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Removal mechanism of low-concentration Cr (VI) in a submerged membrane bioreactor activated sludge system

机译:潜水膜生物反应器活性污泥系统中低浓度六价铬的去除机理

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摘要

Removal mechanism of low-concentration Cr (VI) (0.4 mg/L) was studied in a submerged membrane bioreactor (SMBR) activated sludge system. SMBR was operated with the synthetic wastewater containing 0.4 mg/L Cr (VI). Bio-removal and inactivation batch experiments were also carried out for studying the low-concentration Cr (VI) removal mechanism. SMBR activated sludge system recovered rapidly from the 0.4 mg/L Cr (VI) shock to achieve the excellent removal of chemical oxygen demand (COD) and NH4 (+)-N. Sulfuricurvum kujiense grew quickly in the bacterial community of activated sludge after Cr (VI) addition. Cr (VI) was mainly removed by the adsorption of extracellular polymeric substances, probably in the form as R-2(SOH+)(2) (CrO4)-Cr-. (2-). Only few of Cr (VI) was transferred into Cr (III) under aerobic condition. All the results indicated that the sulfur was probably involved in 0.4 mg/L Cr (VI) removal process in SMBR.
机译:在浸没式膜生物反应器(SMBR)活性污泥系统中研究了低浓度Cr(VI)(0.4 mg / L)的去除机理。 SMBR在含0.4 mg / L Cr(VI)的合成废水中运行。还进行了生物去除和失活分批实验,以研究低浓度Cr(VI)去除机理。 SMBR活性污泥系统从0.4 mg / L Cr(VI)冲击中快速恢复,从而实现了对化学需氧量(COD)和NH4(+)-N的出色去除。加入六价铬后,苦瓜硫酸硫在活性污泥的细菌群落中迅速生长。六价铬主要是通过吸附细胞外聚合物质而去除的,其形式可能为R-2(SOH +)(2)(CrO4)-Cr-。 (2-)。在好氧条件下,只有极少量的六价铬被转移到三价铬中。所有结果表明,SMBR中硫可能参与了0.4 mg / L Cr(VI)的去除过程。

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