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FEASIBILITY OF HYDROGEN PRODUCTION FROM ANAEROBIC MIXED FERMENTATION

机译:厌氧混合发酵制氢的可行性

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This study reports the effects for selectively enriching hydrogen-producing microbial species present in biological sludge produced during animal wastewater treatment. The purpose for the enrichment methodology was to enhance production of hydrogen gas under mixed anaerobic fermentative conditions of organic substrates. Methodology to enrich hydrogen-producing bacteria included pH adjustment of natural inocula to 3 and 5 with and without heat treatment (by wet heat-shock of natural inocula). Enriched mixed bacteria were cultivated at initial pH values of 5, 6, and 7 with synthetic organic wastewater (carbon source was mainly glucose) containing different levels of nitrogen (2.0 and 0.8 g/L as total nitrogen) at mesophilic temperature (at 35°C) under static batch conditions. The culture pH significantly affected hydrogen production. Maximum specific hydrogen production achieved over the entire culture time was 223 mL H 2 /g cell and 379 mL H 2 /g cell in culture at pH 7 using inocula that had been enriched at pH 3 with and without heat treatment (HT and NHT), respectively, before adding culture. HT of inocula enriched at pH 3 contributed positively to hydrogen production. Enrichment at pH 5 had weak potential to enhance hydrogen evolution irrespective of NHT and HT. At maximum production of hydrogen (at culture pH 7 after enrichment at pH 3 with HT), the major intermediate metabolites were acetate and n-butyrate (as volatile fatty acids), and ethanol (as organic solvents). Propionate was not detected. No significant effects were found on hydrogen production using supplements with different nitrogen levels
机译:这项研究报告了选择性富集动物废水处理过程中产生的生物污泥中存在的产氢微生物物种的影响。富集方法的目的是在有机底物的混合厌氧发酵条件下提高氢气产量。富集产氢细菌的方法包括,在有和没有进行热处理的情况下(通过天然接种物的湿热冲击)将天然接种物的pH值调节至3和5。富集的混合细菌在中温温度(35°C)下用合成有机废水(碳源主要是葡萄糖)在pH值为5、6和7的条件下培养,该废水中氮含量不同(总氮为2.0和0.8 g / L) C)在静态批处理条件下。培养液的pH值显着影响氢气的产生。在使用pH值为7的培养液中,在整个培养时间内达到的最大比氢产量为223 mL H 2 / g细胞和379 mL H 2 / g细胞在添加培养物之前,分别在有和没有热处理(HT和NHT)的条件下在pH 3下浓缩。 pH 3时富集接种物的HT对产氢有积极作用。不管NHT和HT如何,在pH 5浓度下富集氢的能力都很弱。在最大的氢气产生量下(培养液在pH值为3的条件下用HT富集后,pH为7的培养液),主要的中间代谢产物是乙酸盐和正丁酸盐(作为挥发性脂肪酸),以及乙醇(作为有机溶剂)。未检测到丙酸。使用不同氮含量的补品对产氢没有发现明显影响

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