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首页> 外文期刊>International journal of hydrogen energy >Hydrogen gas production from waste paper by dark fermentation: Effects of initial substrate and biomass concentrations
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Hydrogen gas production from waste paper by dark fermentation: Effects of initial substrate and biomass concentrations

机译:通过暗发酵从废纸生产氢气:初始底物和生物质浓度的影响

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In this study, waste paper was used as the raw material for hydrogen gas production by dark fermentation at different initial substrate and cell concentrations. Glucose obtained from acid hydrolyzed waste paper was used at six different concentrations between 3.84 and 45.5 gl.(-1) to determine the effects of sugar concentration on bio-hydrogen production. The highest cumulative hydrogen gas was obtained at 18.9 gL(-1) initial sugar concentration. Sugar concentrations above 18.9 gL(-1) resulted in product inhibition. Similarly, the initial biomass concentration was varied between 0.25 and 2 gL(-1) while sugar concentration was kept constant at 18.58 +/- 2.45 gL(-1) to determine the effects of initial biomass concentration. The highest cumulative hydrogen gas production was obtained with the initial biomass concentration of 0.5 gL(-1). The highest hydrogen yield (140 ml H-2 ri total sugar) was observed at 3.84 gL(-1) total sugar concentration. Hydrogen yield decreased with increasing initial sugar concentration due to inhibition by volatile fatty acids (VFAs) produced by dark fermentation and furan derivatives produced from acid hydrolysis of waste paper. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,废纸被用作通过黑暗发酵在不同的初始底物和细胞浓度下生产氢气的原料。使用酸水解废纸获得的葡萄糖以3.84和45.5 gl。(-1)之间的六个不同浓度使用,以确定糖浓度对生物制氢的影响。在18.9 gL(-1)的初始糖浓度下获得了最高的累积氢气。糖浓度高于18.9 gL(-1)会导致产品抑制。同样,初始生物质浓度在0.25和2 gL(​​-1)之间变化,而糖浓度保持恒定在18.58 +/- 2.45 gL(-1),以确定初始生物质浓度的影响。在初始生物量浓度为0.5 gL(-1)的情况下,可获得最高的累计氢气产量。在3.84 gL(-1)总糖浓度下观察到最高的氢产量(140 ml H-2 ri总糖)。氢产量随着初始糖浓度的增加而降低,这归因于深色发酵产生的挥发性脂肪酸(VFA)和废纸酸水解产生的呋喃衍生物的抑制作用。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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