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A Comprehensive Model for Evaluation of Carbon Footprint and Greenhouse Gages Emission in Household Biogas Plants

机译:碳足迹评估碳足迹和温室气体排放综合模型

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Based on Life Cycle Assessment and other related methods, this paper introduced a comprehensive model for the evaluation of the carbon footprint and greenhouse gases emission in household biogas plants including nearly all the processes of the household biogas project, such as the collection of raw materials, fermentation processing, and fermentation residue processing and so on. The carbon footprint and greenhouse gas emission from three classical household biogas plants in China were analyzed. Considering the greenhouse gases emissions in life cycle of household biogas plants, the main emission processes were investigated to be the utilization of biogas, such as biogas combustion use and transportation of materials which both accounting for more than 98%. The greenhouse gases emissions in the stages of methane leakage and construction materials production were only estimated to be 1.1% and 0.5%, respectively. As comparing to the meandering fabric digester and the precast reinforced concrete panels fabricated digester, the in-situ concrete cylindrical water pressure digester showed the lowest carbon footprint and accordingly most potential for the reduction of greenhouse gases emission.  It tried to analyze three household biogas plants' carbon footprint and greenhouse gas emission during the stages. It can provide the basis for optimization low-carbon proposal and the analysis and built up a simple carbon footprint calculation model. About household digesters life cycle greenhouse gas emissions, the main emission process are  biogas utilization period and transport phase , accounting for more than 98.38 percent , followed by methane leak stage and building materials production stage, about 1.11%  and 0.51% .Compared to meandering fabric type digesters and precast reinforced concrete panels fabricated digesters, in-situ concrete cylinder shaped hydraulic digester's carbon footprint is minimum so greenhouse gas emis- ion reduction potential is great.
机译:基于生命周期评估和其他相关方法,本文介绍了家庭沼气厂碳足迹和温室气体排放的综合模型,包括几乎所有家庭沼气项目的过程,如原料的收集,发酵加工,以及发酵残留加工等。分析了中国三种古典沼气厂的碳足迹和温室气体排放。考虑到家庭沼气植物生命周期中的温室气体排放,主要排放过程是沼气的利用,如沼气燃烧使用和运输材料,占98%以上。甲烷泄漏和建筑材料生产阶段的温室气体排放量估计分别为1.1%和0.5%。与曲折织物蒸煮器相比,原位混凝土圆柱形水压消化器的原位混凝土圆柱形水压蒸煮器显示出最低的碳足迹,因此大多数潜力降低温室气体排放。它试图在阶段分析三种家用沼气植物碳足迹和温室气体排放。它可以为优化低碳提案和分析提供基础,并建立了简单的碳足迹计算模型。关于家庭消化器生命周期温室气体排放,主要排放过程是沼气利用期和运输阶段,占98.38%以上,其次是甲烷泄漏阶段和建筑材料生产阶段,约为1.11%和0.51%。对蜿蜒织物的计量约为1.11%和0.51%型消化器和预制钢筋混凝土板制造的消化器,原位混凝土圆柱形液压蒸煮碳足占地面积最小,因此温室气体揭示潜力很大。

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