The prospect of direct air capture for energy security and climate stability

IF 2.5 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Frontiers in chemical engineering Pub Date : 2023-04-11 DOI:10.3389/fceng.2023.1140953
S. Shayegh
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Abstract

Energy policies aim at securing energy supply through domestic production or imports have significant consequences for climate change and its long-term impacts on the economy. Recent European energy crisis as a result of extensive reliance on imported Russian natural gas has highlighted the European Union (EU) energy vulnerability and has challenged its climate change commitments. While switching to alternative domestic fossil fuel sources such as coal in some member states has put the EU climate ambitions in jeopardy, it has also provided new opportunities for up-scaling renewable technologies as well as climate stability measures such as direct air capture (DAC). This paper examines the interaction between energy policy and climate stability by considering imported natural gas, domestic coal production, and possible DAC deployment in the EU under two scenarios of full cooperation and full competition among the EU member states. The results suggest that while cooperation induces higher reliance on imported energy, it also provides a strong incentive for DAC uptake. Competition on the other hand, may result in more reliance on domestic coal production and worse climate change outcomes despite the availability of DAC. Therefore, as the EU is striving for a more perfect union, it should consider better alignment of its short-term energy security policies with long-term climate stability ambitions.
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直接空气捕获在能源安全和气候稳定方面的前景
旨在通过国内生产或进口确保能源供应的能源政策对气候变化及其对经济的长期影响具有重大影响。由于广泛依赖进口俄罗斯天然气,最近的欧洲能源危机凸显了欧盟(EU)的能源脆弱性,并对其气候变化承诺提出了挑战。虽然一些成员国转向国内可替代的化石燃料(如煤炭)使欧盟的气候目标岌岌可危,但它也为扩大可再生技术的规模以及直接空气捕获(DAC)等气候稳定措施提供了新的机会。本文通过考虑欧盟成员国之间充分合作和充分竞争两种情况下的进口天然气、国内煤炭生产和可能的DAC部署,研究了能源政策与气候稳定性之间的相互作用。结果表明,虽然合作导致对进口能源的更高依赖,但它也为DAC的吸收提供了强大的激励。另一方面,竞争可能导致对国内煤炭生产的更多依赖,并导致更糟糕的气候变化结果,尽管有DAC。因此,在欧盟努力打造一个更完美的联盟之际,它应该考虑将其短期能源安全政策与长期气候稳定目标更好地结合起来。
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来源期刊
CiteScore
3.50
自引率
0.00%
发文量
0
审稿时长
13 weeks
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