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Fluidized-bed denitrification of mining water tolerates high nickel concentrations

机译:矿泉水的流化床反硝化可耐受高镍浓度

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This study revealed that fluidized-bed denitrifying cultures tolerated soluble Ni concentrations up to 500 mg/L at 7-8 and 22 degrees C. From 10 to 40 mg/L of feed Ni, denitrification resulted in complete nitrate and nitrite removal. The concomitant reduction of 30 mg/L of sulfate produced 10 mg/L of sulfide that precipitated nickel, resulting in soluble effluent Ni below 22 mg/L. At this stage, Dechloromonas species were the dominant denitrifying bacteria. From 60 to 500 mg/L of feed Ni, nickel remained in solution due to the inhibition of sulfate reduction. At soluble 60 mg/L of Ni, denitrification was partially inhibited prior to recover after 34 days of enrichment by other Ni-tolerant species (including Delftia, Zoogloea and Azospira) that supported Dechloromonas. Subsequently, the FBR cultures completely removed nitrate even at 500 mg/L of Ni. Visual Minteq speciation model predicted the formation of NiS, NiCO3 and Ni-3(PO4)(2), whilst only Ni-3(PO4)(2) was detected by XRD. (C) 2014 Elsevier Ltd. All rights reserved.
机译:这项研究表明,流化床反硝化培养物可在7-8和22摄氏度下耐受高达500 mg / L的可溶性Ni浓度。从10至40 mg / L的饲料Ni中,反硝化作用可完全去除硝酸盐和亚硝酸盐。 30 mg / L硫酸盐的同时还原产生10 mg / L的硫化物,使镍沉淀出来,导致可溶性废水Ni低于22 mg / L。在这个阶段,脱氯菌属是主要的反硝化细菌。在60至500 mg / L的进料镍中,由于抑制了硫酸盐的还原,镍残留在溶液中。在可溶性Ni含量为60 mg / L的情况下,富集34天后,其他反硝化物种(包括Delftia,Zoogloea和Azospira)都通过脱氯单胞菌来抑制部分反硝化作用。随后,即使在500 mg / L的Ni下,FBR培养物也能完全去除硝酸盐。视觉Minteq形态模型预测了NiS,NiCO3和Ni-3(PO4)(2)的形成,而XRD仅检测到Ni-3(PO4)(2)。 (C)2014 Elsevier Ltd.保留所有权利。

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