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首页> 外文期刊>International journal of hydrogen energy >Pre-treatment study on two-stage biohydrogen and biomethane productions in a continuous co-digestion process from a mixture of swine manure and pineapple waste
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Pre-treatment study on two-stage biohydrogen and biomethane productions in a continuous co-digestion process from a mixture of swine manure and pineapple waste

机译:从猪粪和菠萝废物混合物中连续共消化过程中两级生物氢和生物甲烷制备的预处理研究

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This study involves continuous co-digestion of swine manure and pineapple waste mixture using two-stage anaerobic reactors and examines hydraulic retention time (HRT) and substrate heat pre-treatment. The maximum hydrogen and methane production rates of 1488.62 and 991.57 mL/L/d, respectively, reached optimal HRTs of 4.5 h in the hydrogen production fermenter (HPF) and 9 d in the methane production fermenter (MPF) using heat pre-treatment. Acetic acid is a dominant volatile fatty acid of the soluble metabolites with values 70%-73% under all the tested conditions and increased values under heat pretreatment and high HRT. Firmicutes and Euryarchaeota are the main bacteria species detected in HPF and MPF, respectively. The optimal total energy of 196.47 kJ/L/d and chemical oxygen demand (COD) removal efficiency of 90% were obtained by a complete anaerobic co-digestion process at a high substrate concentration of 105 g COD/L and low HRT of 4.5 h. This shows that the two-stage co-digestion process could increase the COD removal efficiency, hydrogen production rate, and net energy gains and produce high quality biogas and significantly reduce fermentation time.(c) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:该研究涉及使用两级厌氧反应器连续共消化猪粪和菠萝废料混合物,并检查液压保留时间(HRT)和底物热预处理。使用热预处理,分别在氢气生产发酵罐(HPF)和9d中,在甲烷生产发酵罐(MPF)中,最大氢气和甲烷生产率分别为1488.62和991.57ml / L / d的最佳HRT。乙酸是溶解代谢物的优势挥发性脂肪酸,其值在所有测试条件下具有70%-73%,并且在热预处理和高HRT下增加的值。 Fumporicutes和Euryarchaeota分别是在HPF和MPF中检测到的主要细菌物种。通过在高底物浓度为105g COD / L和4.5小时的低HRT的高底物浓度下,通过完全的厌氧共消化方法获得90%的最佳总能量和化学需氧量(COD)去除效率。 。这表明两级共消化过程可以提高COD去除效率,氢生产率和净能量增益,并产生高质量的沼气,并显着降低发酵时间。(c)2020氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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