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Biotreatment of As-containing acid mine drainage using sulfate reducing granules in an upflow anaerobic sludge blanket reactor

机译:使用硫酸盐还原颗粒在上流厌氧污泥橡皮布反应器中的含酸矿喷射生物处理

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Heavy metal contamination of water sources can occur from the discharge of acid mine drainage (AMD). This study has assessed sulfidogenic treatment of As-, Fe-, Zn-, Ni- and Cu-containing AMD in an upflow anaerobic sludge blanket (UASB) reactor, operated for approximately 500 days. Sulfate reducing granules were successfully enriched with synthetic wastewater and sulfate concentration decreased from 2000 mg/L in the influent to 100-200 mg/L in the effluent. The pH increased from 3-4 to 7-8 as a result of biogenic alkalinity production. Arsenic removal was not detected in the absence of heavy metals, possibly due to the high dissolved sulfide concentration. In the presence of heavy metals, and at low dissolved sulfide concentrations, As removal efficiency increased to 98-100% likely due to the formation of arsenopyrite (FeAsS) or the adsorption of As on metal sulfide precipitates. Fe, Cu, Ni and Zn removal efficiencies approached 99% in the presence of dissolved sulfide. When hydrogen sulfide generation was insufficient to precipitate all of the metals, Fe was detected in the UASB effluent. The results showed that As-, Fe-, Zn-, Ni- and Cu-containing AMD can be effectively treated by sulfate reducing granules in UASB reactors.
机译:从酸矿排水(AMD)的排放中可能发生水源的重金属污染。该研究评估了AS-,Fe的,含有Zn,Ni基以及含Cu AMD的治疗sulfidogenic在升流式厌氧污泥床(UASB)反应器中,约500天操作。硫酸盐还原颗粒成功富含合成废水,硫酸盐浓度在流出物中从2000mg / L降低至100-200mg / L.由于生物碱性生产,pH从3-4增加到7-8。在没有重金属的情况下未检测到砷去除,可能是由于高溶解的硫化物浓度。在重金属的存在下,并且在低溶解的硫化物浓度下,由于亚苯甲酸甲骨(令人担样的污染物)或吸附如金属硫化物沉淀物,去除效率可能增加到98-100%。在溶解的硫化物存在下,Fe,Cu,Ni和Zn去除效率接近99%。当硫化氢产生不足以沉淀所有金属时,在UASB流出物中检测到Fe。结果表明,通过UASB反应器中的硫酸盐还原颗粒可以有效处理含量,Fe,Zn,Ni和Cu-和Cu的AMD。

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