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Biotreatment of acidic zinc- and copper-containing wastewater using ethanol-fed sulfidogenic anaerobic baffled reactor

机译:乙醇喂养的硫化厌氧折流板反应器对酸性含锌铜废水的生物处理

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The treatment of acidic (pH 6.5-3), sulfate-(2-3 g/L), Zn- and Cu- (total metal 0-500 mg/L) containing wastewater was studied in a four-stage anaerobic baffled reactor (ABR) at 35 ℃ for 250 days. Ethanol was supplemented (COD/SO_4~(2-) = 0.67) as carbon and electron source for sulfate reducing bacteria. Sulfate reduction, COD oxidation and metal precipitation efficiencies were 70-92, 80-94 and >99%, respectively. The alkalinity produced from sulfidogenic ethanol oxidation increased the wastewater pH from 3.0 to 7.0-8.0. The electron flow from organic oxidation to sulfate averaged 87%. Decreasing feed pH to 3 and increasing total metal concentrations to 500 mg/L did not adversely affect the performance of ABR and sufficient alkalinity was produced to increase the effluent pH to neutral values. More than 99% of metals were precipitated in the form of metal-sulfides. Accumulation of precipitated metals in the first compartment allowed metal recovery without disturbing reactor performance seriously.
机译:在四级厌氧折流板反应器中研究了酸性(pH 6.5-3),硫酸盐(2-3 g / L),锌和铜(金属总量0-500 mg / L)的处理( ABR)在35℃下放置250天。补充乙醇(COD / SO_4〜(2-)= 0.67)作为硫酸盐还原菌的碳源和电子源。硫酸盐还原,COD氧化和金属沉淀效率分别为70-92、80-94和> 99%。硫化硫乙醇氧化产生的碱度使废水的pH从3.0增加到7.0-8.0。从有机氧化到硫酸盐的电子流平均为87%。将进料pH降低至3并将总金属浓度提高至500 mg / L不会对ABR的性能产生不利影响,并且会产生足够的碱度以将废水的pH值提高至中性值。超过99%的金属以金属硫化物的形式沉淀。第一室中沉淀金属的积累使金属得以回收,而不会严重影响反应器的性能。

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