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Biohydrogen Production from Hydrolysates of Selected Tropical Biomass Wastes with Clostridium Butyricum

机译:丁酸梭菌从某些热带生物质废物中水解产生的生物氢

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摘要

Biohydrogen production has received widespread attention from researchers in industry and academic fields. Response surface methodology (RSM) was applied to evaluate the effects of several key variables in anaerobic fermentation of glucose with Clostridium butyrium, and achieved the highest production rate and yield of hydrogen. Highest H2 yield of 2.02 mol H2/mol-glucose was achieved from 24 h bottle fermentation of glucose at 35 °C, while the composition of medium was (g/L): 15.66 glucose, 6.04 yeast extract, 4 tryptone, 3 K2HPO4, 3 KH2PO4, 0.05 L-cysteine, 0.05 MgSO4·7H2O, 0.1 MnSO4·H2O and 0.3 FeSO4·7H2O, which was very different from that for cell growth. Sugarcane bagasse and Jatropha hulls were selected as typical tropical biomass wastes to produce sugars via a two-step acid hydrolysis for hydrogen production. Under the optimized fermentation conditions, H2 yield (mol H2/mol-total reducing sugar) was 2.15 for glucose, 2.06 for bagasse hydrolysate and 1.95 for Jatropha hull hydrolysate in a 3L fermenter for 24 h at 35 °C, with H2 purity of 49.7–64.34%. The results provide useful information and basic data for practical use of tropical plant wastes to produce hydrogen.
机译:生物氢的生产已受到工业和学术领域研究人员的广泛关注。应用响应面法(RSM)评估了丁酸梭菌厌氧发酵葡萄糖中几个关键变量的影响,并获得了最高的产氢率和氢气产率。在35°C的葡萄糖条件下24h瓶发酵24h时,H2的最高产量为2.02μmolH2 / mol-葡萄糖,而培养基的组成为(g / L):葡萄糖15.66、6.04酵母提取物,4胰蛋白,、 3 K2HPO4, 3 KH2PO4、0.05 L-半胱氨酸,0.05 MgSO4·7H2O,0.1 MnSO4·H2O和0.3 FeSO4·7H2O与细胞生长非常不同。甘蔗渣和麻风树皮被选为典型的热带生物质废物,可通过两步酸水解来制糖,以制氢。在最优化的发酵条件下,在35°C的3L发酵罐中,H2的得率(mol H2 / mol总还原糖)为葡萄糖2.15,蔗渣水解物为2.06,麻疯树壳水解物为1.95,H2纯度为49.7。 –64.34%。结果为热带植物废料生产氢气的实际使用提供了有用的信息和基本数据。

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