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High efficient biohydrogen production from palm oil mill effluent by two-stage dark fermentation and microbial electrolysis under thermophilic condition

机译:高温条件下两步暗发酵和微生物电解从棕榈油厂废水中高效生产生物氢

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Biohydrogen production from palm oil mill effluent by two-stage dark fermentation and microbial electrolysis was investigated under thermophilic condition. The optimum chemical oxygen demand (COD) concentration and pH for dark fermentation were 66 g.L-1 and 6.5 with a hydrogen yield of 73 mL-H-2.gCOD(-1). The dark fermentation effluent consisted of mainly acetate and butyrate. The optimum voltage for microbial electrolysis was 0.7 V with a hydrogen yield of 163 mL-H-2.gCOD(-1). The hydrogen yield of continuous two stage dark fermentation and microbial electrolysis was 236 mL-H-2.gCOD(-1) with a hydrogen production rate of 7.81 L.L-1.d(-1). The hydrogen yield was 3 times increased when compared with dark fermentation alone. Thermoanaerobacterium sp. was dominated in the dark fermentation stage while Geobacter sp. and Desulfovibrio sp. dominated in the microbial electrolysis cell stage. Two-stage dark fermentation and microbial electrolysis under thermophilic condition is a highly promising option to maximize the conversion of palm oil mill effluent into biohydrogen. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了在高温条件下通过两步黑暗发酵和微生物电解从棕榈油厂废水中生产生物氢的方法。黑暗发酵的最佳化学需氧量(COD)浓度和pH值为66 g.L-1和6.5,氢气产率为73 mL-H-2.gCOD(-1)。深色发酵废水主要由乙酸盐和丁酸盐组成。微生物电解的最佳电压为0.7 V,氢气产率为163 mL-H-2.gCOD(-1)。连续两阶段的暗发酵和微生物电解的氢气产量为236 mL-H-2.gCOD(-1),氢气产生率为7.81 L.L-1.d(-1)。与仅黑暗发酵相比,氢产率提高了3倍。嗜热厌氧菌在黑暗发酵阶段占主导地位,而Geobacter sp。和Desulfovibrio sp。在微生物电解池阶段占主导地位。在高温条件下进行两阶段的黑暗发酵和微生物电解是极有希望的选择,可以最大程度地将棕榈油厂的废水转化为生物氢。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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