Assessing the Sustainable Development of Liquefied Petroleum Gas Storage and Transportation Under Energy Transition Based on the C-STSM Multidimensional Framework: China Case
エネルギー転換下における液化石油ガス貯蔵・輸送の持続可能な発展評価:C-STSM多次元フレームワークに基づく中国事例 (AI 翻訳)
Liyun Yang, Yan Zhang, Hao Wu, Wuyi Cheng
🤖 gxceed AI 要約
日本語
本研究は、中国のLPG貯蔵・輸送システムの持続可能性を評価するため、事故フォールトツリー分析、国内外基準の比較、技術評価を統合した「1+4」C-STSMフレームワークを開発した。結果、持続可能性はインフラ、輸送、監視、安全バリアの協調に依存し、中国は施設・安全管理で進展があるものの、本質安全、バリア完全性、知的監視、ライフサイクルガバナンスに課題がある。国際的優良事例との差は基本技術不足ではなくシステム統合不足にある。改善には安全インフラ、知的監視、バリア管理、規制調整の協調的アプローチが必要である。
English
This study develops a '1+4' C-STSM framework integrating fault-tree analysis, comparative standards review, and technology assessment to evaluate sustainability of China's LPG storage and transportation. Results show sustainability depends on coordinated infrastructure, transportation, monitoring, and safety barriers. China has progressed in facilities and safety management but lags in intrinsic safety, barrier integrity, intelligent monitoring, and life-cycle governance. The main gap is system integration, not basic technology. Improvement requires coordinated pathways combining safer infrastructure, intelligent monitoring, stronger barriers, and regulatory coordination.
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
日本ではLPGは都市ガスや電力と並ぶ重要なエネルギー源であり、保安規制やインフラ老朽化が課題。本論文のシステム統合の視点は、日本のLPG保安高度化やスマート保安推進に示唆を与える。
In the global GX context
Globally, LPG is a transitional fuel in the energy transition. This paper's framework for assessing sustainability across storage, transportation, and safety can inform international best practices, especially for emerging economies. It highlights the importance of system integration over isolated technology upgrades, relevant for global energy transition policy.
👥 読者別の含意
🔬研究者:Provides a multidimensional framework (C-STSM) for assessing LPG system sustainability, useful for energy transition research.
🏢実務担当者:Offers insights for improving LPG storage and transportation safety and efficiency, relevant for energy companies.
🏛政策担当者:Highlights regulatory coordination and system integration as key for LPG sustainability, informing policy design.
📄 Abstract(原文)
Under the global energy transition, liquefied petroleum gas (LPG) remains an important transitional fuel. However, persistent safety risks in storage and transportation continue to limit its sustainable development. This study aims to evaluate the sustainability of China’s LPG storage and transportation system and identify practical improvement pathways. A “1+4” C-STSM multidimensional framework was developed by combining accident fault-tree analysis, comparative review of domestic and international standards, and a systematic assessment of storage, transportation, monitoring, and safety technologies. The results show that the sustainability of LPG systems depends on the coordinated performance of infrastructure, transportation, monitoring, and safety barriers across the full supply chain. China has made progress in engineering facilities and safety management, but still faces weaknesses in intrinsic safety, barrier integrity, intelligent monitoring, and life-cycle governance. The main gap with international advanced practice lies in insufficient system integration rather than the lack of basic technologies. Improving LPG sustainability requires a coordinated pathway that combines safer infrastructure, intelligent monitoring, stronger barrier management, and better regulatory coordination. Such an approach can enhance industrial safety while supporting low-loss, low-emission energy transition.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.3390/su18083943first seen 2026-05-15 16:51:50 · last seen 2026-05-31 05:26:19
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