石油・ガス田シナリオにおける水素エネルギーの応用可能性
Application Potential of Hydrogen Energy in Oil and Gas Field Scenarios (原題)
Xunyi Wang
🤖 gxceed AI 要約
日本語
石油・ガス業界の低炭素移行における水素エネルギーの応用可能性を、文献レビューと中国の長慶・勝利・タリム油田の事例から体系的に評価。産出水電解、風光ハイブリッド水素製造、枯渇層貯留、パイプライン混入などの技術経路を検討し、経済性は第15次五カ年計画期間中の損益分岐点達成を見込む。実証は技術的実現性を示すが、コスト・安全・標準化の課題が残る。
English
This study systematically evaluates hydrogen energy application in oil and gas fields, using literature review and case studies from Changqing, Shengli, and Tarim. It covers production routes (produced-water electrolysis, wind-solar hybrid, in-situ), storage (depleted reservoirs), and utilization (pipeline blending, drilling, refinery substitution, CCUS-EOR synergy). Findings indicate technical feasibility, with green hydrogen projected to break even during China's 15th Five-Year Plan, but scaling requires addressing cost, safety, and standardization.
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文脈では、水素社会実現に向けた技術開発と実証が進む中、石油・ガス田の既存インフラを活用した水素サプライチェーン構築の参考になる。特に、枯渇ガス田を利用した水素貯蔵やパイプライン混入は、日本の地下貯蔵や都市ガス混入の検討に示唆を与える。
In the global GX context
Globally, this paper contributes to the hydrogen transition literature by providing empirical evidence from Chinese oil fields, which is relevant for regions with mature oil and gas infrastructure. It highlights the potential of integrating hydrogen with CCUS and existing energy systems, offering insights for global energy transition strategies and policy frameworks.
👥 読者別の含意
🔬研究者:Provides a comprehensive overview of hydrogen application pathways in oil and gas fields, with case studies that can inform future research on techno-economic analysis and infrastructure integration.
🏢実務担当者:Offers practical insights for oil and gas companies considering hydrogen diversification, including viable production routes, storage options, and economic break-even projections.
🏛政策担当者:Highlights the need for policy and standard upgrades to support hydrogen scaling, including safety standards and economic incentives, relevant for national hydrogen strategies.
📄 Abstract(原文)
Hydrogen energy is a critical low-carbon transition pathway for the oil and gas industry, leveraging oilfields' unique conditions for integrated supply, storage, and utilization. This study systematically evaluates application potential through literature review and case studies, covering produced-water electrolysis, wind-solar hybrid hydrogen production, in-situ generation, depleted-reservoir storage, and pipeline blending, with demonstrations from Changqing, Shengli, and Tarim. Key findings indicate: (1) diverse production routes are viable—produced-water and wind-solar pilots are underway, while in-situ is a frontier; (2) depleted reservoirs enable large-scale, long-term storage, whereas pipeline blending offers near-term gains but faces hydrogen embrittlement and safety-standard bottlenecks; (3) applications including hydrogen-powered drilling, multi-energy integration at joint stations, refinery green-H₂ substitution, and (Carbon Capture, Utilization and Storage-Enhanced Oil Recovery)CCUS-EOR synergy have been validated; (4) with falling renewable costs and rising carbon prices, green hydrogen projects are projected to break even during the 15th Five-Year Plan period; (5) domestic pilots confirm technical feasibility, yet scaling requires addressing cost, safety, and standardization challenges. Achieving economic viability for hydrogen requires prioritizing blending/storage demonstrations, intensifying in situ fundamental studies, and upgrading policy and standard systems.
🔗 Provenance — このレコードを発見したソース
- openaire https://doi.org/10.54254/2755-2721/2026.ch35521first seen 2026-09-01 04:57:12 · last seen 2026-09-21 04:30:23
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