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Start-up phase optimization of two-phase anaerobic digestion of food waste: Effects of organic loading rate and hydraulic retention time

机译:食品废物两相厌氧消化的启动相优化:有机加载速率和液压保留时间的影响

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摘要

The effects of organic loading rate (OLR) and hydraulic retention time (HRT) on the dynamics of acidogenic and methanogenic processes in two-phase anaerobic digestion (TPAD) of food waste (FW) were investigated to determine the start-up operational conditions. Seven arrangements of TPAD systems under mesophilic conditions were evaluated, each containing one acidogenic reactor and one methanogenic reactor. The work analyzed two HRTs (2 and 3 days) and four OLRs (2, 3, 4 and 5 kgVS.m~(-3)·d~(-1)). The 2D5KG system obtained VS and COD removal of 68% and 72%; SMP of 273 L_(methane).kg.VS~(-1). The 3D4KG system obtained VS and COD removal of 70 and 66%; SMP of 252 L_(methane).kg.VS~(-1). Valeric acid predominated in the acidogenic reactor in both HRT and OLR evaluated, followed by butyric acid. In the methanogenic reactor, the main methane production route was the butyric acid conversion into acetic acid and finally methane. Higher OLR benefits the methane production. The microbiological profile indicated the pathway of methanogenesis by acetoclastic methanogenesis. The canonical correlation analysis allowed to verify that the groups are independent and, therefore, the variables analyzed in the acidogenic reactor have an influence on the methanogenic reactor.
机译:研究了有机加载速率(OLR)和液压保留时间(HRT)对食物废物(FW)两相厌氧消化(TPAD)的逐染生和甲状腺过程动态的影响,以确定启动操作条件。评估脂肪酸条件下TPAD系统的七种布置,各自含有一种酸性反应器和一种甲肉内反应器。该工作分析了两个HRT(2和3天)和四个OLRS(2,3,4和5 kgvs.m〜(-3)·d〜(-1))。 2D5KG系统获得VS和COD去除68%和72%; SMP为273 L_(甲烷).kg.vs〜(-1)。 3D4KG系统获得了70%和66%的VS和COD去除; SMP为252 L_(甲烷).kg.vs〜(-1)。在HRT和OLR的酸性反应器中占据在酸性反应器中的valeric酸,然后进行丁酸。在甲状腺反应器中,主要的甲烷生产途径是丁酸转化为乙酸和最终甲烷。更高的OLR有益于甲烷的生产。微生物分布表明乙酰型甲酸甲烷化途径。典型相关分析允许验证该组是独立的,因此,在酸性反应器中分析的变量对甲烷的反应器产生影响。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第15期|113064.1-113064.11|共11页
  • 作者单位

    Federal University of Santa Catarina Department of Sanitary and Environmental Engineering Federal University of Santa Camrina (UFSC) Street Delfino Conte Campus Reitor Joao David Ferreira Lima Technological Center. Trindade Flonanopolis Santa Catarina State Cep 88040 970 Brazil;

    Federal University of Pelotas Post-graduation Program in Environmental Sciences. Laboratory of Energy and Environmental Engineering LEAE Pelotas Rio Grande do Sul State Brazil;

    Federal University of Santa Catarina Department of Sanitary and Environmental Engineering Federal University of Santa Camrina (UFSC) Street Delfino Conte Campus Reitor Joao David Ferreira Lima Technological Center. Trindade Flonanopolis Santa Catarina State Cep 88040 970 Brazil;

    Federal University of Santa Catarina Department of Sanitary and Environmental Engineering Federal University of Santa Camrina (UFSC) Street Delfino Conte Campus Reitor Joao David Ferreira Lima Technological Center. Trindade Flonanopolis Santa Catarina State Cep 88040 970 Brazil;

    National Institute of Applied Sciences of Lyon University of Lyon DEEP Sadi Carnot Building. 20 Avenue A. Einstein 69621 Villeurbanne Cedex France;

    Federal University of Santa Catarina Department of Sanitary and Environmental Engineering Federal University of Santa Camrina (UFSC) Street Delfino Conte Campus Reitor Joao David Ferreira Lima Technological Center. Trindade Flonanopolis Santa Catarina State Cep 88040 970 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

    Two-phase anaerobic digestion; Food waste; VFA; Methane;

    机译:两相厌氧消化;食物垃圾;VFA;甲烷;

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