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Impact of salinity on anaerobic microbial community structure in high organic loading purified terephthalic acid wastewater treatment system

机译:高有机负荷精对苯二甲酸废水处理系统中盐度对厌氧微生物群落结构的影响

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摘要

To investigate the effect of salinity (1% sodium chloride) on anaerobic microbial community structure in high strength telephthalic wastewater treatment system, the performances of anaerobic-aerobic process and the shifts of microbial community in anaerobic tank were studied and determined. Results showed that the chemical oxygen demand (COD) removal in the whole process remained above 90%. And the effluent concentrations of targeted pollutants were lower than 10 mg/L, other than para-toluic acid (PT, 38.09 mg/L). However, methane production significantly decreased compared to no salinity situation. This might be due to the inhibition of salinity on methanogens, which hindered the conversion of acetate to methane. Furthermore, the dominant genus in bacterial level changed from Tepidisphaera to Syntrophus, which facilitated the syntrophic association with hydrogenotrophic methanogens. The prevailed archaea remained acetoclastic Methanothrix above 90%. Therefore, the salinity on anaerobic microbial community structure mainly reflects in the methanogen process, remarkably decreasing methane production.
机译:为了研究盐度(1%的氯化钠)对高浓度远距离废水处理系统中厌氧微生物群落结构的影响,研究并确定了厌氧-好氧过程的性能以及厌氧池中微生物群落的变化。结果表明,整个过程中化学需氧量(COD)的去除率保持在90%以上。除对甲苯甲酸(PT,38.09 mg / L)外,目标污染物的出水浓度均低于10 mg / L。但是,与没有盐度的情况相比,甲烷的产量显着下降。这可能是由于盐度对产甲烷菌的抑制作用,阻碍了乙酸盐向甲烷的转化。此外,细菌水平上的优势属从灰单叶菌变成了食肉动物,这促进了与氢营养型产甲烷菌的营养结合。盛行的古细菌仍保持90%以上的乙酰破灭性甲烷菌。因此,厌氧微生物群落结构的盐度主要反映在产甲烷过程中,显着降低了甲烷的产生。

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