Badgett Alex, Feise Alison, Star Andrew
Strategic Energy Analysis Center, National Renewable Energy Laboratory, 15013 Denver West Parkway, Golden, CO 80401, USA.
Department of Chemistry, University of Toronto, Toronto, ON M5S 3J6, Canada.
iScience. 2022 Apr 18;25(5):104270. doi: 10.1016/j.isci.2022.104270. eCollection 2022 May 20.
The electrochemical reduction of carbon dioxide is a potential pathway for production of fuels and chemicals that uses atmospheric carbon dioxide as a feedstock. Here, we present an analysis of the potential for carbon dioxide from point sources and via direct air capture to be utilized in electrochemical reduction under different market scenarios. We show that developing a network for production of these products at scale requires capture and utilization of significant portions of the carbon dioxide that is currently emitted from large stationary point sources. Because carbon dioxide point sources are spatially and compositionally variable, their use for carbon dioxide reduction depends on electricity prices, capture cost, and location. If the power sector in the United States is decarbonized, carbon dioxide supply decreases significantly, increasing the importance of utilizing other carbon dioxide streams, and increasing the likelihood that direct air capture plays a role in supplying carbon dioxide feedstocks.
二氧化碳的电化学还原是一种利用大气中的二氧化碳作为原料生产燃料和化学品的潜在途径。在此,我们分析了在不同市场情景下,点源排放的二氧化碳以及通过直接空气捕获获得的二氧化碳用于电化学还原的潜力。我们表明,要大规模开发这些产品的生产网络,需要捕获和利用目前从大型固定点源排放的大部分二氧化碳。由于二氧化碳点源在空间和成分上存在差异,其用于二氧化碳还原取决于电价、捕获成本和位置。如果美国的电力部门实现脱碳,二氧化碳供应将大幅减少,这将增加利用其他二氧化碳流的重要性,并增加直接空气捕获在供应二氧化碳原料方面发挥作用的可能性。