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More effective immobilization of divalent lead than hexavalent chromium through carbonate mineralization by Staphylococcus epidermidis HJ2

机译:通过通过碳酸酯矿化通过葡萄球菌epidermidis hj2更有效地将二价铅固定超六价铬固定

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摘要

Heavy metals are the most common pollutant of soil and water, and are being the center of attention due to their toxicity and carcinogenic nature for environment and human health. Microbially induced carbonate precipitation (MICP) is one of well-known processes in recent years for metals immobilization; however, it could have preference for divalent metal ions as MICP directly precipitates calcium ions. Thus, the present research mainly focused on the MICP for the remediation of divalent Pb(II) and hexavalent Cr(VI) in solution using ureolytic Staphylococcus epidermidis. The urease activity led to the metal removal in MICP process, and the removal efficiency of Pb(II) and Cr(VI) was up to 86% and 76.8% (with initial metals concentration 25 mg l(-1)), respectively. The FTIR spectra revealed number of peaks indicative of CO3 bonding and formation of carbonate compounds in MICP samples; however, such peaks were clearly identified in MICP-Pb than MICP-Cr(VI) due to direct precipitation or immobilization ability of similar valency (Ca2+ and Pb2+). The SEM images also showed the deposition contained metals produced by co-precipitation with calcium clearly. The results showed significant difference in terms of Cr(VI) - and Pb(II) - immobilization, and MICP depicted clear efficacy or preference in the immobilization of divalent over multivalent metal ions.
机译:重金属是土壤和水最常见的污染物,是由于毒性和环境和人类健康的毒性和致癌性质,是关注的焦点。微血上诱导的碳酸盐沉淀(MICP)是近年来金属固定化的众所周知的方法之一;然而,当MICP直接沉淀钙离子时,它可以偏好二价金属离子。因此,本研究主要侧重于使用ureolytic葡萄球菌表皮的溶液中除去二价Pb(II)和六价Cr(vi)的MICP。脲酶活性导致MICP工艺中的金属除去,Pb(II)和Cr(VI)的去除效率可达86%和76.8%(初始金属浓度为25mg(-1))。 FTIR光谱揭示了指示MICP样品中碳酸酯化合物的CO3键合的峰值数量;然而,由于相似式的直接沉淀或固定能力(Ca2 +和Pb2 +),在MicP-Cr(VI)中清楚地鉴定了这种峰。 SEM图像还显示沉积含有通过清除钙的共沉淀产生的金属。结果表明Cr(VI) - 和Pb(ii) - 固定化方面的显着差异,并且MICP在多价金属离子上的二价固定中描述了清晰的疗效或偏好。

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