Biokinetic coefficients determination of a MBR for styrene and ethylbenzene as substrate base on Andrews model

S. Seyedi, H. Hazrati, J. Shayegan
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Abstract

In this study, a lab-scale membrane bioreactor (MBR) was operated for a period of more than 10 months to determine the biokinetic coefficients of the system under the hydraulic retention times (HRT) of 20, 15 and 10 hrs and sludge retention times (SRT) of 5-20 days. The results revealed that the biological removal efficiency of styrene and ethylbenzene at a solid retention time of 20 day and a hydraulic retention time of 15 hr was higher compared to a SRT of 10 day and at the same HRT. The results also showed that the yield (Y), the endogenous decay coefficient (kd), the maximum specific growth rate (μmax), and the saturation constant (Ks) for styrene and ethylbenzene as substrate were 0.60 and 0.60 mg/mg, 0.25 and 0.25 day−1, 0.188 and 0.363 h-1, and 0.146 and 2.82 mg /l, respectively. Furthermore, ethylbenzene was more appropriate as a source of carbon to activated sludge in the membrane bioreactor than the styrene which had a lower μmax than ethylbenzene.
基于Andrews模型的以苯乙烯和乙苯为底物的MBR生物动力学系数测定
本研究在实验室规模的膜生物反应器(MBR)上运行了10个多月,以确定系统在水力停留时间(HRT)为20、15和10小时,污泥停留时间(SRT)为5-20天下的生物动力学系数。结果表明,固体滞留时间为20 d和水力滞留时间为15 h时,对苯乙烯和乙苯的生物去除效率高于同等HRT条件下SRT为10 d的生物去除效率。结果还表明,苯乙烯和乙苯作为底物的产率(Y)、内源衰减系数(kd)、最大特定生长速率(μmax)和饱和常数(Ks)分别为0.60和0.60 mg/mg、0.25和0.25 day−1、0.188和0.363 h-1、0.146和2.82 mg/ l。此外,在膜生物反应器中,乙苯比苯乙烯更适合作为活性污泥的碳源,而苯乙烯的μmax比乙苯低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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