バッテリーレス・オフグリッド再生可能エネルギーマイクログリッド:貯蔵代替技術とPV-WT-CSP統合のレビュー(グリーン水素を含む)
Battery-Less Off-Grid Renewable Microgrid: A Review of Storage Alternatives and PV-WT-CSP Integration with Green Hydrogen (原題)
Ovis D. Irefu, Godslove I. Ebiega, Terdoo M. Dugeri, Seyi Fanifosi
🤖 gxceed AI 要約
日本語
本レビューは、オフグリッド再生可能エネルギーシステムにおけるバッテリー貯蔵の課題を踏まえ、スーパーキャパシタ、フライホイール、CAES、揚水、水素貯蔵、溶融塩蓄熱の6つの代替技術を比較分析。ハイブリッド構成、特に溶融塩TESと水素貯蔵の組み合わせが最適とし、PV・風力・CSPと水素を統合した新規マイクログリッドを提案。再生可能エネルギーの出力抑制を最大79%削減し、20年間のバッテリー交換コストを排除できるとしている。
English
This review addresses battery storage challenges in off-grid renewable systems, comparing six alternatives: supercapacitors, flywheels, CAES, pumped hydro, hydrogen storage, and molten salt TES. Hybrid configurations, especially molten salt TES with hydrogen, are found most robust. A novel PV-wind-CSP microgrid with hydrogen integration is proposed, potentially reducing curtailment by up to 79% and eliminating battery replacement costs over 20 years.
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
日本の離島や山間部の電化、農業用エネルギー自立に貢献する可能性がある。再エネ導入拡大に伴う出力抑制対策や、水素社会実現に向けた技術選択肢として、政策や補助金設計に示唆を与える。
In the global GX context
This review contributes to global discourse on energy storage alternatives and green hydrogen integration, relevant for off-grid electrification in developing regions and remote communities. It supports transition finance and technology roadmaps by highlighting cost-effective, sustainable storage solutions beyond batteries.
👥 読者別の含意
🔬研究者:Provides a systematic comparison of battery-less storage technologies and a novel system design for further techno-economic validation.
🏢実務担当者:Offers insights into alternative storage configurations that can reduce lifecycle costs and enhance energy autonomy for off-grid projects.
🏛政策担当者:Informs policy on promoting green hydrogen and storage alternatives for rural electrification and agricultural decarbonization.
📄 Abstract(原文)
Renewable energy systems play a critical role in reducing carbon emissions and promoting energy sustainability. Conventional battery storage remains the dominant but problematic solution for intermittency management in off-grid renewable energy systems (RES), imposing high capital costs ($150-400/kWh for lithium-ion), short replacement cycles of 3-15 years, and significant environmental burdens from toxic material disposal barriers that are particularly acute in the remote and resource-limited communities that most need reliable clean energy. This paper presents a systematic review of battery-less off-grid RES, synthesizing evidence across six alternative energy storage and dispatch technologies: supercapacitors, mechanical flywheels, compressed air energy storage (CAES), pumped hydroelectric storage (PHS), hydrogen storage via PEM electrolysis, and molten salt thermal energy storage (TES). The review spans single-source, dual-source, and multi-source configurations, with documented applications in seawater reverse osmosis desalination, agricultural water pumping, rural electrification, and small-scale industrial processes. A comparative performance analysis reveals that no single battery-less technology is universally optimal; rather, hybrid approaches particularly molten salt TES paired with hydrogen storage offer the most robust solution for continuous, dispatchable off-grid power. Building on this synthesis, the paper proposes and characterizes a novel integrated battery-less microgrid combining solar photovoltaic (PV), wind turbine (WT), and concentrated solar power (CSP) with molten salt thermal storage and PEM-based green hydrogen production. The system’s defining innovation is the dual-pathway utilization of stored hydrogen: as a long-duration electricity backup via fuel cells and as a direct fuel for agricultural vehicles and equipment, eliminating diesel dependence in off-grid farming contexts. Key findings indicate that such integrated systems can reduce curtailed renewable energy by up to 79%, eliminate battery replacement costs over a 20-year operational lifespan, and provide multi-day energy autonomy without chemical battery storage. Critical challenges including electrolyzer cost reduction, small-scale CSP adaptation, and energy management system design are identified as priority directions for future research to enable widespread deployment. HOMER Pro-based techno-economic validation is identified as the immediate next step in this research work.
🔗 Provenance — このレコードを発見したソース
- semanticscholar https://www.lidsen.com/journals/jept/jept-08-03-015/jept.2603015.pdffirst seen 2026-08-30 05:13:17 · last seen 2026-09-22 05:01:59
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