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KEY FACTORS FOR BIOHYDROGEN PRODUCTION BY DARK FERMENTATION

机译:黑暗发酵生产氢的关键因素

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Among biological ways of hydrogen production, the dark fermentation process gives important prospects. One of the key factors of bioreactor operation is the biogas extraction. Thus, this work gives a parametric optimization of the bioreactor as a function of the sweep gas nature and flow rate. The bacterial inoculum was activated sludge of wastewater treatment plant, which was thermally treated to inhibit the activity of hydrogenotrophic and non-hydrogen producing micro-organisms. The fermentation was performed in a semi-batch bioreactor with a model substrate. Biogas was analyzed online by GC-TCD and metabolites (volatile fatty acids and alcohols) were analyzed by GC-FID. Kinetics parameters of hydrogen production were obtained by modelling. Increase the sweep gas (N-2) flow rate in the bioreactor results in an increase of hydrogen yield and cumulative production of 35%. In the purpose of recycling the CO2 produced by fermentation, the addition of CO2 to N-2 as sweep gas gives a yield improvement from 2.10mol(H2)/mol(hexose) with N-2 alone, to 2.37mol(H2)/mol(hexose) with a mixture of CO2:N-2 (75:25). In order to reduce the amount of suspended matter in initial biomass, filtration tests show an equivalent hydrogen yield but with a higher lag time than with unfiltered biomass (30h towards 4.4h). The presence of hydrogen producing bacteria mainly stick with the solid part of sludge was highlighted.
机译:在制氢的生物方法中,黑暗发酵过程具有重要的前景。生物反应器操作的关键因素之一是沼气的提取。因此,这项工作根据吹扫气体的性质和流速对生物反应器进行了参数优化。细菌接种物是废水处理厂的活性污泥,需对其进行热处理以抑制氢营养性和非氢产生微生物的活性。发酵在具有模型底物的半间歇式生物反应器中进行。通过GC-TCD在线分析沼气,并通过GC-FID分析代谢产物(挥发性脂肪酸和醇)。通过建模获得制氢的动力学参数。增加生物反应器中吹扫气体(N-2)的流量会导致氢气产量的增加和35%的累计产量。为了循环利用发酵产生的二氧化碳,将二氧化碳添加到N-2中作为吹扫气可使单N2的收率从2.10mol(H2)/ mol(己糖)提高到2.37mol(H2)/摩尔(己糖)与CO2:N-2(75:25)的混合物。为了减少初始生物质中的悬浮物数量,过滤测试显示了相同的氢气产量,但滞后时间比未过滤的生物质高(30h至4.4h)。强调了产氢细菌的存在主要是粘附在污泥的固体部分。

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