石油炼制与化工 ›› 2026, Vol. 57 ›› Issue (3): 129-139.

• 节能减排 • 上一篇    下一篇

基于多目标优化的区域炼油厂减排路径分析

陈孟坤,刘明明   

  1. 中国石油大学(北京)经济管理学院
  • 收稿日期:2025-09-01 修回日期:2025-10-21 出版日期:2026-03-12 发布日期:2026-03-02
  • 通讯作者: 陈孟坤 E-mail:a13516382007@163.com
  • 基金资助:
    国家自然科学基金项目

ANALYSIS OF CO2 EMISSION REDUCTION PATHWAYS FOR REGIONAL REFINERIES BASED ON MULTI-OBJECTIVE OPTIMIZATION


  • Received:2025-09-01 Revised:2025-10-21 Online:2026-03-12 Published:2026-03-02
  • Contact: Meng-Kun Chen E-mail:a13516382007@163.com

摘要: 为了助力石油化工行业制定合理的碳减排策略、实现低碳转型,结合蒙特卡洛模拟与LEAP模型,对我国不同地区、不同规模的21家炼油企业进行了碳排放核算,并量化了2025—2060年间节能降耗技术、CCUS技术、绿电替代技术和绿氢替代技术的减排效果和减排成本;进而,以“最大化碳减排效果、最小化减排成本”为双目标函数,构建了炼油企业多目标优化模型,采用NSGA-II算法求解该模型,得出了2025—2060年间不同地区炼油企业的最优碳减排路径组合方案及其演变趋势。结果表明:基于多目标优化结果引入相应的最优减排技术路径组合方案后,2025—2060年间不同地区炼油企业碳排放量均稳步下降,至2060年,整体碳排放量降幅超过40%。

关键词: 炼油企业, CO2排放, 多目标优化, NSGA-II, 减排路径

Abstract: To assist the petrochemical industry in formulating reasonable carbon reduction strategies and achieving low-carbon transformation, this study conducted carbon emission accounting for 21 refineries of varying scales and regions in China by combining Monte Carlo simulation with the LEAP model. The study quantified the emission reduction effects and costs of energy-saving and consumption-reduction technologies, CCUS technologies, green electricity substitution technologies, and green hydrogen substitution technologies from 2025 to 2060.Subsequently, with the dual objectives of "maximizing carbon reduction effects and minimizing reduction costs," a multi-objective optimization model for refineries was constructed. The NSGA-II algorithm was employed to solve the model, yielding the optimal carbon reduction pathway combinations and their evolution trends for refineries in different regions from 2025 to 2060.The results indicate that after introducing the corresponding optimal technology pathway combinations based on the multi-objective optimization outcomes, the carbon emissions of refineries in different regions will decline steadily from 2025 to 2060. By 2060, the overall carbon emissions reduction will exceed 40%.

Key words: refinery enterprises, CO2 emissions, multi objective optimization, NSGA-II, emission reduction pathway