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Optimization of phototrophic hydrogen production by Rhodopseudomonas palustris PBUM001 via statistical experimental design

机译:通过统计实验设计优化Phodopseudomonas palustris PBUM001的光养性产氢

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摘要

Phototrophic hydrogen production by indigenous purple non-sulfur bacteria, Rhodopseudomonas palustris PBUM001 from palm oil mill effluent (POME) was optimized using response surface methodology (RSM). The process parameters studied include inoculum sizes (% v/v), POME concentration (% v/v), light intensity (klux), agitation (rpm) and pH. The experimental data on cumulative hydrogen production and COD reduction were fitted into a quadratic polynomial model using response surface regression analysis. The path to optimal process conditions was determined by analyzing response surface three-dimensional surface plot and contour plot. Statistical analysis on experimental data collected following Box-Behnken design showed that 100% (v/v) POME concentration, 10% (v/v) inoculum size, light intensity at 4.0 klux, agitation rate at 250 rpm and pH of 6 were the best conditions. The maximum predicted cumulative hydrogen production and COD reduction obtained under these conditions was 1.05 ml H_2/ml POME and 31.71% respectively. Subsequent verification experiments at optimal process values gave the maximum yield of cumulative hydrogen at 0.66 ± 0.07 ml H_2/ml POME and COD reduction at 30.54 ± 9.85%.
机译:使用响应表面方法(RSM)优化了本地紫色非硫细菌棕榈油工厂废水(POME)的光生红细菌PBUM001的光养氢生产。研究的工艺参数包括接种量(%v / v),POME浓度(%v / v),光强度(klux),搅拌(rpm)和pH。使用响应面回归分析将关于累积氢气产生和COD还原的实验数据拟合到二次多项式模型中。通过分析响应表面三维表面图和轮廓图来确定最佳工艺条件的途径。根据Box-Behnken设计收集的实验数据的统计分析表明,POME浓度为100%(v / v),接种物大小为10%(v / v),4.0 klux的光强度,250 rpm的搅拌速度和pH为6是最好的条件。在这些条件下获得的最大预计累积氢气产生量和COD还原量分别为1.05 ml H_2 / ml POME和31.71%。随后在最佳工艺值下进行的验证实验得出最大累积氢气产量为0.66±0.07 ml H_2 / ml POME,COD减少率为30.54±9.85%。

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