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燃煤电厂CCS成本解析与协同降本范式研究

门东坡 姜大霖 魏宁 刘胜男

热力发电2026,Vol.55Issue(6):28-38,11.
热力发电2026,Vol.55Issue(6):28-38,11.DOI:10.19666/j.rlfd.202510028

燃煤电厂CCS成本解析与协同降本范式研究

A cost analysis and collaborative cost-reduction framework for CCS in coal-fired power plants

门东坡 1姜大霖 1魏宁 2刘胜男2

作者信息

  • 1. 国能经济技术研究院有限责任公司,北京 100011
  • 2. 中国科学院武汉岩土力学研究所岩土力学与工程安全全国重点实验室,湖北 武汉 430071
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摘要

Abstract

[Objective]Against the dual backdrop of urgent global climate governance and low-carbon transformation demands of the coal-fired power industry,carbon capture and storage(CCS)is widely recognized as a critical pathway to deep emission reduction in the power system.However,the high cost of CCS technology has severely hindered its large-scale promotion.To address this cost optimization challenge,this study aims to systematically explore the cost-driven mechanisms of the full-chain CCS system,identify key influencing factors,and propose a targeted cost-reduction paradigm,providing theoretical and practical support for the scientific deployment and commercialization of CCS in coal-fired power plants.[Methods]This study adopted the ITEAM-CCUS quantitative evaluation model,covering the full-chain CCS and integrating three core modules:geological carbon storage assessment,techno-economic analysis,and source-sink matching optimization.A systematic multi-parameter sensitivity analysis was conducted based on a sample of 165 domestic coal-fired power plants.These samples were selected to represent different regional distributions,unit capacities,and operational conditions,ensuring the generalizability and reliability of the research results.The analysis focused on key technical,economic,and geological parameters,such as absorbent regeneration heat consumption,coal price,plant utilization hours,electricity price,transportation distance,and reservoir properties.[Results]The study revealed that the average levelized cost of the full-chain CCS is 303 yuan per ton of CO2.Among the four chains,the capture and compression stages account for over 80% of the total cost,emerging as the primary focus for cost reduction.Specifically,capture cost is most significantly influenced by absorbent regeneration heat consumption,coal price,and plant utilization hours,and reducing regeneration heat consumption through technological innovation or improving plant operational efficiency can effectively lower capture costs.Compression cost shows a strong correlation with electricity price.Pipeline transportation cost is constrained by transportation distance and economies of scale.Storage cost is extremely sensitive to geological parameters such as reservoir's permeability coefficient,thickness,and depth-reservoirs with higher permeability,greater thickness,and moderate depth are more conducive to reducing drilling,injection,and monitoring costs.[Conclusion]Based on the quantitative findings,this study proposes a systematic"scale-geology-energy efficiency synergy"cost-reduction paradigm.The specific pathways include technological innovation for low-energy consumption in the capture stage,large-scale infrastructure sharing across the full-chain CCS,refined operation and management of the CCS system,and policy incentives.This research clarifies CCS cost structures and driving factors,providing a feasible framework for governments,enterprises,and research institutions.It offers important theoretical and practical reference for promoting large-scale,commercial CCS application in coal-fired power plants,advancing power system decarbonization,and supporting global climate governance.

关键词

燃煤电厂/CCS/成本敏感性/降本路径/ITEAM-CCUS模型

Key words

coal-fired power plants/CCS/cost sensitivity/cost reduction paths/ITEAM-CCUS model

引用本文复制引用

门东坡,姜大霖,魏宁,刘胜男..燃煤电厂CCS成本解析与协同降本范式研究[J].热力发电,2026,55(6):28-38,11.

基金项目

国家能源集团2023年科技项目"新能源+储能与煤基能源+CCS/CCS的经济性比较与优化布局研究"(GJNY-23-104) China Energy National Energy Group's 2023 R&D Project"An Economic Study and Planning Framework for New Energy with Storage versus Coal-based Energy with CCS"(GJNY-23-104) (GJNY-23-104)

热力发电

1002-3364

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