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Effect of NaCl concentration on the performance of sequential anaerobic and aerobic membrane bioreactors treating textile wastewater

机译:NaCl浓度对顺序厌氧和好氧膜生物反应器处理纺织品废水性能的影响

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This study aims at evaluating the performance of sequential anaerobic (AnMBR) and aerobic MBRs (AeMBR) treating synthetic textile wastewater containing varying concentrations (0-1000 mg/L) of NaCl. High COD (up to 90%) and dye (>= 99%) removals were achieved in the AnMBR and increasing salinity did not significantly affect the process performance, although biomass concentrations decreased appreciably in both MBRs. In the AeMBR, although COD remaining in the effluent of the AnMBR was further degraded, dye concentration increased due to autooxidation of aromatic amines. A significant portion of the aromatic amines generated in the AnMBR was also degraded in the AeMBR. Gel permeation chromatography (GPC) analyses illustrated that high molecular weight organics generated in the AnMBR may be entrapped in the gel/cake layer developed on the membrane surface and salinity affected the molecular weight distribution of the organics. Relatively large organic molecules were detected in the external membrane foulants, which may originate from loosely bound EPS. Denaturing gradient gel electrophoresis (DGGE) analysis of 16S rDNA genes showed quite stable community structure in both MBRs. When AnMBR and AeMBR were operated at 4.2 LMH and 8.1 LMH, respectively, MBRs could be operated at low TMPs without any chemical cleaning for long durations. The biogas sparging rate significantly affected cake formation and TMP in the AnMBR. In both MBRs, chemical cleaning almost completely removed irreversible fouling. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究旨在评估连续厌氧(AnMBR)和好氧MBR(AeMBR)处理含有不同浓度(0-1000 mg / L)NaCl的合成纺织废水的性能。尽管在两个MBR中生物量浓度均明显下降,但在AnMBR中实现了高COD(高达90%)和染料(> = 99%)去除,并且盐度的提高并没有显着影响工艺性能。在AeMBR中,尽管残留在AnMBR废水中的COD进一步降解,但由于芳族胺的自氧化,染料浓度增加。在AnMBR中产生的大部分芳香胺在AeMBR中也被降解。凝胶渗透色谱法(GPC)分析表明,在AnMBR中产生的高分子量有机物可能被截留在膜表面上形成的凝胶/饼层中,并且盐度影响了有机物的分子量分布。在外膜污垢中检测到相对较大的有机分子,这可能源自松散结合的EPS。对16S rDNA基因的变性梯度凝胶电泳(DGGE)分析显示,两个MBR中的群落结构都非常稳定。当AnMBR和AeMBR分别在4.2 LMH和8.1 LMH下运行时,MBR可以在低TMP下运行,而无需任何化学清洗即可长期使用。沼气喷射速率显着影响AnMBR中的滤饼形成和TMP。在两个MBR中,化学清洗几乎完全消除了不可逆的污垢。 (C)2015 Elsevier B.V.保留所有权利。

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