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Assessment of the biochemical methane potential of mono- and co-digested dairy farm wastes

机译:评估单一和共同消化的奶牛场废物的生化甲烷潜力

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This study aimed to evaluate the methane potential of mono- and co-digested dairy farm wastes. The tested substrates included manure from lactating, dry, and young cows, as well as waste milk and feed waste. The highest methane yield was achieved from the lactating cow manure, which produced an average of 412 L of CH4 kg(-1) volatile solids, followed by young and dry cow manures (332 and 273 L of CH4 kg(-1) volatile solids, respectively). Feed and milk yielded an average of 325 and 212 L of CH4 kg(-1) volatile solids, respectively. Co-digesting the manures from lactating and young cows with feed improved methane production by 7%. However, co-digesting the dry cow manure with feed achieved only 85% of the calculated methane yield. Co-digesting manure and milk at a ratio of 70:30 enhanced the methane potential from lactating, dry, and young cow manures by 19, 30, and 37%, respectively. Moreover, co-digesting lactating, dry, and young cow manures with milk at a ratio of 30:70 enhanced the methane yield by 60, 30, and 88%, respectively. The cumulative methane production of all samples was accurately described using the Gompertz model with a maximum error of 10%. Carbohydrates contributed the most to methane potential, while proteins and lipids were limiting.
机译:这项研究旨在评估单一和共同消化的奶牛场废物的甲烷潜力。测试的底物包括泌乳,干燥和幼小母牛的粪肥,以及废牛奶和饲料废物。泌乳奶牛粪便甲烷产量最高,平均产生412升CH4 kg(-1)挥发性固体,其次是干奶牛幼乳(332和273 L甲烷CH4 kg(-1)挥发性固体) , 分别)。饲料和牛奶分别平均产生325和212 L CH4 kg(-1)挥发性固体。与饲料一起共同消化泌乳和成年母牛的粪便,可使甲烷产量提高7%。但是,将干牛粪与饲料共同消化只能达到计算出的甲烷产量的85%。共同消化的粪肥和牛奶的比例为70:30,可使泌乳,干燥和幼母牛的甲烷潜力分别提高19%,30%和37%。此外,以30:70的比例共同消化泌乳,干燥和年轻的牛粪肥,甲烷的产率分别提高了60%,30%和88%。使用Gompertz模型准确描述了所有样品的累积甲烷产量,最大误差为10%。碳水化合物对甲烷潜力的贡献最大,而蛋白质和脂质则有限。

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