Balancing energy, water, and ecology through renewable energy transitions in the Yellow River Basin
黄河流域における再生可能エネルギー転換によるエネルギー、水、生態系のバランス (AI 翻訳)
Chuandong Wu, Dawen Yang, Ximing Cai, Deliang Chen, Yuting Yang, Taihua Wang, Yu Zhang, Jianshi Zhao, Bojie Fu
🤖 gxceed AI 要約
日本語
黄河流域の水力・太陽光・風力・揚水発電統合ベース(HPWPベース)の導入可能性を評価。年間で石炭火力発電の23.8%を代替し、エネルギー関連排出を28%、電力部門の水消費を31.5%削減、生態系炭素貯蔵を9%回復できると定量化。確立された技術で実現可能であり、地域の持続可能な開発に貢献。
English
This study evaluates a Hydropower–Photovoltaic–Wind–Pump renewable energy base (HPWP-base) in the Yellow River Basin, China. It could replace 23.8% of coal-fired electricity, reduce energy-related emissions by 28%, water consumption by 31.5%, and restore ecosystem carbon storage by 9%. These synergistic outcomes show practicality using established technologies, offering a solution for regional electricity transformation and sustainable development.
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
日本の河川流域(例:利根川)における再エネ導入と水・生態系の両立に示唆を与える。特に水力・太陽光・風力の組み合わせと揚水発電による調整力確保の有効性を示す。
In the global GX context
This paper demonstrates a basin-wide approach to renewable energy transition that yields multiple co-benefits, aligning with SDGs and climate goals. It provides a model for integrated resource planning applicable to other large river basins worldwide.
👥 読者別の含意
🔬研究者:Provides empirical evidence on multi-sector synergies in renewable energy deployment, useful for integrated assessment modeling.
🏢実務担当者:Insights on planning integrated renewable energy bases to achieve water-saving and carbon reduction targets.
🏛政策担当者:Demonstrates a policy framework for basin-scale coordination across energy, water, and ecology sectors.
📄 Abstract(原文)
The transition to renewable energy for climate mitigation often involves trade-offs with regional priorities, owning to resource competition and potential ecological impacts. Addressing these challenges requires a holistic strategy. This study examines the potential of Hydropower–Photovoltaic–Wind–Pump renewable energy base (HPWP-base) in the Yellow River Basin in China—a region facing significant sustainability pressures, to balance energy, water, and ecology. Annually, the HPWP-base could replace 23.8% (249.4 tera watt hours) of coal-fired electricity generation. Such a basin-wide transition enables 28.0% reduction in energy-related emissions, 31.5% decline in electricity-sector water consumption, and 9.0% restoration of ecosystem carbon storage. These synergistic outcomes, attained through established technologies (pump and storage hydropower, basin-wide cooperation, and grid expansion), show the practicality of the HPWP-base. Therefore, it can serve as a solution to accelerate regional electricity transformation while advancing sustainable development, and enable policymakers to appreciate how to link renewable energy transition with multiple sustainable goals. Developing energy base that integrates hydropower, solar, wind, and pumped-storage in the Yellow River Basin can deliver synergistic benefits, including emissions reduction, water saving, ecosystem protection, and enhanced regional sustainability.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.1038/s41467-026-76078-2first seen 2026-07-29 05:20:16
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