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Arsenic triggered nano-sized uranyl arsenate precipitation on the surface of Kocuria rosea

机译:砷引发纳米级砷酸铀酰砷酸沉淀

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摘要

Arsenic (As) and uranium (U) frequently occur together naturally and, in consequence, transform into cocontaminants at sites of uranium mining and processing, yet the simultaneous interaction process of arsenic and uranium has not been well documented. In the present contribution, the influence of arsenate on the removal and reduction of uranyl by the indigenous microorganism Kocuria rosea was characterized using batch experiments combined with species distribution calculation, SEM-EDS, FTIR, XRD and XPS. The results showed that the coexistence of arsenic plays an active role in Kocuria rosea growth and the removal of uranium under neutral and slightly acidic conditions. U-As complex species of UO2HAsO4 (aq) had a positive effect on uranium removal, while Kocuria rosea cells appeared to have a large specific surface area serving as attachment sites. Furthermore, a large number of nano-sized flaky precipitates, constituted by uranium and arsenic, attached to the surface of Kocuria rosea cells at pH 5 through P=O, COO-, and C=O groups in phospholipids, polysaccharides, and proteins. The biological reduction of U(VI) and As(V) took place in a successive way, and the formation of a chadwickitelike uranyl arsenate precipitate further inhibited U(VI) reduction. The results will help to design more effective bioremediation strategies for arsenic-uranium cocontamination.
机译:砷 (As) 和铀 (U) 经常自然一起存在,因此在铀开采和加工现场转化为共污染物,但砷和铀同时相互作用的过程尚未得到充分记录。本文采用分批实验结合物种分布计算、SEM-EDS、FTIR、XRD和XPS等方法,表征了砷酸盐对本土微生物Kocuria rosea去除和还原铀酰的影响。结果表明,在中性和微酸性条件下,砷的共存对红蔷薇的生长和铀的去除起着积极作用。UO2HAsO4 (aq) 的 U-As 复合物对铀去除有积极作用,而 Kocuria rosea 细胞似乎具有较大的比表面积作为附着位点。此外,在pH 5下,通过磷脂、多糖和蛋白质中的P=O、COO-和C=O基团,大量由铀和砷构成的纳米级片状沉淀物附着在Kocuria rosea细胞的表面。U(VI)和As(V)的生物还原是相继发生的,形成类似查德威克石的砷酸铀酰沉淀进一步抑制了U(VI)的还原。研究结果将有助于设计更有效的砷铀共污染生物修复策略。

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