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首页> 外文期刊>Bioresource Technology >KINETIC EVALUATION OF AN ANAEROBIC FLUIDISED-BED REACTOR TREATING SLAUGHTERHOUSE WASTEWATER
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KINETIC EVALUATION OF AN ANAEROBIC FLUIDISED-BED REACTOR TREATING SLAUGHTERHOUSE WASTEWATER

机译:厌氧流化床反应器处理屠宰废水的动力学评价

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An anaerobic fluidised-bed reactor for purification of slaughterhouse wastewater was modelled as a continuous-flow, completely-mixed homogeneous microbial system, with the feed COD as the limiting-substrate concentration. The average microbial residence time in the reactor was dt;fined in terms of conventional sludge-retention-time. The experimental data obtained indicated that the Michaelis-Menten expression was applicable to a description of substrate utilisation (i.e. COD removal) in the anaerobic fluidised-bed system. The maximum substrate utilisation rate, k, and the Michaelis constant, K-s, were determined to be 1.2/day and 0.039 g/l. The observed biomass yield in the reactor decreased with increasing sludge-retention-time. The specific methane production rate observed was a linear function of the specific substrate-utilisation rate. [References: 23]
机译:将用于屠宰场废水净化的厌氧流化床反应器建模为连续流,完全混合的均质微生物系统,其中进料COD为极限底物浓度。 dt在反应器中的平均微生物停留时间为dt;以常规污泥的保留时间为准。获得的实验数据表明,Michaelis-Menten表达式可用于描述厌氧流化床系统中底物的利用(即COD去除)。确定最大底物利用率k和米氏常数K-s为1.2 /天和0.039 g / l。随着污泥保留时间的增加,反应器中观察到的生物质产率下降。观察到的特定甲烷产生速率是特定底物利用率的线性函数。 [参考:23]

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