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Biomineralization of Arsenate to Arsenic Sulfides is Greatly Enhanced at Mildly Acidic Conditions

机译:在轻度酸性条件下砷酸根矿的生物矿化作用大大增强。

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摘要

Arsenic (As) is an important water contaminant due to its high toxicity and widespread occurrence. Arsenic-sulfide minerals (ASM) are formed during microbial reduction of arsenate (AsV) and sulfate (SO42−). The objective of this research is to study the effect of the pH on the removal of As due to the formation of ASM in an iron-poor system. A series of batch experiments was used to study the reduction of SO42− and AsV by an anaerobic biofilm mixed culture in a range of pH conditions (6.1–7.2), using ethanol as the electron donor. Total soluble concentrations and speciation of S and As were monitored. Solid phase speciation of arsenic was characterized by x-ray adsorption spectroscopy (XAS). A marked decrease of the total aqueous concentrations of As and S was observed in the inoculated treatments amended with ethanol, but not in the non-inoculated controls, indicating that the As-removal was biologically mediated. The pH dramatically affected the extent and rate of As removal, as well as the stoichiometric composition of the precipitate. The amount of As removed was 2-fold higher and the rate of the As removal was up to 17-fold greater at pH 6.1 than at pH 7.2. Stoichiometric analysis and XAS results confirmed the precipitate was composed of a mixture of orpiment and realgar, and the proportion of orpiment in the sample increased with increasing pH. The results taken as a whole suggest that ASM formation is greatly enhanced at mildly acidic pH conditions.
机译:砷(As)由于其高毒性和广泛存在而成为重要的水污染物。微生物还原砷酸盐(As V )和硫酸盐(SO4 2-)时会形成硫化砷矿物质(ASM)。这项研究的目的是研究由于贫铁系统中ASM的形成而引起的pH值对As去除的影响。通过一系列分批实验研究了在一定pH条件(6.1–7.2)下厌氧生物膜混合培养物对SO4 2-和As V 的还原作用,用乙醇作为电子给体监测总可溶性浓度和S和As的形态。砷的固相形态通过X射线吸收光谱法(XAS)表征。在用乙醇改良的接种处理中观察到As和S的总水浓度明显降低,但在未接种的对照中未观察到,这表明As的去除是生物介导的。 pH值显着影响As去除的程度和速率,以及沉淀物的化学计量组成。在pH 6.1时,As的去除量比在pH 7.2时高出2倍,并且As的去除率高出17倍。化学计量分析和XAS结果证实,沉淀物是由雌黄和雄黄的混合物组成的,样品中雌黄的比例随pH的增加而增加。总的来说,结果表明在中等酸性的pH条件下ASM的形成大大增强。

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