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Kinetic evaluation of a partially packed upflow anaerobic fixed film reactor treating low-strength synthetic rubber wastewater

机译:部分填充上流厌氧固定膜反应器处理低强度合成橡胶废水的动力学评价

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摘要

A bench-scale model of a partially packed upflow anaerobic fixed film (UAF) reactor was set up and operated at five different hydraulic retention times (HRTs) of (17, 14, 10, 8, and 5) days. The reactor was fed with synthetic rubber wastewater consisting of a chemical oxygen demand (COD) concentration of 6355–6735 mg/L. The results were analyzed using the Monod model, the Modified Stover-Kincannon models, and the Grau Second-Order Model. The Grau Second-Order model was found to best fit the experimental data. The biokinetic constant values, namely the growth yield coefficient (Y) and the endogenous coefficient (K ) were 0.027 g VSS/g COD and 0.1705 d , respectively. The half-saturation constant (K ) and maximum substrate utilization rate (K) returned values of 84.1 mg/L and 0.371 d , respectively, whereas the maximum specific growth rate of the microorganism (μ ) was 0.011 d . The constants, U and K of the Stover-Kincannon model produced values of 6.57 g/L/d and 6.31 g/L/d, respectively. Meanwhile, the average second-order substrate removal rate, k , was 105 d . These models gave high correlation coefficients with the value of R = 80–99% and these indicated that these models can be used in designing UAF reactor consequently predicting the behaviour of the reactor.
机译:建立了部分装满的厌氧固定膜(UAF)反应器的台式模型,并在(17、14、10、8和5)天的五个不同的水力停留时间(HRT)下运行。向反应器中注入合成橡胶废水,该废水中的化学需氧量(COD)浓度为6355–6735 mg / L。使用Monod模型,改进的Stover-Kincannon模型和Grau二阶模型对结果进行了分析。发现Grau二阶模型最适合实验数据。生物动力学常数值,即生长产量系数(Y)和内生系数(K)分别为0.027 g VSS / g COD和0.1705 d。半饱和常数(K)和最大底物利用率(K)分别返回值84.1 mg / L和0.371 d,而微生物的最大比生长速率(μ)为0.011 d。 Stover-Kincannon模型的常数U和K分别产生6.57 g / L / d和6.31 g / L / d的值。同时,平均二阶衬底去除率k为105 d。这些模型给出了很高的相关系数,R值为80–99%,这表明这些模型可用于设计UAF反应堆,从而预测反应堆的性能。

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