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Application of Statistical Tool for the Optimization of Biofiltration of Toluene Using Corn Stacks as Packing Material

机译:统计工具在以玉米堆为包装材料优化甲苯生物过滤中的应用

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In this work, statistical design was applied for the optimization of process parameters for the biofiltration of toluene using mixed microorganisms obtained from pharmaceuticals wastewater sludge in a packed bed biofilter. The effects of process parameters such as gas flow rate, initial toluene concentration, height of the packing material, and temperature on removal efficiency (RE) of toluene was studied and optimized using response surface methodology. Using Box-Behnken Design, 30 experiments were carried out for the four test variables. From the results, the optimum condition for maximum RE was found to be: gas flow rate—0.01 m~3h~(-1),initial toluene concentration —0.25 gm~(-3), packing height—0.75 m, and temperature —31 ℃. At these optimized conditions, the removal efficiency of toluene was found to be 95 %. A high R2 value of greater than 0.9 indicates the fitness of the model to predict the experimental data. Biokinetic studies led to a good fit between experimental data and mathematical equations, yielding a calculated maximum toluene degradation rate of 140.42 gm~(-3)h~(-1) with a half-velocity constant, K_S, of 0.076 gm~(-3).
机译:在这项工作中,统计设计被应用于优化甲苯生物过滤工艺参数,该工艺参数使用从填充床生物滤池中的制药废水污泥获得的混合微生物。研究了工艺参数,例如气体流速,初始甲苯浓度,填料的高度和温度对甲苯去除效率(RE)的影响,并使用响应曲面方法进行了优化。使用Box-Behnken设计,对四个测试变量进行了30个实验。结果表明,最大RE的最佳条件为:气体流量0.01 m〜3h〜(-1),初始甲苯浓度0.25 gm〜(-3),填充高度0.75 m,温度31℃。在这些优化条件下,发现甲苯的去除效率为95%。大于0.9的高R2值表明模型适合于预测实验数据。生物动力学研究使实验数据与数学方程式很好地吻合,得出的最大甲苯降解速率为140.42 gm〜(-3)h〜(-1),半速度常数K_S为0.076 gm〜(- 3)。

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