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Pilot study of UASB process treating PTA manufacturing wastewater

机译:UASB工艺处理PTA生产废水的中试研究

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A pilot-scale upflow anaerobic sludge blanket (UASB) reactor was employed to treat the wastewater of a purified-terephthalic-acid (PTA) manufacturing factory. The performance of UASB reactor in terms of COD removal was achieved 62% at the volumetric loading rate of 2.93 kg COD/m(3)/day. One of the major constituents, p-toluic acid in PTA wastewater was the refractory component due to the methyl substituent on the aromatic ring, which restricted the biodegradation performance. Moreover, from our study, it was surprising that high concentration of acetic acid would retard the degradation of aromatics in the sludge bed. A control strategy of acetic acid level in the sludge bed was suggested during the start-up period. Comparison of the anaerobic biodegradability of aromatic substituents in PTA wastewater was concluded as the following sequence: -COOH > -CHO greater than or equal to -CH3 in terms of the derivative functional groups based on the benzoic acid. Observation of bacterial population of the sludge granules showed high diversity of syntrophic structure on the biogranular surface as well as acetoclastic methanogens.
机译:中试规模的厌氧污泥层(UASB)反应器用于处理纯对苯二甲酸(PTA)制造工厂的废水。在2.93 kg COD / m(3)/ day的体积装载率下,UASB反应器的COD去除性能达到62%。 PTA废水中的主要成分之一,对甲苯甲酸是由于芳环上的甲基取代基而导致的难降解成分,从而限制了其生物降解性能。而且,根据我们的研究,令人惊讶的是,高浓度的乙酸会延迟污泥床中芳烃的降解。建议在启动期间控制污泥床中乙酸水平的策略。对PTA废水中芳香族取代基的厌氧生物降解性进行比较的结论如下:-基于苯甲酸的衍生官能团,-COOH> -CHO大于或等于-CH3。对污泥颗粒细菌种群的观察表明,生物颗粒表面上的营养结构和乙酰破伤性产甲烷菌具有高度多样性。

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