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Hybrid reactor for priority pollutant nitrobenzene removal

机译:用于优先去除污染物硝基苯的混合反应器

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The performance of a hybrid reactor, comprising of trickling filter and activated sludge process, in treating nitrobenzene wastewater was investigated. Acetate induced cells of mixed consortia was acclimatized with gradual increase of nitrobenzene concentration up to 90 mg/l in 100 days using sodium acetate as co-substrate and considering COD and nitrobenzene concentration as paramount parameters for assessing the growth of biofilm and acclimation. A removal of 60-95.80% COD and 80-90.23% nitrobenzene was observed during acclimation. During hydraulic retention time (HRT) studies, the optimum HRT was found to be 29.55 h at which a maximum of 95.83% COD and 97.93% nitrobenzene removal was observed. Other studies included optimization of C:N ratio, subslrate:co-substrate ratio, effect of shock loading and estimation of volatilization losses. The optimum C:N ratio was found to be 100:20 at which maximum 97.93% removal of nitrobenzene was observed. At optimum HRT (29.55h) and optimum C:N ratio (100:20) optimum substrate:co-substrate ratio was found to be 1:33. From the shock load studies it can be concluded that the system can withstand shock load up to two times of usual nitrobenzene concentration. A loss of 9.44% nitrobenzene was observed due to volatilization and mass balance gave an efficiency of 87.49% biological removal of nitrobenzene.
机译:研究了包括滴滤池和活性污泥法的混合反应器在处理硝基苯废水中的性能。使用乙酸钠作为共底物,并考虑COD和硝基苯浓度作为评估生物膜生长和驯化的最重要参数,在100天内将硝基苯浓度逐步增加至90 mg / l,从而使混合财团的乙酸诱导细胞适应环境。在驯化过程中观察到去除了60-95.80%的COD和80-90.23%的硝基苯。在水力停留时间(HRT)研究期间,发现最佳HRT为29.55小时,此时观察到最大95.83%的COD和97.93%的硝基苯去除率。其他研究包括优化C:N比率,下沉物:共底物比率,冲击载荷的影响以及挥发损失的估计。发现最佳的C:N比率为100:20,在该比率下观察到最大的硝基苯去除率为97.93%。在最佳HRT(29.55h)和最佳C:N比(100:20)下,发现最佳底物:共底物比率为1:33。从冲击负荷研究中可以得出结论,该系统可以承受的冲击负荷是普通硝基苯浓度的两倍。观察到由于挥发,硝基苯损失了9.44%,质量平衡使生物去除硝基苯的效率达到了87.49%。

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