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The effect of HRT and carriers on the sludge specifications in MBR to remove VOCs from petrochemical wastewater

机译:HRT和载体对MBR中污泥规格的影响,以从石化废水中去除VOC

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This work employs two membrane bioreactors (with and without carrier) to evaluate the influence of carrier and hydraulic retention time (HRT) on the sludge specifications when removing organic volatile compounds (e.g. styrene and ethylbenzene) from petrochemical wastewater. This study is conducted during three various HRTs. The results indicate that the optimum HRT (e.g. 15 h.) was achieved in the reactor with carrier during biological removal and membrane fouling minimization. During the optimum HRT, the biological removal efficiency for styrene, ethylbenzene, and COD is 99.8 +/- 0.1%, 99.8 +/- 0.1%, and 99 +/- 0.8%, respectively, and the concentration of styrene and ethylbenzene in the exit air reached to the minimum concentration (e.g. 0.1 and below 0.1 ppm, respectively). The fluctuation of the transmembrane pressure indicates a slight variation for the reactor with carrier rather than without carrier. Further, the sludge particle distribution in reactors demonstrates that the HRT reduction decreases the sludge particle size. This is also validated by flocculation ability tests. Finally, the alteration of soluble microbial product (SMP) and extracellular polymeric substance (EPS) in two reactors during all the HRTs show that the SMP is the main reason for fouling of the membranes and the EPS is not the main factor for sludge flocculation.
机译:这项工作使用两个膜生物反应器(带和不带载体)评估从石化废水中去除有机挥发性化合物(例如苯乙烯和乙苯)时载体和水力停留时间(HRT)对污泥规格的影响。这项研究是在三种不同的HRT中进行的。结果表明,在生物去除和膜污染最小化过程中,在具有载体的反应器中达到了最佳的HRT(例如15小时)。在最佳HRT期间,对苯乙烯,乙苯和COD的生物去除效率分别为99.8 +/- 0.1%,99.8 +/- 0.1%和99 +/- 0.8%,并且水中苯乙烯和乙苯的浓度出口空气达到最低浓度(例如分别为0.1 ppm和0.1 ppm以下)。跨膜压力的波动表明具有载体而不是没有载体的反应器的轻微变化。此外,反应器中污泥颗粒的分布表明,HRT的降低会减小污泥颗粒的大小。絮凝能力测试也证实了这一点。最后,在所有HRT期间两个反应器中可溶性微生物产物(SMP)和细胞外聚合物(EPS)的变化表明,SMP是膜结垢的主要原因,而EPS并不是污泥絮凝的主要因素。

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