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Anaerobic co-digestion of commercial food waste and dairy manure: Characterizing biochemical parameters and synergistic effects

机译:商业食物垃圾和奶牛粪的厌氧消化:表征生化参数和协同效应

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摘要

Anaerobic digestion of commercial food waste is a promising alternative to landfilling commercial food waste. This study characterized 11 types of commercial food wastes and 12 co-digestion blends. Bio-methane potential, biodegradable fraction, and apparent first-order hydrolysis rate coefficients were reported based upon biochemical methane potential (BMP) assays. Food waste bio-methane potentials ranged from 165 to 496 mL CH_4/g VS. Substrates high in lipids or readily degradable carbohydrates showed the highest methane production. Average bio-methane potential observed for co-digested substrates was -5% to +20% that of the bio-methane potential of the individual substrates weighted by VS content. Apparent hydrolysis rate coefficients ranged from 0.19 d~(-1) to 0.65 d~(-1). Co-digested substrates showed an accelerated apparent hydrolysis rate relative to the weighted average of individual substrate rates. These results provide a database of key bio-digestion parameters to advance modeling and utilization of commercial food waste in anaerobic digestion.
机译:商业餐厨垃圾的厌氧消化是填埋商业餐厨垃圾的有前途的替代方法。这项研究对11种类型的商业食品垃圾和12种共消化混合物进行了表征。根据生物化学甲烷潜力(BMP)分析报告了生物甲烷潜力,生物可降解级分和表观一级水解速率系数。食物垃圾的生物甲烷势范围为165至496 mL CH_4 / gVS。高脂质或易于降解的碳水化合物的底物显示出最高的甲烷产量。对于共消化的底物,观察到的平均生物甲烷气势是各个基质的生物甲烷气势的5%至+ 20%(以VS含量加权)。表观水解速率系数为0.19 d〜(-1)至0.65 d〜(-1)。相对于各个底物速率的加权平均值,共同消化的底物显示出明显的表观水解速率。这些结果提供了关键生物消化参数的数据库,以促进厌氧消化中商业食物垃圾的建模和利用。

著录项

  • 来源
    《Waste Management》 |2016年第6期|286-294|共9页
  • 作者单位

    Golisano Institute for Sustainability, Rochester Institute of Technology, Rochester, NY 14623, United States;

    Departamento de Ingenieria Hidraulica y Ambiental, Pontificia Universidad Catolica de Chile, Av. Vicuna Mackenna 4860, 7820436 Santiago, Chile;

    Thomas H. Gosnell School of Life Sciences, Rochester Institute of Technology, Rochester, NY 14623, United States;

    Golisano Institute for Sustainability, Rochester Institute of Technology, Rochester, NY 14623, United States,New York State Pollution Prevention Institute, Rochester Institute of Technology, Rochester, NY 14623, United States;

    Golisano Institute for Sustainability, Rochester Institute of Technology, Rochester, NY 14623, United States;

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

    Biochemical methane potential (BMP); Anaerobic co-digestion (AcoD); Biowaste; Commercial food waste;

    机译:生化甲烷潜力(BMP);厌氧消化(AcoD);生物废物商业食物垃圾;

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