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太陽熱利用炭素回収技術の包括的レビュー:新たなトレンドと研究進展の探求

A comprehensive review of solar-assisted carbon capture technologies: Exploration of emerging trends and research progress (原題)

Issah Salman, Felix Amankwah Diawuo, Benjamin Batinge

Energy Reports📚 査読済 / ジャーナル2026-08-18#CCUSOrigin: Global対象セクター: power
DOI: 10.1016/j.egyr.2026.109567
原典: https://doi.org/10.1016/j.egyr.2026.109567
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🤖 gxceed AI 要約

日本語

本レビューは、太陽エネルギーを利用した炭素回収技術(SACCおよびSPCC)の研究動向を、2005年から2025年までの126件の文献の計量書誌分析により体系的に調査した。気候条件や太陽熱コレクターのコストが経済的実現性に大きく影響し、大規模展開の障壁となっている。SACCは化石燃料ベースの回収に比べ地球温暖化係数が低くCO2削減効率が高いが、ライフサイクル評価では太陽熱設備製造の環境負荷が相殺する可能性がある。将来の研究は経済性比較と政策的支援に焦点を当てるべきである。

English

This systematic review examines trends and future directions in solar-assisted carbon capture (SACC) and solar-powered carbon capture (SPCC) via bibliometric analysis of 126 publications (2005-2025). Local climate and collector costs critically affect viability, hindering large-scale deployment. SACC offers lower GWP and higher CO2 abatement than fossil-based capture, but LCA shows environmental benefits may be offset by manufacturing impacts. Future research should focus on economic comparisons and policy support.

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、CCUSはカーボンニュートラル実現の重要技術と位置づけられ、政府も支援を強化している。本レビューは太陽熱利用CCUSの経済的課題を整理しており、日本のCCUS戦略や補助金政策の検討に示唆を与える。

In the global GX context

Globally, CCUS is recognized as essential for meeting net-zero targets, and solar-assisted approaches could reduce the energy penalty of capture. This review highlights cost and climate barriers, informing international research agendas and policy frameworks for CCUS deployment.

👥 読者別の含意

🔬研究者:Provides a structured overview of SACC/SPCC research trends and identifies research gaps in climate impact and economic analysis.

🏢実務担当者:Offers insights into the economic viability and environmental trade-offs of solar-assisted carbon capture for potential project development.

🏛政策担当者:Highlights the need for policy support to address cost barriers and promote system-wide assessment of CCUS technologies.

📄 Abstract(原文)

The growing concern over CO 2 emissions resulting from economic growth and population increase has led to a heightened interest in integrated solar energy carbon capture technologies. This systematic review examines trends, technological developments, and future directions in solar-assisted carbon capture (SACC), which combines solar energy with other power sources for carbon capture, and solar-powered carbon capture (SPCC), which depends entirely on solar energy. The review used bibliometric analysis of 126 Scopus-indexed publications from 2005 to 2025. The results show that local climate and solar collector costs have a major impact on the viability of SACC, making large-scale deployment difficult. China, Australia, and the USA lead in publishing research. While SPCC faces challenges such as land use issues and high levelized costs of electricity, SACC addresses these hurdles by integrating solar with other power sources. The review underscores the importance of optimizing collector sizes and solvent storage to enhance economic viability. Key barriers to the advancement of SACC include insufficient research on the impact of climate on solar collector efficiency and the economic measures necessary for cost reduction. SACC systems have much lower GWP and higher CO₂ abatement efficiency as compared to fossil-based capture techniques. Nevertheless, LCA studies show that the environmental benefits of SACC may be counterbalanced by factors such as the manufacturing of solar collectors and infrastructure development. Hence, it is necessary to consider SACC technologies within the system-wide approach. Future research could focus on the economic benefits and obstacles associated with SACC, compare it with alternative carbon capture technologies, and identify the technological and policy support needed for progression.

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