Modified xanthan gum (natural polymeric material) and its derivative for wastewater treatment: A review

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Kopal Kashaudhan, Poorn Prakash Pande, Jyoti Sharma, Ravi Shankar, Amar Nath
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引用次数: 0

Abstract

Naturally occurring xanthan gum (XG) has much commercial importance because of its excellent physicochemical, eco-friendly, and non-toxic properties. It is used in various applications like protein extraction, wastewater treatment, tissue engineering, drug delivery, food packaging, and so forth. XG is a natural material, and it has some limitations related to the mechanical stress, thermal stability, and hydration. To overcome the limitation, XG can be modified by adding third component or modification of operation for specific applications. XG can be modified by physical, genetically, enzymatically, or chemical processes. Revamped XG also enhances the efficiency toward adsorbing toxic metal ions and organics from synthetic or industrial effluents. The emphasis of present review article is to address the structural characteristics along with the focus on the developing chemically modified XG like grafted, cross-linked, nanocomposites, and functionally modified biopolymer. However, this review commences thorough discussion on numerous ways of modifications, which can be attempted in XG structure, expanding its applications for heavy metal ion along with dye removal.

用于废水处理的改性黄原胶(天然高分子材料)及其衍生物:综述
天然黄原胶(XG)因其优异的物理化学、生态友好和无毒特性而具有重要的商业价值。它被广泛应用于蛋白质提取、废水处理、组织工程、药物输送、食品包装等领域。XG 是一种天然材料,在机械应力、热稳定性和水合方面有一定的局限性。为了克服这些局限性,可以通过添加第三种成分或改变操作方式对 XG 进行改性,以满足特定应用的需要。XG 可通过物理、遗传、酶或化学过程进行改性。改造后的 XG 还能提高吸附合成或工业废水中有毒金属离子和有机物的效率。本综述文章的重点是探讨 XG 的结构特征,同时关注接枝、交联、纳米复合材料和功能改性生物聚合物等化学改性 XG 的发展。不过,本综述还将深入探讨 XG 结构可尝试的多种改性方法,从而扩大其在去除重金属离子和染料方面的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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