Golisano Institute for Sustainability, Rochester Institute of Technology, Rochester, NY 14623, United States.
Departamento de Ingeniería Hidráulica y Ambiental, Pontificia Universidad Católica de Chile, Av. Vicuña Mackenna 4860, 7820436 Santiago, Chile.
Waste Manag. 2016 Jun;52:286-94. doi: 10.1016/j.wasman.2016.03.046. Epub 2016 Apr 15.
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 CH4/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 0.19d(-1) to 0.65d(-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.
商业厨余的厌氧消化是一种很有前途的替代填埋商业厨余的方法。本研究对 11 种商业厨余和 12 种共消化混合物进行了特性分析。基于生物甲烷潜力(BMP)测定,报告了生物甲烷潜力、可生物降解部分和表观一级水解速率系数。厨余的生物甲烷潜力范围为 165 至 496 毫升 CH4/gVS。含脂量高或易降解碳水化合物的底物表现出最高的甲烷产量。共消化底物的平均生物甲烷潜力比按 VS 含量加权的个别底物的生物甲烷潜力高-5%至+20%。表观水解速率系数范围为 0.19d(-1) 至 0.65d(-1)。共消化的底物表现出比个别底物加权平均速率更快的表观水解速率。这些结果提供了关键生物消化参数的数据库,以推进商业厨余在厌氧消化中的建模和利用。