再生可能エネルギー駆動のヒートポンプと熱・電気エネルギー貯蔵の統合による建物暖房の脱炭素化
Renewable energy-driven heat pumps integrated with synergistic thermal-electrical energy storage for decarbonizing building heating (原題)
Ruxue Du, Han Han, Gege Yin, Siqi Wang, Chuan Zhang, Tingxian Li
🤖 gxceed AI 要約
日本語
本論文は、建物暖房の脱炭素化に向けた再生可能エネルギー駆動のヒートポンプと熱・電気エネルギー貯蔵の統合システムを提案する。技術経済モデルを用いて、熱貯蔵と電気貯蔵の相乗効果がエネルギー効率とCO2削減に優れることを示し、太陽光熱ハイブリッドとヒートポンプを組み合わせた次世代暖房システムの構成を提示する。
English
This Perspective proposes a next-generation building heating system integrating renewable energy-driven heat pumps with synergistic thermal and electrical energy storage. Techno-economic modeling reveals the superiority of combined TES-EES over single storage, identifying optimal configurations for maximum efficiency and carbon reduction, offering a sustainable pathway for global building decarbonization.
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
日本の建物部門は温室効果ガス排出の約3割を占め、脱炭素化が急務。本提案はZEHや省エネ基準の強化、再生可能エネルギー導入拡大に資する技術的根拠を提供し、SSBJ開示におけるScope 1・2削減対策の具体策としても有用。
In the global GX context
Buildings account for a significant share of global emissions, and this paper offers a techno-economic framework for integrating heat pumps with storage, aligning with global net-zero targets and ISSB/CSRD disclosure requirements for credible transition plans.
👥 読者別の含意
🔬研究者:Provides a techno-economic model for optimizing TES-EES configurations in renewable heating systems, useful for further research on system integration.
🏢実務担当者:Offers insights for designing efficient building heating systems that reduce operational costs and carbon footprint, relevant for corporate sustainability strategies.
🏛政策担当者:Highlights the potential of synergistic storage to enhance renewable heating adoption, informing policy on building decarbonization and energy storage incentives.
📄 Abstract(原文)
Abstract Buildings contribute 37% of carbon emissions and 32% of energy consumption worldwide, particularly building heating accounts for almost half of energy consumption, underscoring the critical role of decarbonizing building heating systems. The transition from fossil fuel to renewable energy is a critical route to achieve carbon neutrality of building heating. This Perspective centers around the technological roadmaps of building heating towards carbon neutrality and analyzes how to promote building heating to a more sustainable and efficient future. We develop techno-economic models of renewable energy-based building heating with energy storage, and reveal the superiority of synergistic energy storage between thermal energy storage (TES) and electrical energy storage (EES). We further identify the specific configurations of TES and EES and propose a next-generation building heating system by integrating solar photovoltaic-thermal technologies, heat pump and synergistic TES-EES aiming to realize maximum energy efficiency and carbon emission reduction. Finally, we analyze the challenges and strategies for developing next-generation building heating system. This Perspective provides a sustainable pathway toward carbon neutrality for global building decarbonization.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.1007/s43979-026-00181-yfirst seen 2026-08-20 04:50:24
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