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Influence of Organic Load on Biohydrogen Production in an AnSBBR Treating Glucose-Based Wastewater

机译:AnSBBR处理葡萄糖基废水中有机负荷对生物产氢的影响

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An anaerobic sequencing batch reactor with immobilized biomass (AnSBBR) was applied to the production of biohydrogen treating a glucose-based wastewater. The influence of the applied volumetric organic load was studied by varying the concentration of influent at 3600 and 5250 mg chemical oxygen demand (COD) L-1 and cycle lengths of 4, 3, and 2 h resulting in volumetric organic loads of 10.5 to 31.1 g COD L-1. The results revealed system stability in the production of biohydrogen and substrate consumption. The best performance was an organic removal (COD) of 24 % and carbohydrate removal (glucose) of 99 %. Volumetric and specific molar productivity were 60.9 mol H-2 m(-3) day(-1) and 5.8 mol H-2 kg SVT-1 day(-1) (biogas containing 40 % H-2 and no CH4) at 20.0 g COD L-1 day(-1) (5250 mg COD L-1 and 3 h). The yield between produced hydrogen and removed organic matter in terms of carbohydrates was 0.94 mol H-2 Mol GLU(-1) (biogas containing 52 % H-2 and no CH4) at 10.5 g COD L-1 day(-1) (3600 mg COD L-1 and 4 h), corresponding to 23 and 47 % of the theoretical values of the acetic and butyric acid metabolic routes, respectively. Metabolites present at significant amounts were ethanol, acetic acid, and butyric acid. The conditions with higher influent concentration and intermediate cycle length, and the condition with lower influent concentration and longer cycle showed the best results in terms of productivity and yield, respectively. This indicates that the best productivity tends to occur at higher organic loads, as this parameter involves the biogas production, and the best yield tends to occur at lower and/or intermediate organic loads, as this parameter also involves substrate consumption.
机译:具有固定化生物量的厌氧排序批处理反应器(AnSBBR)被用于生产处理基于葡萄糖的废水的生物氢。通过改变3600和5250 mg化学需氧量(COD)L-1的进水浓度以及4、3和2 h的循环长度来研究施加的体积有机负荷的影响,得出体积有机负荷为10.5至31.1 g COD L-1。结果表明,系统在生产生物氢和消耗底物方面具有稳定性。最佳性能是有机去除率(COD)为24%,碳水化合物去除率(葡萄糖)为99%。体积和比摩尔生产力为20.0时为60.9 mol H-2 m(-3)天(-1)和5.8 mol H-2 kg SVT-1天(-1)(沼气中含40%H-2而无CH4) g COD L-1天(-1)(5250 mg COD L-1和3小时)。在10.5 g COD L-1天(-1)时,以碳水化合物计,产生的氢与去除的有机物之间的产率为0.94 mol H-2 Mol GLU(-1)(含52%H-2而不含CH4的沼气)( 3600 mg COD L-1和4 h),分别相当于乙酸和丁酸代谢途径理论值的23%和47%。大量存在的代谢产物是乙醇,乙酸和丁酸。就进水浓度和中间周期长度而言,进水浓度较高的条件以及进水浓度较低和周期较长的条件在生产率和产量方面均表现出最佳效果。这表明最佳生产率倾向于在较高的有机负荷下发生,因为此参数涉及沼气的生产,而最佳产量倾向于在较低和/或中等有机负荷下发生,因为此参数还涉及底物消耗。

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