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Anaerobic bio-hydrogen production using pre-heated river sediments as seed sludge

机译:使用预热的河流沉积物作为种子污泥进行厌氧生物氢生产

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Anaerobic bio-hydrogen production is the focus in the field of bio-energy resources. In this paper, a series of batch experiments were conducted to investigate the effects of several factors on anaerobic biohydrogen producing process carried out by pre-heated river sediments. The results showed that several factors such as substrate and its concentration, temperature and the initial pH value could affect the anaerobic bio-hydrogen production in different levels. At WC and the initial pH of 6.5, using glucose of 20,000 mg COD/L as substrate, the highest hydrogen production of 323.8 ml-H-2/g TVS in a 100 ml batch reactor was reached, the specific hydrogen production rate was 37.7 ml-H-2/g TVS h, and the hydrogen content was 51.2%. Thereafter using the same pre-heated river sediments as seed sludge, continuous anaerobic bio-hydrogen production was achieved successfully in a lab-scale CSTR with gas-separator. At the organic loading rate of 36 kg COD/m(3)d, the highest hydrogen production was 6.3-6.71-H-2/1-reactor d, the specific hydrogen production was 1.3-1.4 mol-H-2/mol-glucose, and the hydrogen content in the gas was 52.3%. The effluent of the bio-reactor contained some small molecular organics, mainly including ethanol, acetate, butyrate and their molar proportion is 1 : 1 : 0.6.
机译:厌氧生物氢生产是生物能源领域的重点。本文进行了一系列分批实验,研究了几种因素对预热河道沉积物进行厌氧生物制氢过程的影响。结果表明,基质,其浓度,温度和初始pH值等因素可以不同程度影响厌氧生物产氢。在WC和初始pH值为6.5的情况下,以20,000 mg COD / L的葡萄糖为底物,在100 ml分批反应器中氢的最高产量为323.8 ml-H-2 / g TVS,比氢生成率为37.7。 ml-H-2 / g TVS h,氢含量为51.2%。之后,使用与种子污泥相同的预热河道沉积物,在带有气体分离器的实验室规模CSTR中成功实现了连续厌氧生物氢生产。在36千克COD / m(3)d的有机负载量下,最高产氢量为6.3-6.71-H-2 / 1-反应器d,比产氢量为1.3-1.4 mol-H-2 / mol-葡萄糖,气体中的氢含量为52.3%。生物反应器的流出物包含一些小分子有机物,主要包括乙醇,乙酸盐,丁酸盐,并且其摩尔比为1:1:0.6。

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