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The effect of organic load and feed strategy on biohydrogen production in an AnSBBR treating glycerin-based wastewater

机译:AnSBBR处理甘油基废水中有机负荷和进料策略对生物制氢的影响

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摘要

An anaerobic sequencing batch biofilm reactor (AnSBBR) with recirculation of the liquid phase (at 30 ℃ with 3.5 L of working volume and treating 1.5 L per cycle) treating pure glycerin-based wastewater was applied to biohydrogen production. The applied volumetric organic load (AVOL) ranged from 7.7 to 17.1 kgCOD m~(-3) d~(-1), combining different influent concentrations (3000,4000 and 5000 mgCOD L~(-1)) and cycle lengths (4 and 3 h). The feed strategy used was to maintain the feeding time equal to half of the cycle time. The increase in the influent concentration and the decrease in cycle length improved the molar yield and molar productivity of hydrogen. The highest productivity (100.8 molH_2 m~(-3) d~(-1)) and highest yield of hydrogen per load removed (20.0 molH_2 kgCOD~(-1)) were reached when the reactor operated with an AVOL of 17.1 kgCOD m~(-3) d~(-1), with 68% of H_2 and only 3% of CH_4 in its biogas. It was also found that pretreatment of the sludge/inoculum does not influence the productivity/yield of the process and the use of crude industrial glycerin-based wastewater in relation to the pure glycerol-based wastewater substantially decreased the production and composition of the hydrogen produced.
机译:厌氧测序间歇式生物膜反应器(AnSBBR)采用液相再循环(在30℃,工作量为3.5 L,每个循环处理1.5 L)处理基于甘油的纯废水,用于生物制氢。结合不同进水浓度(3000,4000和5000 mgCOD L〜(-1))和循环长度(4),施加的有机体积负荷(AVOL)为7.7至17.1 kgCOD m〜(-3)d〜(-1)。和3小时)。所采用的进料策略是将进料时间保持为周期时间的一半。进水浓度的增加和循环长度的减少提高了氢气的摩尔产率和摩尔生产率。当反应器在AVOL为17.1 kgCOD m的条件下运行时,达到最高生产率(100.8 molH_2 m〜(-3)d〜(-1))和单位去除氢的最高收率(20.0 molH_2 kgCOD〜(-1))。 〜(-3)d〜(-1),其沼气中有68%的H_2和仅3%的CH_4。还发现污泥/接种物的预处理不影响该方法的生产率/产率,并且相对于纯甘油基废水,使用粗制工业甘油基废水大大降低了产生的氢气的产生和组成。

著录项

  • 来源
    《Journal of Environmental Management》 |2015年第1期|128-137|共10页
  • 作者单位

    Hydraulics and Sanitation Department, Sao Carlos School of Engineering, University of Sao Paulo (SHS/EESC/USP), Av. Trabalhador Sao-Carlense 400, CEP 13.566-590, Sao Carlos, SP, Brazil;

    Hydraulics and Sanitation Department, Sao Carlos School of Engineering, University of Sao Paulo (SHS/EESC/USP), Av. Trabalhador Sao-Carlense 400, CEP 13.566-590, Sao Carlos, SP, Brazil;

    Maua School of Engineering, Maua Institute of Technology (EEM/IMT), Praca Maua 1, CEP 09.580-900, Sao Caetano do Sul, SP, Brazil;

    Maua School of Engineering, Maua Institute of Technology (EEM/IMT), Praca Maua 1, CEP 09.580-900, Sao Caetano do Sul, SP, Brazil;

    Hydraulics and Sanitation Department, Sao Carlos School of Engineering, University of Sao Paulo (SHS/EESC/USP), Av. Trabalhador Sao-Carlense 400, CEP 13.566-590, Sao Carlos, SP, Brazil;

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

    AnSBBR; Biohydrogen; Glycerin; Volumetric organic load; Fed batch;

    机译:AnSBBR;生物氢甘油;体积有机负荷;美联储批次;

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