Corrosion Behaviour in CO2 Pipeline Transport: A Review of the Impact of Condensates and Impurities
二酸化炭素パイプライン輸送における腐食挙動:凝縮物と不純物の影響のレビュー (AI 翻訳)
Luca Gritti, D. Coffetti, Lorenzo Nani, S. Lorenzi, M. Cabrini
🤖 gxceed AI 要約
日本語
このレビューは、CO2輸送用パイプラインにおける凝縮物の形成と不純物が腐食挙動に与える影響を調査した。圧力・温度変化による相転移と流体組成の変化が、トップオブライン腐食(TLC)やCO2腐食(スイート腐食)を促進するメカニズムを解説。CCSインフラの信頼性向上に資する知見を提供。
English
This review examines the impact of condensates and impurities on corrosion in CO2 pipelines under carbon capture and storage (CCS) conditions. It highlights how pressure and temperature variations lead to phase changes and altered fluid chemistry, accelerating top-of-line and sweet corrosion. The findings are crucial for designing safe and durable CO2 transport infrastructure.
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2030年までのCCS実用化を目指しており、CO2パイプラインの安全性確保は重要課題。この研究は、パイプライン腐食評価の基礎として国内CCSプロジェクトにも参考となる。
In the global GX context
As global CCS deployment scales, understanding pipeline corrosion under realistic CO2 stream conditions (with impurities) is critical for safety and cost. This review systematizes knowledge from materials science, filling a gap for infrastructure operators and regulators.
👥 読者別の含意
🔬研究者:Provides a comprehensive overview of corrosion mechanisms in CO2 pipelines, useful for designing experimental studies or material selection.
🏢実務担当者:Helps pipeline operators anticipate corrosion risks from impurities and phase changes, informing monitoring and maintenance strategies.
🏛政策担当者:Highlights technical challenges that may affect CCS project viability, useful for setting safety standards.
📄 Abstract(原文)
The high emissions of carbon dioxide (CO2) into the atmosphere have driven the development of carbon capture, transport, and storage (CCTS) technologies. These focus on capturing CO2 from industrial exhaust gases and transporting it through existing pipeline networks. Although various capture techniques are available, they may introduce impurities such as O2, N2, Ar, H2O, NH3, and others into the CO2 stream. These contaminants can significantly alter the thermophysical behaviour of the fluid, making the phase behaviour predictions, reliable for pure CO2, much more complex. Pressure and temperature variations along pipelines can induce unexpected phase transitions, affecting fluid composition and potentially triggering corrosion. This review examines the formation of condensates within pipelines and their role in initiating corrosion phenomena, with a focus on top of the line corrosion (TLC) and conventional CO2-induced corrosion (sweet corrosion). The main literature findings highlight how phase changes and altered fluid composition due to corrosion processes can significantly intensify degradation mechanisms during CO2 transport.
🔗 Provenance — このレコードを発見したソース
- semanticscholar https://doi.org/10.3390/ma19102048first seen 2026-05-20 05:39:01
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