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Municipal waste liquor treatment via bioelectrochemical and fermentation (H-2 + CH4) processes: Assessment of various technological sequences

机译:通过生物电化学和发酵(H-2 + CH4)工艺处理市政废液:评估各种技术流程

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摘要

In this paper, the anaerobic treatment of a high organic-strength wastewater-type feedstock, referred as the liquid fraction of pressed municipal solid waste (LPW) was studied for energy recovery and organic matter removal. The processes investigated were (i) dark fermentation to produce biohydrogen, (ii) anaerobic digestion for biogas formation and (iii) microbial fuel cells for electrical energy generation. To find a feasible alternative for LPW treatment (meeting the two-fold aims given above), various one- as well as multi-stage processes were tested. The applications were evaluated based on their (i) COD removal efficiencies and (ii) specific energy gain. As a result, considering the former aspect, the single-stage processes could be ranked as: microbial fuel cell (92.4%)> anaerobic digestion (50.2%)> hydrogen fermentation (8.8%). From the latter standpoint, an order of hydrogen fermentation (2277 J g(-1) CODremoved d(-1))> anaerobic digestion (205 J g(-1) CODremoved d(-1))> microbial fuel cell (0.43 J g(-1) CODremoved d(-1)) was attained. The assessment showed that combined, multi-step treatment was necessary to simultaneously achieve efficient organic matter removal and energy recovery from LPW. Therefore, a three-stage system (hydrogen fermentation-biomethanation-bioelectrochemical cell in sequence) was suggested. The different approaches were characterized via the estimation of COD balance, as well. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了一种高有机强度废水型原料的厌氧处理方法,该工艺称为压制城市固体废物(LPW)的液体部分,用于能量回收和有机物去除。所研究的过程是(i)黑暗发酵产生生物氢,(ii)厌氧消化以形成沼气,以及(iii)微生物燃料电池以产生电能。为了找到可行的LPW处理替代方案(达到上述两个目标),测试了各种一阶段以及多阶段的过程。根据应用程序的评估(i)COD去除效率和(ii)比能获取。结果,考虑到前一个方面,可以将单级过程排序为:微生物燃料电池(92.4%)>厌氧消化(50.2%)>氢发酵(8.8%)。从后一种观点出发,依次进行氢发酵(2277 J g(-1)COD去除d(-1))>厌氧消化(205 J g(-1)COD去除d(-1))>微生物燃料电池(0.43 J g(-1)去除了COD d(-1))。评估表明,必须同时进行多步处理,才能同时有效地去除LPW中的有机物并回收能量。因此,提出了三阶段系统(依次氢发酵-生物甲烷化-生物电化学池)。还通过估算COD平衡来表征不同的方法。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2017年第3期|692-701|共10页
  • 作者单位

    Univ Pannonia, Res Inst Bioengn Membrane Technol & Energet, Egyet Ut 10, H-8200 Veszprem, Hungary;

    Univ Pannonia, Res Inst Bioengn Membrane Technol & Energet, Egyet Ut 10, H-8200 Veszprem, Hungary;

    Univ Pannonia, Res Inst Bioengn Membrane Technol & Energet, Egyet Ut 10, H-8200 Veszprem, Hungary;

    Univ Pannonia, Res Inst Bioengn Membrane Technol & Energet, Egyet Ut 10, H-8200 Veszprem, Hungary;

    Escuela Super Politecn Chimborazo, Ctr Invest Energias Alternat & Ambiente, Chimborazo, Ecuador|Univ Szeged, Dept Biotechnol, Szeged, Hungary;

    Escuela Super Politecn Chimborazo, Ctr Invest Energias Alternat & Ambiente, Chimborazo, Ecuador;

    Escuela Super Politecn Chimborazo, Ctr Invest Energias Alternat & Ambiente, Chimborazo, Ecuador;

    Escuela Super Politecn Chimborazo, Ctr Invest Energias Alternat & Ambiente, Chimborazo, Ecuador|Univ Nacl Chimborazo, Inst Ciencia Innovac Tecnol & Saberes, Riobamba, Ecuador;

    Univ Pannonia, Inst Environm Engn, Egyet Ut 10, H-8200 Veszprem, Hungary;

    Univ Pannonia, Inst Environm Engn, Egyet Ut 10, H-8200 Veszprem, Hungary;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    OFMSW; Wastewater; Biohydrogen; Biogas; Microbial fuel cell; Multi-stage process;

    机译:OFMSW;废水;生物氢;沼气;微生物燃料电池;多阶段工艺;

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