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通过球形红杆菌和坚强芽孢杆菌共培养利用奶酪乳清的黑暗发酵废水进行光解水制氢

Exploitation of dark fermented effluent of cheese whey by co-culture of Rhodobacter sphaeroides and Bacillus firmus for photo-hydrogen production.

作者信息

Pandey A, Pandey A

机构信息

Department of Biotechnology, Motilal Nehru National Institute of Technology, Allahabad-211004, U.P., India.

Department of Chemistry, Motilal Nehru National Institute of Technology, Allahabad-211004, U.P., India.

出版信息

Cell Mol Biol (Noisy-le-grand). 2017 Jul 31;63(6):93-99. doi: 10.14715/cmb/2017.63.6.19.

Abstract

In this study photo-hydrogen production from cheese whey dark fermentation (DF) effluent by the co-culture of Rhodobacter sphaeroides -NMBL-01 and Bacillus firmus - NMBL-03 has been reported. The effect of pH, initial chemical oxygen demand (COD) and the concentration effect of FeSO4.7H2O on photo-hydrogen production have been investigated. The end products of dark fermentation effluent of cheese whey were mainly comprised of soluble organic acids, i.e. butyric acid and lactic acid. The batch process was carried out under light intensity of 2.5 kLux at 32 ± 2oC without any addition of extra carbon and nitrogen source. The single parameter optimization studies revealed optimum pH 6.5, initial COD 4.71 g/L and supplementation of Fe2+ concentration 100 mg/L. The maximum cumulative hydrogen production and yield were found to be 469 ± 45.8 ml H2/L and 146.56 ± 14.31 ml H2/g COD reduced (67.9% reduction in COD) respectively. The mutual interactions among the process parameters were also investigated by three factorial Box-Behnken design of response surface methodology. The optimized experimental values were found concurrent with the calculated values obtained from the theoretical model.

摘要

本研究报道了球形红杆菌 -NMBL-01 与坚强芽孢杆菌 -NMBL-03 共培养从奶酪乳清暗发酵(DF)废水光解产氢的情况。研究了pH值、初始化学需氧量(COD)以及七水硫酸亚铁(FeSO4·7H2O)浓度对光解产氢的影响。奶酪乳清暗发酵废水的最终产物主要由可溶性有机酸组成,即丁酸和乳酸。分批过程在32 ± 2℃、光照强度为2.5千勒克斯的条件下进行,不添加任何额外的碳源和氮源。单参数优化研究表明,最佳pH值为6.5,初始COD为4.71 g/L,Fe2+浓度为100 mg/L。发现最大累积产氢量和产氢率分别为469 ± 45.8 ml H2/L和146.56 ± 14.31 ml H2/g COD降低量(COD降低67.9%)。还通过响应面法的三因素Box-Behnken设计研究了工艺参数之间的相互作用。发现优化后的实验值与从理论模型获得的计算值一致。

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