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Hydrogen production from biodiesel industry waste by using a co-culture of Enterobacter aerogenes and Clostridium butyricum

机译:通过使用产气肠杆菌和丁酸梭菌的共培养从生物柴油工业废料中制氢

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Valorization of crude glycerol (CG), a waste of biodiesel production process, was investigated for increased hydrogen production by co-culture system using Enterobacter aerogenes NRRL B-407 and Clostridium butyricum NRRL B-41122. The ability of E. aerogenes was evaluated as a replacement of expensive reducing agent to maintain anaerobic conditions for the growth of C. butyricum. The co-culture resulted in increased hydrogen production, reaching a maximum of 19.46 ± 0.95 mmol-H_2/L-medium in comparison to monoculture of E. aerogenes (15.64 ± 0.47) and C. butyricum (17.44 ± 0.38) in the presence of reducing agent. The effect of inoculum ratio was investigated and hydrogen yield was 0.95 mmol-H_2/mol-glycerol at 1:11 inoculum ratio with more than 85% of substrate utilization was comparable to other mixed and co-culture studies. In addition to hydrogen, value added by-products such as 1,3-propandiol, acetic acid, butyric acid and ethanol have also been produced. Co-culture indicated the possibility of valorization of CG as a stable functional consortium with higher conversion efficiency for increased hydrogen along with high value by-product production. Additionally, the study provided the evidence of medium composition controlled metabolic pathway shift during CG bioconversion. Valorization of low cost CG with efficient co-culture of hydrogen production can aid biodiesel in-house energy source.
机译:通过使用产气肠杆菌NRRL B-407和丁酸梭菌NRRL B-41122的共培养系统,研究了粗甘油(CG)(生物柴油生产过程的废料)的增值增产氢的方法。评价了产气链球菌的能力,以替代昂贵的还原剂来维持酪酸梭菌生长的厌氧条件。共培养导致氢气产生增加,与在有氧存在下产气链球菌(15.64±0.47)和丁酸梭菌(17.44±0.38)的单培养相比,最高产氢量为19.46±0.95 mmol-H_2 / L-培养基。还原剂。研究了接种比例的影响,在1:11的接种比例下氢气产率为0.95 mmol-H_2 / mol-甘油,超过85%的底物利用率可与其他混合培养和共培养研究相媲美。除氢外,还生产了增值副产物,例如1,3-丙二醇,乙酸,丁酸和乙醇。共培养表明,有可能将CG稳定化,作为稳定的功能性财团,具有更高的转化效率以增加氢气以及高价值的副产品生产。另外,该研究提供了在CG生物转化过程中培养基组成控制的代谢途径转移的证据。低成本CG与有效的氢气生产共培养来进行评估可以帮助生物柴油内部能源。

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