金属氧化物和其他聚合物纳米颗粒结合在一起,作为石油基聚合物的低成本替代品,已经在各种环境修复中得到了应用。因此,本章主要介绍了各种用于环境修复的纳米材料、淀粉基杂化纳米材料及其应用和局限性。
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