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Anaerobic mesophilic co-digestion of sewage sludge with glycerol: Enhanced biohydrogen production

机译:污水污泥与甘油的厌氧中温共消化:增强的生物氢生产

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摘要

Anaerobic mesophilic co-digestion of mixed sewage sludge from wastewater treatment plants, WWTP, with crude glycerol, the major byproduct of the biodiesel industry, has been examined using a two-phase digestion process in a semi-continuous CSTR at laboratory scale. The objective was to determine the operational conditions that enhanced biohydrogen and methane production and to evaluate the effect of the organic loading rate (OLR) applied to the process. It was concluded that the Hydraulic Retention Time HRT of the methanogenic stage did not have an important influence on the operational process of co-digestion of sewage sludge and glycerol in terms of efficiency of organic removal and biogas yield. Hence, the results obtained were 73-77% organic matter removal (as CODr) with 0.032 LH_2/gCODr and 0.16 LCH_4/gCODr when the system operated at OLRs in the range of 15.33-17.90 gCODs/L d with HRTs of 3 days in the acidogenic digester and 6, 8, and 10 days in the methanogenic digester. In terms of volatile solids, the results obtained were 92 -88% organic matter removal (as VSr) with 0.20 LH_2/gVSr and 1.27 LCH_4/gVSr when the system operated at OLRs in the range of 1.94-2.79 gVS/L d. However, the OLR had an important influence on the H_2 and CH_4 yields. Hence, the best operational condition was an OLR of 7.82 gCOD/L d, with removal of 93% CODr and hydrogen and methane yields of 0.026 LH_2/gCODr and 0.29 LCH_4/gCODr, respectively. In terms of volatile solids, the best operational condition was an OLR of 1.01 gVS/L d, with removal of 89% VSr and hydrogen and methane yields of 0.50 LH_2/gVSr and 1.48 LCH_4/ gVSr, respectively.
机译:废水处理厂污水处理厂(WWTP)中的混合污水污泥与粗甘油(生物柴油行业的主要副产品)的厌氧嗜温共消化已在实验室规模下在半连续CSTR中使用两相消化过程进行了研究。目的是确定可提高生物氢和甲烷产量的操作条件,并评估应用于该过程的有机负荷率(OLR)的影响。得出的结论是,就有机去除效率和沼气产量而言,产甲烷阶段的水力停留时间HRT对污水污泥和甘油共消化的操作过程没有重要影响。因此,当系统在ORT范围为15.33-17.90 gCODs / L d且HRT为3天的条件下运行时,在0.032 LH_2 / gCODr和0.16 LCH_4 / gCODr的条件下,获得的有机物去除率为73-77%(以CODr计)。产酸消化池,在产甲烷消化池中放置6、8和10天。就挥发性固体而言,当系统在1.94-2.79 gVS / L d的OLR下运行时,获得的结果为0.20 LH_2 / gVSr和1.27 LCH_4 / gVSr去除92 -88%的有机物。但是,OLR对H_2和CH_4的产量有重要影响。因此,最佳操作条件是7.82 gCOD / L d的OLR,去除93%CODr,氢和甲烷的产率分别为0.026 LH_2 / gCODr和0.29 LCH_4 / gCODr。就挥发性固体而言,最佳操作条件是OLR为1.01 gVS / L d,去除89%VSr,氢和甲烷的产率分别为0.50 LH_2 / gVSr和1.48 LCH_4 / gVSr。

著录项

  • 来源
    《International journal of hydrogen energy》 |2014年第6期|2481-2488|共8页
  • 作者

    M. Rivero; R. Solera; M. Perez;

  • 作者单位

    Department of Environmental Technologies, Faculty of Sea and Environmental Sciences, University of Cadiz, Avda. Republica Saharaui s, 11510 Puerto Real, Cadiz, Spain;

    Department of Environmental Technologies, Faculty of Sea and Environmental Sciences, University of Cadiz, Avda. Republica Saharaui s, 11510 Puerto Real, Cadiz, Spain;

    Department of Environmental Technologies, Faculty of Sea and Environmental Sciences, University of Cadiz, Avda. Republica Saharaui s, 11510 Puerto Real, Cadiz, Spain;

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

    Co-digestion; Glycerol; Sewage sludge; Two-phase process; Biohydrogen; Methane;

    机译:共消化;甘油;污水污泥;两阶段过程;生物氢甲烷;
  • 入库时间 2022-08-18 00:23:54

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