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Effect Of Iron Concentration On Continuous H_2 Production Using Membrane Bioreactor

机译:铁浓度对膜生物反应器连续生产H_2的影响

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The effect of FeSO_4 on continuous H_2 production in a membrane bioreactor (MBR) was investigated using anaerobic mixed microflora under mesophilic condition. The H_2 production of 41.6 I/day was obtained at 10.9 mg FeSO_4/l, which was 1.59 times higher than that at 2.7 mg FeSO_4/l. Between 2.7 and 13.7 mg FeSO_4/l, the H_2 production rate increased in parallel with the H_2 yield under high-cell-density condition. For the same amounts of FeSO_4, increases in butyric acid together with decreases in lactic acid promoted a reduction of the number of protons and the resultant release of H_2. The hydrogenase activity of 1.08 mg methylene blue (M.B) reduced/min at 10.9 mg FeSO_4/l was about sixfold higher than at 2.7 mg FeSO_4/l These results suggest that the addition of iron and sulfur to an MBR is an important key factor in the enhancement of H_2 production.
机译:在中温条件下,使用厌氧混合菌群研究了FeSO_4对膜生物反应器(MBR)中连续H_2产生的影响。在10.9 mg FeSO_4 / l下获得的H_2产量为41.6 I /天,是2.7 mg FeSO_4 / l处的H_2产量的1.59倍。 FeSO_4 / l介于2.7和13.7 mg之间,在高细胞密度条件下,H_2的产生速率与H_2的产生速率平行。对于相同量的FeSO_4,丁酸的增加与乳酸的减少一起促进了质子数的减少以及由此产生的H_2的释放。在10.9 mg FeSO_4 / l处每分钟减少1.08 mg亚甲蓝(MB)的氢化酶活性是在2.7 mg FeSO_4 / l处每分钟还原的氢酶活性的大约六倍。这些结果表明,向MBR中添加铁和硫是一个重要的关键因素。增强H_2的产生。

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