Reshape Resilient Geothermal–Green Hydrogen Islands for Carbon Neutral Future
炭素中立の未来のためのレジリエントな地熱-グリーン水素アイランドの再構築 (AI 翻訳)
Zhengguang Liu, Yitong Shang, Jing‐Chun Feng, Haitao Zhang
🤖 gxceed AI 要約
日本語
この展望論文は、地熱とグリーン水素を組み合わせたレジリエントなエネルギーアイランドのフレームワークを提案する。デジタルセンシングや適応制御により、運用レジリエンスを測定・制御可能な動的特性として概念化。グリーン水素が短期的な電力安定と長期的なエネルギーバランスを橋渡しする役割を強調し、土地制約や技術経済的考慮も統合。島嶼国や小地域のカーボンニュートラル移行に貢献しうる。
English
This perspective proposes a geothermal-green hydrogen framework for resilient energy islands, conceptualizing operational resilience as a measurable, controllable dynamic property enabled by digital sensing and adaptive control. Green hydrogen bridges short-term electrical stability with long-term energy balance. Land limitation and techno-economic considerations are integrated. The framework supports carbon-neutral transitions in island states and small regions.
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
日本は多くの離島を有し、再生可能エネルギーと水素の活用が進む。本フレームワークは、日本の島嶼部における自立分散型エネルギーシステムとSSBJの情報開示におけるレジリエンス評価の参考となり得る。
In the global GX context
Island states and small regions face unique energy resilience challenges. This framework offers a conceptual model integrating hydrogen and geothermal with digital control, relevant to global discussions on climate adaptation and energy transition, including TCFD/ISSB resilience disclosure.
👥 読者別の含意
🔬研究者:This paper provides a conceptual framework combining resilience theory with geothermal-hydrogen systems, useful for researchers studying island energy transitions.
🏛政策担当者:Policymakers in island nations can consider this framework for long-term energy planning and climate adaptation strategies.
📄 Abstract(原文)
Resilience is emerging as the defining metric for sustainable energy infrastructures in an era of climatic extremes and geopolitical uncertainty. This perspective proposed a geothermal–green hydrogen framework as the foundation for developing resilient energy islands. Beyond the conventional electrical paradigm, we conceptualized operational resilience as a measurable, controllable, and recoverable dynamic property, enabled by digital sensing, adaptive control, and feedback loops. In this framework, green hydrogen plays a pivotal role as a chemical mediator, bridging short term electrical stability with long term energy balance and climatic adaptation. Furthermore, this paper introduced the land limitation, which explains how spatial constraints, human activities, and environmental variability co-shape the resilience of island energy systems. Techno-economic considerations are further integrated to assess how resilience benefits relate to cost, efficiency, land-use requirements, and practical deployment constraints. This framework can support carbon neutral energy transitions in island states and small regions by improving energy resilience, land efficiency, and long-term flexibility under increasing renewable variability and climate crisis.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.1016/j.adapen.2026.100287first seen 2026-06-29 05:43:37 · last seen 2026-06-29 05:43:42
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