生命周期评估
范围(计算机科学)
环境科学
温室气体
碳循环
碳捕获和储存(时间表)
生物量(生态学)
比例(比率)
碳纤维
减缓气候变化
环境经济学
气候变化
计算机科学
环境资源管理
生产(经济)
生态学
地理
生态系统
宏观经济学
复合数
经济
程序设计语言
生物
地图学
算法
作者
Tom Terlouw,Karin Treyer,Christian Bauer,Marco Mazzotti
出处
期刊:
日期:2021-03-31
被引量:4
标识
DOI:10.26434/chemrxiv.14346182.v1
摘要
Prospective energy scenarios usually rely on Carbon Dioxide Removal (CDR) technologies to achieve the climate goals of the Paris Agreement. CDR technologies aim at removing CO2 from the atmosphere in a permanent way. However, the implementation of CDR technologies typically comes along with unintended environmental side-effects such as land transformation or water consumption. These need to be quantified before large-scale implementation of any CDR option by means of Life Cycle Assessment (LCA). Direct Air Carbon Capture and Storage (DACCS) is considered to be among the CDR technologies closest to large-scale implementation, since first pilot and demonstration units have been installed and interactions with the environment are less complex than for biomass related CDR options. However, only very few LCA studies - with limited scope - have been conducted so far to determine the overall life-cycle environmental performance of DACCS. We provide a comprehensive LCA of different low temperature DACCS configurations - pertaining to solid sorbent-based technology - including a global and prospective analysis.
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