首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >The long-term effects of hexavalent chromium on anaerobic ammonium oxidation process: Performance inhibition, hexavalent chromium reduction and unexpected nitrite oxidation
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The long-term effects of hexavalent chromium on anaerobic ammonium oxidation process: Performance inhibition, hexavalent chromium reduction and unexpected nitrite oxidation

机译:六价铬对厌氧氧化过程的长期影响:性能抑制,六价铬还原和意外的亚硝酸盐氧化

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The toxicity of hexavalent chromium (Cr(VI)) is one of the challenges in implementing Anammox process to ammonium-rich wastewater treatment. However, the response of Anammox process to Cr(VI) stress and the inhibition mechanism remain unclear. Here, two Anammox UASB reactors were operated for 285 days under different Cr(VI) stresses. The results showed Anammox performance was not affected at low Cr(VI) concentration (i. e., 0-0.5 mg L-1), but was severely inhibited at 0.8 mg L-1. Attempts to domesticate Anammox process to higher Cr(VI) by lowering nitrogen loading rate were failed. Examination of Cr(VI) fate showed the occurrence of extracellular and intracellular Cr(VI) reduction to Cr(III). The inhibition was ascribed to the significant intracellular Cr(VI) reduction, accounting for 99.78% of the total Cr(VI) reduction. Moreover, under long-term Cr (VI) exposure, most nitrite was oxidized to nitrate. But microbial community showed no enrichment of Cr(VI) reducing bacteria and other nitrogen transformation-related bacteria.
机译:六价铬的毒性(Cr(vi))是对富含铵废水处理实施厌氧过程的挑战之一。然而,厌氧过程对Cr(VI)应激和抑制机制的响应仍然不清楚。在此,在不同的Cr(VI)应力下进行两次厌氧UASB反应器285天。结果表明,厌氧性能不受低Cr(VI)浓度(即,0-0.5mg L-1)的影响,但在0.8mg L-1处严重抑制。通过降低氮负载率来驯化厌氧过程至较高的Cr(VI)的试图失败。检查Cr(vi)命运表明,细胞外和细胞内Cr(vi)还原为Cr(iii)。抑制归入到显着的细胞内Cr(VI)减少,占总Cr(VI)的99.78%。此外,在长期Cr(VI)曝光下,大多数亚硝酸盐氧化成硝酸盐。但微生物群落没有富集Cr(vi)还原细菌和其他氮转化相关细菌。

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