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Biohydrogen production from molasses by anaerobic fermentation with a pilot-scale bioreactor system

机译:通过中试规模的生物反应器系统厌氧发酵从糖蜜生产生物氢

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A pilot-scale study of biohydrogen production was performed in a continuous flow anaerobic fermentation reactor (with an available volume of 1.48 m~3) for over 200 days. The hydrogen bio-producing reactor (HBR) system was operated under the organic loading rates (OLR) of 3.11-85.57 kg COD/m~3 reactor/d (COD: chemical oxygen demand) with molasses as the substrate. Both biogas and hydrogen yields increased with OLR at the range of 3.11-68.21kgCOD/m~3 d, but decreased at high OLR (68.21-85.57 kg COD/m~3reactor/d). The biogas was mainly composed of CO_2 and H_2 with the percentage of H_2 ranging from 40% to 52% in biogas. A maximum hydrogen production rate of 5.57m~3 H_2/m~3reactor/d, with a specific hydrogen production rate of 0.75m~3H_2/kgMLVSS/d, was obtained in the reactor. The hydrogen yield reached 26.13 mol/kg COD_(removed) within OLR range of 35-55 kg COD/m~3 reactor/d. In addition, it was found that the hydrogen yield was affected by the presence of ethanol and acetate in the liquid phase, and the maximum hydrogen production rate occurred while the ratio of ethanol to acetate was close to 1, due to the adjustment of NAD~+/(NADH + H~+) through fermentation pathways. Ethanol-type fermentation was favorable for hydrogen production.
机译:在连续流厌氧发酵反应器(可用容积为1.48 m〜3)中进行了200天以上的生物氢生产的中试研究。制氢生物反应器(HBR)系统以糖蜜为底物的有机负荷速率(OLR)为3.11-85.57 kg COD / m〜3反应器/ d(COD:化学需氧量)运行。 OLR在3.11-68.21kgCOD / m〜3 d范围内,沼气和氢气产量均增加,但在高OLR(68.21-85.57 kg COD / m〜3反应器/ d)范围内降低。沼气主要由CO_2和H_2组成,沼气中H_2的比例在40%〜52%之间。在反应器中获得最大氢气产生速率为5.57m〜3 H_2 / m〜3反应器/ d,比氢气产生率为0.75m〜3H_2 / kgMLVSS / d。在35-55kg COD / m〜3反应器/ d的OLR范围内,氢产率达到26.13 mol / kg COD_(去除)。此外,发现由于乙醇和乙酸盐在液相中的存在,氢产率受到影响,并且由于NAD〜的调节,当乙醇与乙酸盐的比例接近于1时,发生了最大的产氢速率。 + /(NADH + H〜+)通过发酵途径。乙醇型发酵有利于制氢。

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