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Removal of Anionic Metalloid/Metals by PEI-modified Corynebacterium glutamicum

机译:通过PEI改性的棒状杆菌去除阴离子金属/金属

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An anionic biosorbent was derived from an industrial fermentation biowaste, Corynebacterium glutamicum, by being cross-linked with polyethylenimine (PEI). A fiber form of the biosorbent was used to examine its potentiality of removing anionic metalloid/metals such as As(V), Cr(VI) and Mn(VII) in aqueous system. As(V) and Cr(VI) were efficiently removed by the biosorbent through anionic adsorption mechanism. Sulfate ion seriously inhibited adsorption of the anionic elements through competitive inhibition with respect to the binding site of the biosorbent. In the case of Mn(VII), its removal mechanism by the biosorbent was not anionic adsorption. Mn(VII) was completely removed in aqueous phase, meanwhile, Mn(II) appeared and increased in proportion to the Mn(VII) depletion. As a result, adsorption coupled reduction was chosen as the mechanism of Mn(VII) removal by the biosorbent. In conclusion, the anionic biosorbent could be used to remove various anionic metalloid/metals from aqueous solution through anionic adsorption or reduction mechanism.
机译:阴离子生物吸附剂是从一个工业发酵生物废料,谷氨酸棒杆菌来源的,通过被交联用聚乙烯亚胺(PEI)。生物吸附剂的纤维形式用于检查其在水性体系中除去阴离子金属/金属如(V),Cr(VI)和Mn(VII)的潜力。通过阴离子吸附机制通过生物吸附机制有效地除去(V)和Cr(VI)。硫酸根离子通过相对于生物吸附剂的结合位点来严重抑制阴离子元件的吸附。在Mn(VII)的情况下,生物吸附剂的去除机制不是阴离子吸附。同时,在水相中完全除去Mn(VII),同时,Mn(II)与Mn(VII)耗竭成比例地出现并增加。结果,选择吸附偶联还原作为生物吸附剂除去的Mn(VII)的机制。总之,阴离子生物吸附剂可用于通过阴离子吸附或还原机制从水溶液中除去各种阴离子金属体/金属。

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