可再生能源
能量载体
碳足迹
氨生产
环境科学
天然气
温室气体
发电
氨
环境工程
煤
废物管理
生命周期评估
化学
生产(经济)
工程类
功率(物理)
物理
热力学
有机化学
生态学
宏观经济学
生物
电气工程
经济
作者
Runfan Zhu,Zhihua Wang,Yong He,Yanqun Zhu,Kefa Cen
摘要
This paper presents a comparative life cycle assessment of two types of H2 carriers, methanol and ammonia, using GaBi 10 software. Two types of H2 carriers that is, methanol and ammonia are compared from coal, natural gas and renewables, respectively. The full supply chain is considered in the carbon footprint evaluation, which contains production, storage, transportation, and utilization phase. The energy analysis results show that H2 carrier produced from natural gas has higher energy efficiency than that from renewables, which can be attributed to the high energy consumption during H2 generation in the latter. Carbon footprint evaluation indicates that solar PV-based ammonia production route has the lowest GWP in all scenarios, with a value of 43.9 g of CO2-Equation MJ−1 of ammonia. In addition, electricity has been found as the key factor affecting GHG emissions in the routes of fuels produced from renewable H2 through sensitivity analysis. By optimizing electricity generation and expanding the carbon capture scale of power plant, the GHG emissions level of CCU-based methanol production route and solar PV-based ammonia production route can be further reduced.
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