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Influence of temperature on the start-up of membrane bioreactor: kinetic study

机译:温度对膜生物反应器初创的影响:动力学研究

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摘要

The start-up phase of a membrane bioreactor (MBR) for municipal wastewater treatment was studied to determine the effect of temperature on the organic matter removal and heterotrophic kinetics. The MBR system was analyzed during four start-up phases with values of hydraulic retention time (HRT) of 6 h and 10 h, mixed liquor suspended solids (MLSS) concentrations of 4,000 mg L-1 and 7,000 mg L-1 in the steady state, and temperature values of 11.5, 14.2, 22.9 and 30.1 degrees C. The influence of temperature on the biological process of organic matter removal was determined through the Arrhenius equation and Monod model. At the most favorable operation conditions of HRT (10 h) and MLSS (7,000 mg L-1) corresponding to phase 4, the effect of these variables dominated over the temperature. Heterotrophic biomass from phase 2 (HRT = 10 h, MLSS = 4,000 mg L-1 and T = 30.1 degrees C) had the highest values of chemical oxygen demand (COD) degradation rate (r(su), (H)), implying less time to remove organic matter and shorter duration of the start-up phase.
机译:研究了市政废水处理的膜生物反应器(MBR)的启动阶段,以确定温度对有机物质去除和异养动力学的影响。在四个启动相期间分析了MBR系统,其液压保留时间(HRT)的值为6小时和10小时,混合液悬浮固体(MLS)浓度为4,000mg L-1和7,000mg L-1的稳定性状态,温度值11.5,14.2,22.9和30.1℃。通过Arrhenius方程和Monod模型测定温度对有机物质去除生物过程的影响。在HRT(10小时)和MLSS(7,000mg L-1)的最有利的操作条件下,对应于相4的MLS(7,000 mg),这些变量在温度上占据主导的效果。来自相2(HRT = 10h,MLSS = 4,000mg L-1和T = 30.1℃)的异养生物质具有最高的化学需氧量(COD)降解速率(R(SU),(H)),意味着消除有机质的时间较少,启动阶段的持续时间较短。

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