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Hydrogen production from food waste in anaerobic mesophilic and thermophilic acidogenesis

机译:厌氧嗜温和嗜热酸产生过程中食物垃圾中的氢气产生

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Hydrogen production from food waste by the mesophilic and thermophilic acidogenic culture acclimated with food waste at 5 days HRT for the effect of pH and volatile solid (VS) concentrations was evaluated. The biogas produced from the thermophilic acidogenic culture was free of methane at all tested pH and VS concentrations, but methane was detected from the mesophilic acidogenic culture at all tested pH. The amount of hydrogen production from the thermophilic acidogenic culture was much higher than that from the mesophilic culture at all tested pH because of the methane free condition and negligible propionate production. Increase of VS concentrations from 3 to 10 g VS l~(-1) resulted in the increase of quantity and quality of hydrogen production. The maximum hydrogen content was 69% (v/v) at 10 g VS l~(-1). The hydrogen yield was in the range of 0.9-1.8 mol-H_2/mol-hexose and peaked at 6 g VS l~(-1). Normal butyrate was the main acid product, and the percentages of butyrate, acetate and propionate at tested VS concentrations were 54-60%, 22-31% and 0.3-1%, respectively. Hydrogen producing microorganisms of Thermoanaerobacterium thermosaccharolytium and Desulfotomaculum geothermicum were detected from the thermophilic acidogenic culture, while Thermotogales strain and Bacillus species were detected from the mesophilic acidogenic culture by PCR-DGGE analysis.
机译:评估了在pH值和挥发性固体(VS)浓度的影响下,在5天的HRT时,通过中温和嗜热产酸培养物与食物垃圾的驯化,从食物垃圾中产生的氢气。在所有测试的pH和VS浓度下,嗜热产酸培养液产生的沼气均不含甲烷,但在所有测试pH下均从嗜温产酸培养液中检测到甲烷。在所有测试pH下,嗜热产酸培养物产生的氢气量远高于嗜温培养物产生的氢气量,这是因为无甲烷条件且丙酸产生量可忽略不计。 VS浓度从3 g VS l〜(-1)增加到10 g导致氢气生产的数量和质量增加。在10 g VS l〜(-1)下,最大氢含量为69%(v / v)。氢产率在0.9-1.8mol-H_2 / mol-己糖的范围内,并在6g VS l-(-1)达到峰值。正常的丁酸酯是主要的酸产物,在测试的VS浓度下,丁酸酯,乙酸酯和丙酸酯的百分比分别为54-60%,22-31%和0.3-1%。通过PCR-DGGE分析,从嗜热产酸培养物中检测到嗜热嗜热厌氧杆菌和地热脱氢菌的产氢微生物,而从嗜温产酸培养物中检测到嗜热菌和嗜热芽孢杆菌种。

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