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Removal of selenate from brine using anaerobic bacteria and zero valent iron

机译:使用厌氧细菌和零价铁从盐水中去除硒酸盐

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摘要

The mining industry needs to treat large volumes of wastewater highly concentrated in chemical compounds that can adversely affect receiving environments. One promising method of treatment is the use of reverse osmosis to remove most of the dissolved salts. However, the resulting brine reject is a highly saline wastewater that needs further treatment to remove the toxic components, such as selenate, which is a chemical compound of great concern in coal-mining regions. Biological reduction and removal of dissolved selenium from a brine solution was achieved. Microorganisms were enriched from environmental samples collected from two mines, respectively, at different geographic locations through adaptive evolution in the laboratory. Batch treatment of typical brine was tested with two different enrichments with the addition of either of two chemical forms of iron, ferrous chloride or zero valent iron. Successful selenium removal in the presence of high nitrate and sulphate concentrations was achieved with a combination of enriched microorganisms from one particular site and the addition of zero-valent iron. The composition and metabolic potential of the enriched microorganisms revealed Clostridium, Sphaerochaeta, Synergistes and Desulfosporosinus species with the metabolic potential for selenate reduction through the YgfK enzymatic process associated with selenium detoxification.
机译:采矿业需要处理大量废水中的高浓度化合物,这些化合物可能会对接收环境造成不利影响。一种有希望的治疗方法是使用反渗透去除大部分溶解的盐。但是,所产生的盐水排渣是高盐分废水,需要进一步处理以除去有毒成分,例如硒酸盐,硒酸盐是煤矿区备受关注的化合物。从盐水溶液中生物还原并去除了溶解的硒。通过在实验室中进行适应性进化,从分别来自两个矿山的不同地理位置的环境样品中提取出的微生物得以丰富。在添加两种化学形式的铁,氯化亚铁或零价铁的两种情况下,对两种典型浓缩液的批处理进行了测试。在高硝酸盐和硫酸盐浓度下,通过从一个特定位置富集微生物并添加零价铁可成功去除硒。富集微生物的组成和代谢潜能显示梭状芽胞杆菌,球藻,增效菌和脱硫孢子菌种具有通过与硒解毒有关的YgfK酶促过程进行硒酸盐还原的代谢潜能。

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