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Inventory analysis of carbon footprint on greenhouse gas emission of large-scale biogas plants

机译:大型沼气厂温室气体排放中碳足迹的库存分析

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Inventory analysis of greenhouse gas emission for large-scale biogas plants using carbon footprint method still needs to be improved. Based on the life cycle theory, the application of carbon footprint on four large-scale biogas plants was analyzed in this paper, which comprehensively considered project progresses of civil engineering construction, operation and comprehensive utilization of residues and slurry. Also the greenhouse gas emissions during the construction and waste removal stages were analyzed and estimated. The carbon footprint of those plants was analyzed in different types and scales. The results showed that the larger scale plant will produce relatively lower carbon footprint. The greenhouse gas emission of energy production, utilization during the period of anaerobic digestion accounted for more than 96% of the entire life cycle emission. The proportion of greenhouse gas emissions on equipment, demolition recycling and transportation phases was smaller, which was less than 1.5% and should be simplified in calculation. The greenhouse gas emission of building materials production can be ignored. Keywords: biogas plant, carbon footprint, life cycle, greenhouse gas, emission reduction DOI: 10.3965/j.ijabe.20160904.2076 Citation: Zhou Y G, Zhang Z X, Zhang Y X, Zhou J, Chen L, Yin X F, et al. Inventory analysis of carbon footprint on greenhouse gas emission of large-scale biogas plants. Int J Agric & Biol Eng, 2016; 9(4): 99-105.
机译:使用碳足迹法的大型沼气厂的温室气体排放清单分析仍需改进。本文基于生命周期理论,分析了碳足迹在四家大型沼气厂的应用,综合考虑了土木工程建设,运营和残渣,泥浆综合利用的项目进展。此外,还分析和估算了建筑和废物清除阶段的温室气体排放量。这些植物的碳足迹以不同类型和规模进行了分析。结果表明,规模较大的工厂将产生相对较低的碳足迹。厌氧消化期间能源生产,利用中的温室气体排放量占整个生命周期排放量的96%以上。设备,拆除回收和运输阶段的温室气体排放比例较小,不到1.5%,应简化计算。建材生产的温室气体排放量可以忽略不计。关键词:沼气厂,碳足迹,生命周期,温室气体,减排量DOI:10.3965 / j.ijabe.20160904.2076引用:周永刚,张中新,张永新,周洁,陈丽,尹新芳,等。大型沼气厂温室气体排放中碳足迹的清单分析。国际农业与生物工程杂志,2016; 9(4):99-105。

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