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Impact of total solids content on anaerobic co-digestion of pig manure and food waste: Insights into shifting of the methanogenic pathway

机译:总固体含量对猪粪和食物垃圾厌氧共消化的影响:甲基致型途径的移位洞察

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摘要

Dry anaerobic digestion (AD) has advantages over wet AD in treating high-solid organic wastes like livestock and food wastes, but an elevated total solids (TS) content would affect the AD performances. In this study, methane production of digesters co-digesting pig manure (PM) and food waste (FW) at different TS contents (R_1, TS 5%; R_2, TS 10%; R_3, TS 15%; and R_4, TS 20%) was assessed. The results showed the specific methane yield had no significant difference with the increase of TS contents from 5% to 15% (278.8-291.7 NmL/g VS_(added)), while it was reduced at a 20% TS content (259.8 NmL/g VS_(added)). Two peaks of total volatile fatty acids and daily methane production were observed in the high-solid digesters (R2-R4), while only one peak occurred in wet AD (R_1). A new kinetics model was developed to describe the two-peak methane production behavior at high TS contents. The analysis on the microbial community structure clearly showed the different evolutions of methanogenic pathways in low and high solids content systems. In dry AD (R_4), there was a general shifting from the acetoclastic pathway, to mixotrophic pathway and hydrogenotrophic pathway, with the dominance of mixotrophic and hydrogenotrophic methanogens.
机译:干燥的厌氧消化(AD)具有在处理牲畜和食物废物等高固体有机废物中的湿AAD的优势,但升高的总固体(TS)含量会影响广告表演。在这项研究中,甲烷产生沼气池共消化在不同的TS的内容(R_1,猪粪(PM)和食物垃圾(FW)TS 5%; R_2,TS 10%; R_3,TS 15%;和R_4,TS 20 %)被评估。结果表明,特定的甲烷产率与TS含量的增加没有显着差异,从5%到15%(278.8-291.7 nml / g vs_(加入)),而在20%TS含量下减少(259.8 NML / g vs_(已添加))。在高固体消化器(R2-R4)中观察到总挥发性脂肪酸和每日甲烷产生的两种峰,而湿AD(R_1)只发生一个峰。开发了一种新的动力学模型来描述高TS内容的两峰甲烷生产行为。微生物群落结构的分析清楚地表明了低固体含量系统中的甲烷途径的不同演变。在DRY AD(R_4)中,从乙酰鳞状途径,混合途径和氢养途径中存在一般转移,具有混合营养和促进脱氢甲烷的优势。

著录项

  • 来源
    《Waste Management》 |2020年第8期|96-106|共11页
  • 作者单位

    Civil Engineering College of Engineering & Informatics National University of Ireland Galway Ireland Ryan Institute National University of Ireland Galway Ireland MaREI Center for Marine and Renewable Energy National University of Ireland Galway Ireland;

    Civil Engineering College of Engineering & Informatics National University of Ireland Galway Ireland Ryan Institute National University of Ireland Galway Ireland MaREI Center for Marine and Renewable Energy National University of Ireland Galway Ireland;

    Civil Engineering College of Engineering & Informatics National University of Ireland Galway Ireland Ryan Institute National University of Ireland Galway Ireland MaREI Center for Marine and Renewable Energy National University of Ireland Galway Ireland;

    Civil Engineering College of Engineering & Informatics National University of Ireland Galway Ireland State Key Joint Laboratory of Environment Simulation and Pollution Control School of Environment Tsinghua University 100084 China;

    Civil Engineering College of Engineering & Informatics National University of Ireland Galway Ireland;

    Department of Municipal Engineering College of Civil Engineering Hefei University of Technology Hefei 230009 China;

    Institute of Environmental Engineering and Management Graduate School at Shenzhen Tsinghua University Shenzhen 518055 China;

    Civil Engineering College of Engineering & Informatics National University of Ireland Galway Ireland Ryan Institute National University of Ireland Galway Ireland MaREI Center for Marine and Renewable Energy National University of Ireland Galway Ireland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Acetoclastic methanogenesis; Dry anaerobic digestion; Hydrogenotrophic methanogenesis; Kinetic model; Microbial community structure; Mixotrophic methanogenesis;

    机译:乙酰型甲状腺发生;干燥厌氧消化;氢型型甲烷化;动力学模型;微生物群落结构;混纺型甲烷化;

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