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Investigating the Effects of Se Solid Phase Substitution in Jarosite Minerals Influenced by Bacterial Reductive Dissolution

机译:研究硒还原固溶在细菌还原溶解影响下对黄铁矿矿物的固相取代作用

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Jarosite minerals (AB3(TO4)2(OH)6) are iron hydroxysulfate minerals that can readily incorporate trace metals into their mineral structure. A range of metals can be incorporated into the jarosite structure, including oxyanions such as selenate (SeO42−). Selenium is a micronutrient, but is toxic in relatively low doses. Selenium is present in aqueous systems in its two oxyanion forms: selenate and selenite (SeO32−). The tetrahedral sulfate coordination site can be completely substituted for selenate in jarosite minerals (NaFe3(SO4)x(SeO4)2-x(OH)6). Bacteria have been observed to reduce Se oxyanions to both more reduced forms and insoluble elemental Se. This is a pathway for selenium immobilization at contaminated sites. This experiment investigates the reductive dissolution of two Se-jarosites (solid substitution containing high and low selenium concentrations) in the presence of Shewanella putrefaciens CN32. It was observed that both Fe(III) and selenate were metabolically reduced and released into solution through jarosite dissolution . Selenate was also found to be incorporated intracellularly and reduced to particulate Se which was released upon cell lysis. Compared to the abiotic samples, enhanced dissolution was found with both the live and dead bacteria treatments.
机译:黄铁矿矿物(AB 3 (TO 4 2 (OH) 6 )是羟基硫酸铁矿物,可以很容易地将微量金属纳入其矿物结构。可以将多种金属掺入黄铁矿结构中,包括氧阴离子如硒酸根(SeO 4 2-)。硒是一种微量营养素,但在较低剂量下仍具有毒性。硒以两种氧阴离子形式存在于水体系中:硒酸盐和亚硒酸盐(SeO 3 2-)。硫酸盐中的四面体硫酸盐配位可以完全取代黄铁矿矿物(NaFe 3 (SO 4 x (SeO 4 < / sub>) 2-x (OH) 6 )。已经观察到细菌将硒氧阴离子还原为更多还原形式和不溶性元素硒。这是将硒固定在受污染部位的途径。该实验研究了腐烂希瓦氏菌CN32存在下两种硒亚硒酸盐(含高硒和低硒的固体取代物)的还原溶解。观察到,Fe(III)和硒酸盐均通过黄钾铁矾溶解而代谢减少并释放到溶液中。还发现硒酸盐掺入细胞内并还原成颗粒Se,其在细胞裂解后释放。与非生物样品相比,活菌和死菌处理均能提高溶解度。

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