石油化工设备技术 ›› 2026, Vol. 47 ›› Issue (2): 47-52.doi: 10.3969/j.issn.1006-8805.2026.02.009

• 节能环保 • 上一篇    

基于LNG接收站与大型炼化装置深度耦合的冷热能互换技术分析

刘景俊   

  1. 中石化天津液化天然气有限责任公司,天津 300450
  • 收稿日期:2025-08-18 修回日期:2026-01-29 接受日期:2026-02-28 出版日期:2026-03-15 发布日期:2026-03-23
  • 通讯作者: 李晗 E-mail:liujingj.trqi@sinopec.com
  • 作者简介:刘景俊,男,1996年毕业于大庆石油学院精细化工专业,学士,主要从事油气储运技术、液化天然气储运与冷能利用研究及项目管理,现任中石化天津液化天然气有限责任公司副董事长、总经理、党委副书记,高级工程师。

Analysis of Cold and Thermal Energy Interchange Technology Based on Deep Integration of LNG Receiving Terminals and Large Petrochemical Complexes

Liu Jingjun   

  1. SINOPEC Tianjin Liquefied Natural Gas Co., Ltd., Tianjin, 300450
  • Received:2025-08-18 Revised:2026-01-29 Accepted:2026-02-28 Online:2026-03-15 Published:2026-03-23
  • Contact: Li Han E-mail:liujingj.trqi@sinopec.com

摘要: 随着我国城市化、工业化进程加快及环保要求的日益严格,天然气行业快速发展,液化天然气(LNG)冷能利用逐渐成为重要研究方向。然而,当前LNG冷能利用普遍面临规模较小、利用率较低等多重因素制约。为改变这一现状,文章以中国石化某LNG接收站与某乙烯项目共建的冷热互换站为例,探讨了大规模、长距离冷能耦合利用的创新模式。该项目将LNG冷能用于炼化装置的降温和产品分离,完成了能量的梯级耦合。在技术路径上,采用甲醇作为长距离运冷的中间介质,并以乙烯作为高精度换热介质,可使冷能应用于5级用户,从而促成了LNG冷能与炼化装置废热的充分整合。运行结果表明:该项目的实施不仅为LNG接收站节约了生产成本,同时有效降低了乙烯项目综合能耗和二氧化碳排放量,实现了全球最大规模LNG冷能利用与超长距离冷能输送,大幅延展了冷能辐射半径,为下一步大规模冷能耦合发展提供了重要参考价值。

关键词: 冷能利用, 冷热互换站, 能量耦合

Abstract: With the acceleration of urbanization and industrialization in China and the increasing demand for environmental protection, the natural gas industry is developing rapidly and the utilization of LNG cold energy has become an important research direction. However, the utilization of cold energy is often constrained by various factors such as small scale and low utilization rate. To address this situation, this paper explores an innovative model for large-scale and long-distance cold energy coupling utilization by examining a case study of the thermal energy interchange station jointly established by a Sinopec LNG receiving terminal and an ethylene project. The project LNG cold energy for cooling petrochemical units and product separation, achieving cascading energy coupling. Technically, the approach employs as an intermediate medium for long-distance cold energy transportation and as a high-precision heat exchange medium, enabling cold energy application across temperature grades. This facilitates the full integration of LNG cold energy with waste heat from petrochemical units. Operational results demonstrate that the project implementation only reduced production costs for the LNG receiving terminal, also effectively lowered the overall energy consumption and carbon dioxide emissions of the ethylene project. It has achieved world's largest-scale utilization of LNG cold energy with long-distance cold energy transportation, significantly expanding the cold energy service radius. This provides reference value for advancing large-scale cold energy coupling development.

Key words: utilization of cold energy, cold-thermal energy interchange station, energy coupling