从水介质中去除六价铬的壳聚糖基吸附剂的最新进展

Harini Methma Perera, A. Rajapaksha, Sudantha Liyanage
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摘要

由于长期接触六价铬会对人体健康产生不利影响,水环境中的六价铬污染已成为一个令人担忧的问题。因此,有效处理掺杂的水介质对人类和动植物的健康和安全至关重要。目前,壳聚糖因其生物降解性、无毒性、丰富性和改变微观结构的能力,被认为是一种很好的吸附材料,可用于处理六价铬污染。本综述重点介绍了壳聚糖基吸附剂在缓解水介质中六价铬氧离子污染方面的最新进展。本文概述了原始壳聚糖以及结构和化学修饰壳聚糖的最新进展和见解。壳聚糖通过交联、接枝和/或与其他吸附材料结合进行化学改性,以提高其去除六价铬的性能。常用于去除六价铬的结构改性壳聚糖基混合材料包括磁性吸附剂、水凝胶、气凝胶和纳米/微粒。壳聚糖基杂化材料的吸附容量在 27.25 - 357.14 mg g-1 之间变化,取决于吸附剂类型、用量、初始六价铬浓度、pH 值和改性类型。此外,还通过比较和对比所述吸附剂材料及其变体在缓解六价铬方面的效果,提供了有益的信息。此外,还描述和讨论了壳聚糖基吸附剂去除六价铬的机制,强调了主要的调节机制--静电相互作用。还介绍了解吸和再生研究,以评估壳聚糖吸附材料在减轻六价铬污染方面的可再利用性。解吸研究表明,大多数壳聚糖吸附剂对六价铬的吸附是可逆的,在使用高效剥离剂的情况下,解吸率超过 60%。通过对最近发表的约 100 篇论文的文献调查,可以证明壳聚糖基吸附剂是一种出色的吸附剂,尽管仍存在一些挑战。 关键词吸附、壳聚糖、六价铬、混合材料、机理
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent Advancements in Chitosan-based Adsorbents for Hexavalent Chromium Removal from Aqueous Media
Contamination of aqueous environments by Cr(VI) has become a matter of concern owing to its detrimental impacts on human health with its long-term exposure. Thus, effective treatment of adulterated aqueous media is critical in terms of the health and safety of humans together with flora and fauna. Currently, chitosan is considered an excellent adsorptive material for theremediation of Cr(VI) contamination owing primarily to its biodegradability, non-toxicity, abundance, and ability to modify its microstructure. The present review focuses on the up-to-date progression of chitosan-based sorbents that can be utilized in the mitigation of Cr(VI) oxyanions from aqueous media. This paper provides an overview of pristine chitosan along with recentadvancements and insights into structurally and chemically modified chitosan. Chitosan has been chemically modified through cross-linking, grafting, and/or combination with other adsorptive materials to enhance its performance in Cr(VI) removal. Structurally modified chitosan-based hybrid materials that are commonly used in Cr(VI) removal include magnetic adsorbents,hydrogels, aerogels, and nano/microparticles. The sorption capacities of chitosan-based hybrid materials have varied from 27.25 - 357.14 mg g-1 depending on the type of adsorbent, dosage, initial Cr(VI) concentration, pH, and type of modification. Also, beneficial information through a compare-and-contrast of the effectiveness of the stated sorbent materials and their variants in themitigation of Cr(VI) is provided. Furthermore, mechanisms of Cr(VI) removal by chitosan-based sorbents accentuating the main governing mechanism, electrostatic interactions are described and discussed. Desorption and regeneration studies are presented to assess the reusability of the chitosan-based adsorptive materials utilized in the mitigation of Cr(VI) contamination. Desorptionstudies reveal that sorption of Cr(VI) onto most of the chitosan-based adsorbents are fairly reversible with desorbed percentages above 60% with the usage of an efficient stripping agent. Through the literature survey of approximately 100 recently published papers, it could be evinced that chitosan-based adsorbents have proved to be an outstanding sorbent even if some challengesremain. Keywords: Adsorption, chitosan, Cr(VI), hybrid materials, mechanism
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