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Precipitation of heavy metals from coal ash leachate using biogenic hydrogen sulfide generated from FGD gypsum

机译:利用烟气脱硫石膏产生的生物硫化氢从煤灰渗滤液中沉淀重金属

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Investigations were undertaken to utilize flue gas desulfurization (FGD) gypsum for the treatment of leachate from the coal ash (CA) dump sites. Bench-scale investigations consisted of three main steps namely hydrogen sulfide (H_2S) production by sulfate reducing bacteria (SRB) using sulfate from solubilized FGD gypsum as the electron acceptor, followed by leaching of heavy metals (HMs) from coal bottom ash (CBA) and subsequentprecipitation of HMs using biologically produced sulfide. Leaching tests of CBA carried out at acidic pH revealed the existence of several HMs such as Cd, Cr, Hg, Pb, Mn, Cu, Ni and Zn. Molasses was used as the electron donor for the biological sulfate reduction (BSR) process which produced sulfide rich effluent with concentration up to 150 mg/L. Sulfide rich effluent from the sulfate reduction process was used to precipitate HMs as metal sulfides from CBA leachate. HM removal in the range from 40 to 100% was obtained through sulfide precipitation.
机译:进行了利用烟气脱硫(FGD)石膏处理煤灰(CA)垃圾场渗滤液的研究。基准规模研究包括三个主要步骤,即使用溶解的FGD石膏中的硫酸盐作为电子受体,通过硫酸盐还原细菌(SRB)生产硫化氢(H_2S),然后从煤灰(CBA)浸出重金属(HMs)然后使用生物产生的硫化物沉淀HM。在酸性pH下进行的CBA浸出试验表明,存在多种重金属,如镉,铬,汞,铅,锰,铜,镍和锌。糖蜜被用作生物硫酸盐还原(BSR)过程的电子供体,该过程产生浓度高达150 mg / L的富含硫化物的废水。来自硫酸盐还原过程的富含硫化物的流出物用于从CBA渗滤液中沉淀出作为金属硫化物的HMs。通过硫化物沉淀获得的HM去除率为40%至100%。

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