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Silage supports sulfate reduction in the treatment of metals-and sulfate-containing waste waters

机译:青贮饲料可减少含金属和含硫酸盐的废水的处理中的硫酸盐含量

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Silage was used as source of carbon and electrons for enrichment of silage-degrading and sulfate reducing bacteria (SRB) from boreal, acidic, metals-containing peat-bog samples and to support their use in batch and semi-batch systems in treatment of synthetic waste water. Sulfidogenic silage utilization resulted in a rapid decrease in lactate concentrations; concentrations of acetate, butyrate and propionate increased concomitantly. Synthetic waste water consisting of Mn, Mg and Fe (II) ions inhibited sulfate reduction at concentrations of 6 g/1, 8 g/1 and 1 g/1 respectively. During treatment, Mn and Mg ions remained in solution while Fe ions partially precipitated. Up to 87 mg sulfate was reduced per gram of silage. Sulfate reduction rates of 34, 22 and 6 mg/l/day were obtained at temperatures of 30, 20 and 9 ℃ respectively. In semi-batch reactors operated at low pH, the iron precipitation capacity was controlled by sulfate reduction rates and by partial loss of hydrogen sulfide to the gas phase. Passive reactor systems should, therefore, be operated at neutral pH. Metals tolerant, silage-fermenting (predominantly species belonging to genus Clostridium) and sulfate reducing bacteria (including a species similar to the psychrotolerant Desulfouibrio arcticus) were obtained from the peat bog samples. This work demonstrates that silage supports sulfate reduction and can be used as a low cost carbon and electron source for SRB in treatment of metals-containing waste water.
机译:青贮饲料用作碳和电子的来源,可从含酸性,酸性,含金属的北方泥炭沼泽样品中富集青贮饲料降解和硫酸盐还原细菌(SRB),并支持它们在分批和半分批系统中用于处理合成纤维废水。利用硫化物产生的青贮饲料导致乳酸盐浓度迅速降低。乙酸盐,丁酸盐和丙酸盐的浓度随之增加。由Mn,Mg和Fe(II)离子组成的合成废水分别以6 g / 1、8 g / 1和1 g / 1的浓度抑制硫酸盐的还原。在处理过程中,Mn和Mg离子保留在溶液中,而Fe离子则部分沉淀。每克青贮饲料最多可减少87毫克硫酸盐。在30、20和9℃的温度下,硫酸盐还原速率分别为34、22和6 mg / l / day。在低pH下运行的半间歇反应器中,铁的沉淀能力由硫酸盐还原速率和硫化氢向气相的部分损失控制。因此,被动反应器系统应在中性pH下运行。从泥炭沼泽样品中获得了耐金属,青贮饲料发酵(主要属于梭菌属的物种)和硫酸盐还原细菌(包括与抗精神病药Desulfouibrio arcticus相似的物种)。这项工作表明,青贮饲料有助于硫酸盐的还原,可以用作处理含金属废水的SRB的低成本碳和电子源。

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