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Electrochemical energy technologies: Current progress and future opportunities for sustainable energy transitions

電気化学エネルギー技術:持続可能なエネルギー転換のための現在の進歩と将来の機会 (AI 翻訳)

Ignacio Aguilar, Andrew Carkner, Niranjan R, Alaleh Esfandiari, Xin Liu, Summia Saed Aldien, Sai Phani Kumar Vangala, Ali Seifitokaldani

Renewable and Sustainable Energy Reviews📚 査読済 / ジャーナル2026-07-23#エネルギー転換Origin: Global経営インパクト: コスト削減対象セクター: chemicals
DOI: 10.1016/j.rser.2026.117313
原典: https://doi.org/10.1016/j.rser.2026.117313
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🤖 gxceed AI 要約

日本語

本総説は、再生可能エネルギー由来の電気を用いた電気化学変換技術(グリーン水素製造、バイオマスアップグレーディング、CO2還元)を統合し、循環型カーボンニュートラルなエネルギーネットワーク構築の可能性を論じる。さらに、AIによる触媒発見や反応機構解明の加速が技術普及を後押しするとし、社会経済的展望も考察する。

English

This review discusses electrochemical conversion technologies powered by renewable electricity, including green hydrogen production, biomass upgrading, and CO2 reduction, within circular carbon-neutral networks. It highlights AI's role in accelerating catalyst discovery and process optimization, and addresses socioeconomic prospects for widespread adoption, offering a roadmap for scalable and sustainable energy transitions.

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

日本のGX政策(水素基本戦略、カーボンリサイクル)と親和性が高く、電気化学技術の産業化やAI活用は国内の研究開発・投資判断に示唆を与える。

In the global GX context

This review aligns with global net-zero targets and the growing focus on green hydrogen and CO2 utilization, offering a comprehensive overview of electrochemical technologies and AI integration that can inform international R&D strategies and policy frameworks.

👥 読者別の含意

🔬研究者:Provides a comprehensive overview of electrochemical technologies and AI integration, useful for identifying research gaps and future directions.

🏢実務担当者:Highlights opportunities for integrating electrochemical processes in industrial decarbonization, potentially informing investment in green hydrogen and CO2 utilization.

🏛政策担当者:Offers insights into the socioeconomic prospects and barriers of electrochemical technologies, relevant for designing supportive policies for energy transition.

📄 Abstract(原文)

Transitioning from fossil fuel–based systems to renewable energy is central to achieving global net-zero and sustainability goals. Yet, the large-scale deployment of renewable energy technologies—such as solar, wind, and biomass, requires not only clean power generation but also sustainable approaches to energy storage, conversion, and utilization. This review discusses the pivotal role of electrochemical conversion technologies in this transition, focusing on renewable electricity–driven processes for green hydrogen production, biomass upgrading to platform chemicals, and carbon dioxide reduction to value-added products under mild conditions. We emphasize how integrating these electrochemical systems within circular, carbon-neutral energy networks can bridge the gap between renewable generation and industrial-scale chemical production. Furthermore, we examine the existing barriers and emerging opportunities for the widespread adoption of these technologies. In addition, we provided a unique perspective on the socioeconomic prospects associated with these technologies for their incorporation and diffusion to revert the negative impacts of current energy technologies rather than limiting towards scientific aspects of these technologies alone covered by the conventional review articles. The article also explores the potential of artificial intelligence (AI) in accelerating catalyst discovery, automating reaction mechanism exploration, and optimizing device fabrication. Collectively, this work outlines a roadmap toward scalable, intelligent, and sustainable electrochemical technologies that can drive the global transition to a net-zero energy future.

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gxceed は公開メタデータに基づく研究支援データセットです。要約・翻訳・解説は AI 支援で生成されています。 最終的な解釈・検証は利用者が原典資料に基づいて行うことを前提とします。