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首页> 外文期刊>International journal of hydrogen energy >Improved photo-fermentative hydrogen production by biofilm reactor with optimizing carriers and acetate concentration
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Improved photo-fermentative hydrogen production by biofilm reactor with optimizing carriers and acetate concentration

机译:通过优化载体和乙酸盐浓度的生物膜反应器改善光发酵制氢

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摘要

To enhance photo-fermentative hydrogen production (PFHP), biofilm reactor (BR) was employed as an ideal strategy with optimization on key factors of acetate concentration and carriers in this work. Optimal conditions for hydrogen production were acetate concentration of 4 g/L and carriers (silicon sheet) of 10 cm x 1 cm at amount of 1 piece. Biofilm formed on silicon sheet strongly improved hydrogen production compared with control reactor (CR). Cumulative hydrogen volume was enhanced about 20% from 2850 +/- 130 mL/L of CR to 3349 +/- 153 mL/L of BR and hydrogen yield was increased 20% from 2.61 +/- 0.13 mol H-2/mol acetate of CR to 3.06 +/- 0.15 mol H-2/mol acetate of BR at 4 g/L acetate. Protein and deoxyribonucleic acid (DNA) were important components to form the biofilm and they occupied 90% of extracellular polymeric substances (EPS). In particular, DNA, nearly 50% content of EPS, likely indicated a substantial contribution to biofilm formation and bacterial communication. Moreover, it suggested biofilm could regulate free cells to decline EPS secretion for improved hydrogen production. This work indicates BR could be a promising and economic strategy to enhance hydrogen production by photo-fermentation. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:为了提高光发酵制氢(PFHP),在这项工作中,采用生物膜反应器(BR)作为优化乙酸盐浓度和载流子关键因素的理想策略。产氢的最佳条件是乙酸盐浓度为4 g / L,载体(硅片)的量为1件,尺寸为10 cm x 1 cm。与对照反应器(CR)相比,在硅片上形成的生物膜极大地提高了产氢量。从2850 +/- 130 mL / L的CR到3349 +/- 153 mL / L的BR的累积氢量增加了约20%,从2.61 +/- 0.13 mol H-2 / mol的乙酸盐将氢气的产率提高了20%在4g / L乙酸盐下,CR = 3.06 +/- 0.15mol H-2 / mol BR的乙酸盐。蛋白质和脱氧核糖核酸(DNA)是形成生物膜的重要成分,它们占据了90%的细胞外聚合物(EPS)。尤其是DNA,EPS含量接近50%,可能表明它对生物膜形成和细菌传播具有重要作用。此外,它表明生物膜可以调节游离细胞以降低EPS分泌,从而提高产氢量。这项工作表明,BR可能是通过光发酵提高氢产量的有前途的经济策略。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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