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Application of <scp>EOR</scp> Techniques for Carbon Capture and Storage

炭素回収・貯留のためのEOR技術の応用 (AI 翻訳)

Bin Yuan, Xiaocong Lyu, Wei Zhang, Gang Huang, Abhijit Dandekar

ジャーナル2026-07-01#CCUSOrigin: CN経営インパクト: 資金調達対象セクター: oil_gas
DOI: 10.1002/9781394304417.ch09
原典: https://doi.org/10.1002/9781394304417.ch09

🤖 gxceed AI 要約

日本語

本稿はCO2-EOR技術を用いたCCSの包括的な概要を提供する。CO2回収・輸送・貯留の各段階について技術オプションを比較し、経済性や環境影響を評価する。特にAIによる最適化の可能性に言及し、CCS実装の実務的知見を整理する。

English

This chapter provides a comprehensive overview of CO2-EOR for carbon capture and storage. It compares technical options for CO2 capture, transport, and storage, evaluating economic and environmental impacts. It mentions AI optimization potential and organizes practical implementation insights.

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CCUSがGXの重点分野の一つであり、特にCCS事業法の整備が進む中で、EOR技術の知見は重要である。本稿はCO2-EORの実装面を網羅しており、国内CCSプロジェクトの設計に示唆を与える。

In the global GX context

Globally, CCUS is critical for hard-to-abate sectors, and CO2-EOR is a proven commercial model. This chapter offers a systems-level view applicable to international CCS deployment, particularly relevant for ISSB-aligned disclosure on carbon capture projects.

👥 読者別の含意

🔬研究者:Provides a consolidated reference on CO2-EOR technologies and AI optimization for CCUS practitioners.

🏢実務担当者:Offers practical guidance on selecting CO2 capture, transport, and storage methods, with cost considerations.

🏛政策担当者:Highlights the role of CO2-EOR in net-zero pathways and the need for regulatory frameworks for CCS.

📄 Abstract(原文)

Carbon dioxide (CO 2 ) capture and storage play a crucial role in promoting the sustainable development of human society and economy. One promising application is CO 2 -enhanced oil recovery (CO 2 -EOR), which reduces emissions while ensuring a stable petroleum supply. Various theories and technologies have been proposed to ensure efficient and safe CO 2 -EOR operation. The chapter delves into the fundamental aspects of CO 2 capture and storage techniques that can simultaneously enhance hydrocarbon recovery. It begins by examining diverse sources of CO 2 and discussing separation technologies used for CO 2 capture. The importance of selecting the right separation technology is emphasized, showcasing its potential to significantly reduce the overall cost of CO 2 capture. Various methods for transporting captured CO 2 from plants to storage sites are investigated, carefully evaluating the advantages and disadvantages of each approach. Additionally, potential sequestration sites are analyzed, considering critical factors in selecting suitable CO 2 storage locations. This chapter also introduces physical, chemical, and biological technologies associated with CO 2 -EOR and CO 2 storage, highlighting exciting possibilities for integrating CO 2 -EOR with CO 2 sequestration. To address challenges related to CO 2 storage, topics such as estimating containment, managing the risk of CO 2 leakage, handling stored CO 2 , and ensuring long-term monitoring are explored, presenting potential solutions. The role of CO 2 -EOR in achieving net-zero emissions and facilitating the transition to cleaner energy sources is underlined. Environmental concerns and economic considerations related to CO 2 capture and storage are outlined. Additionally, the chapter explores the applications of artificial intelligence in optimizing CO 2 -EOR and CO 2 storage, recognizing its growing significance in helping to optimize revenue and CO 2 storage during CO 2 -EOR operations.

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