炭素回収技術:課題と将来の展望
Carbon Capture Technologies: Challenges and Future Prospects (原題)
Sobia Riaz, Muhammad Sohail, Haleema Sadia, Zia Ur Rehman Farooqi, Rash Ba Sahar, Umair Riaz, Saleem Ahmad Yatoo
🤖 gxceed AI 要約
日本語
本論文は、ネットゼロ達成に向けた炭素回収技術の重要性を概説し、燃焼前・燃焼後・酸素燃焼の各プロセスと、吸収、膜分離、化学変換などの方法を整理している。また、炭素隔離や植林の役割にも触れ、気候変動緩和への貢献可能性を示す。
English
This review outlines carbon capture technologies for achieving net-zero emissions, covering pre-combustion, post-combustion, and oxy-fuel processes, along with methods like solvent absorption, membrane separation, and CO2 conversion. It also discusses carbon sequestration and afforestation as mitigation options.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本では、CCSの社会実装が進められており、本稿は基礎的な理解を提供する。ただし、具体的な政策や技術開発の最新動向には触れておらず、読者は他の情報源と併用する必要がある。
In the global GX context
Globally, carbon capture is recognized as a key mitigation option, and this review provides a broad overview. However, it lacks specific policy or technological details relevant to current ISSB or transition finance discussions.
👥 読者別の含意
🔬研究者:Provides a concise overview of carbon capture technologies, useful for background reading.
🏢実務担当者:May help in understanding basic CCS options, but lacks actionable implementation guidance.
🏛政策担当者:Offers a general introduction to CCS, but no specific policy recommendations.
📄 Abstract(原文)
Many industries around the globe have acknowledged that achieving net zero greenhouse gas (GHGs) emissions demand a balance between emission and mitigation/removal of GHGs. There is an exponential rise in greenhouse gas emissions specifically carbon dioxide ( CO 2 ) due to the increased fossil fuels burning, industrialization, and other human activities. 80 There is a distinct proven record of constantly rising global average temperature. The climate-hastening activities resulting from energy sectors, domestic transport, and the industry sector, have drastically triggered global warming and ultimately intensified the atmospheric carbon levels. Hence, it is evident to the public, political leaders and policymakers that climate change is an empirical global threat that is needed to be addressed timely. It drives the intense need to adapt the existing as well as emerging technologies to capture/store/convert the CO 2 as it happens to be one of the major contributors to climate change. Carbon capture is, therefore, seen as a potential solution to reduce the emissions or levels of CO 2 in the atmosphere. Carbon capture can be mainly divided into three processes i.e., pre-combustion, post-combustion, and oxy-fuel combustion technologies, that capture the C at different production or industrial levels. These technologies include various methods such as absorption solvent-based methods, membrane separation, gas separation membranes, gas absorption membranes, and converting CO 2 into value-added chemicals. Carbon sequestration, afforestation and reforestation can play a significant role to ameliorate climate change.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.1201/9781779641496-4first seen 2026-08-24 04:54:23
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