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Chromium-resistant bacteria and their environmental condition for hexavalent chromium removal: A review

机译:耐铬细菌及其去除六价铬的环境条件:综述

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The anthropogenic inputs of hexavalent chromium [Cr(VI)] have increased enormously during the past few decades and has become a challenge for life on earth and hence removal of this carcinogen has become the need of the hour. Cr(VI) removal through common physicochemical techniques is highly expensive and inappropriate at low concentration. Microbial reduction of Cr(VI) to trivalent form is considered a favorable technique for Cr(VI) removal from wastewater, as it reduces the highly toxic form of Cr to less toxic form and therefore the article conveys essential fundamental information on removal of Cr(VI) by bacteria. For efficient bioremoval of Cr(VI),the main machinery of the process, the microbes, and their conditions, which decide the fate of this heavy metal, should be appropriate. Hence, the authors cover vast information about the isolation of chromium-resistant bacteria from various environment and their Cr(VI) resistance capability. An extensive report is given on information pertaining to the factors such as cell density, pH, temperature, salt concentration, oxidation-reduction potential, electron donor, oxyanions, metabolic inhibitors, and other heavy metals that influence or affect the efficient Cr(VI) removal. Cr(VI) removal by immobilized bacterial cells and their advantages has also been summarized. In transferring this technology from laboratory to a large-scale application, better understanding of all these aspects is necessary. Hence, this developing biotechnological method that encompasses fields from genetic engineering to reactor engineering demands focused research in these directions, which may lead to implementation of this technology on a larger scale and drive it toward being the most opted-for technology.
机译:在过去的几十年中,六价铬[Cr(VI)]的人为输入量已大大增加,并已成为对地球生命的挑战,因此去除这种致癌物已成为一个小时的需要。通过普通的物理化学技术去除六价铬非常昂贵,而且在低浓度下也不适合。微生物将Cr(VI)还原为三价形式被认为是一种从废水中去除Cr(VI)的有利技术,因为它将高毒性形式的Cr还原为毒性较小的形式,因此,该文章传达了有关去除Cr(VI VI)被细菌感染。为了有效地去除六价铬,该工艺的主要机械,微生物及其条件(决定这种重金属的命运)应该是适当的。因此,作者涵盖了有关从各种环境中分离出耐铬细菌及其对Cr(VI)的抵抗能力的大量信息。关于与细胞密度,pH,温度,盐浓度,氧化还原电位,电子给体,氧阴离子,代谢抑制剂以及其他影响或影响有效六价铬(VI)的重金属等因素有关的信息,已给出了广泛的报告。去除。还总结了固定化细菌细胞去除六价铬及其优势。要将这项技术从实验室转移到大规模应用中,必须更好地理解所有这些方面。因此,涵盖从基因工程到反应堆工程领域的这种发展中的生物技术方法需要在这些方向上进行专门研究,这可能导致该技术的大规模实施,并使之成为最受青睐的技术。

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