石油炼制与化工 ›› 2025, Vol. 56 ›› Issue (12): 133-139.

• 节能减排 • 上一篇    下一篇

乙烯装置用能分析及节能优化措施

刘健   

  1. 中石化(河南)炼油化工有限公司
  • 收稿日期:2025-06-27 修回日期:2025-07-11 出版日期:2025-12-12 发布日期:2025-12-02
  • 通讯作者: 刘健 E-mail:15838896495@139.com

ENERGY CONSUMPTION ANALYSIS AND ENERGY-SAVING OPTIMIZATION MEASURES FOR ETHYLENE PLANT

  • Received:2025-06-27 Revised:2025-07-11 Online:2025-12-12 Published:2025-12-02

摘要: 介绍了某公司1Mt/a乙烯装置的用能现状和已采取的节能措施,采取了应用急冷油新型节能减黏技术、增加工艺凝结水和脱盐水换热流程、脱甲烷塔塔顶流程改为立式CIV冷凝器形式、锅炉连续排污水的余热利用、乙烯压缩机透平由抽汽凝汽式改为背压式、电气化协同优化6个方面的节能优化措施,合计可降低装置能耗1734.28 MJ/t,节能效果显著。结合装置实际情况,进一步提出实现裂解炉理论配比燃烧、裂解炉增加二级空气预热器、大功率机泵增设变频器、脱丁烷塔降温降压操作、择机应用全流程智能控制技术5个方面的节能优化建议。这对同类装置的节能降耗工作具有较好的指导和借鉴意义。

关键词: 乙烯, 裂解炉, 分离技术, 能耗, 优化措施, 经济效益

Abstract: The energy consumption status of a 1 Mt/a ethylene plant and the energy-saving measures that have been taken are introduced. Six energy-saving optimization measures have been adopted, including the application of a new energy-saving and viscosity-reducing technology for quench oil, the addition of a heat exchange process for process condensate and desalinated water, the modification of the demethanizer overhead process to a vertical CIV condenser form, the waste heat utilization of boiler continuous blowdown, the conversion of the ethylene machine turbine from extraction-condensing type to backpressure type, and the collaborative optimization of electrification. These measures can reduce the energy consumption of the plant by 1734.28 MJ/t in total, and the energy-saving effect is remarkable. Combined with the actual situation of the plant, six next-step energy-saving optimization suggestions are put forward, including achieving the theoretical ratio combustion of the cracking furnace, adding a secondary air preheater to the cracking furnace, installing frequency converters for high-power pumps, carrying out temperature and pressure reduction operations for the debutanizer tower, and applying full-process intelligent control technology at an appropriate opportunity. This has good guiding and reference significance for the energy-saving and consumption reduction work of similar plants.

Key words: ethylene, cracking furnace, separation technology, energy consumption, optimization measures, economic benefits