石油化工安全环保技术 ›› 2025, Vol. 41 ›› Issue (5): 57-61.

• 清洁生产与综合治理 • 上一篇    

油气站场碳排放过程分析与研究

程琪   

  1. 中国石油长庆油田分公司第四采气厂,陕西 西安 710016
  • 收稿日期:2025-03-23 接受日期:2025-09-15 出版日期:2025-10-20 发布日期:2025-11-10
  • 作者简介:程琪,女, 2005 年毕业于宁夏大学信息管理与信息系统专业,现主要从事油气集输安全、环保管理工作,工程师。 E-mail: cq2_cq@petrochina.com.cn

Analysis and Research on Carbon Emission Processes in Oil & Gas Station

Cheng Qi   

  1. No.4 Gas Gathering Plant of PetroChina Changqing Oilfield Company, Xi’an, Shaanxi, 710016
  • Received:2025-03-23 Accepted:2025-09-15 Online:2025-10-20 Published:2025-11-10

摘要: 为实现油气站场的节能减排,在对分离器和换热器进行动态传热建模的基础上,对站内处理系统的碳排放过程进行了分析,确定了碳减排的主要方向和具体措施。结果显示,碳排放类型主要为直接排放、逸散排放和净购入电力间接排放;碳排放源为加热炉、管道、储罐、外输泵、放空系统、增压泵、注水泵、伴生气冷却器等设备;原油处理系统、采出水处理系统和伴生气处理系统的碳排放量分别为 341.75kgCO2/h、 56.96kgCO2/h、 8.67kgCO2/h ;通过应用多功能油水分离器、采出水余热利用工艺和太阳能光热利用工艺,可实现原油处理系统的零碳排放,站场减排率 94.1%。

关键词: 站场, 碳排放, 传热模型, 有机朗肯循环, 太阳能光热利用        

Abstract: To achieve energy conservation and emission reduction in oil and gas stations, the carbon emission processes of the in-station treatment system were analyzed based on dynamic heat transfer modeling of separators and heat exchangers and the main directions and specific measures for carbon emission reduction were determined. The results show that the main types of carbon emissions are direct emissions, fugitive emissions and indirect emissions from net purchased electricity. The sources of carbon emissions are equipment such as heating furnaces, pipelines, storage tanks, external transfer pumps, venting systems, booster pumps, injection pumps and associated gas coolers. The carbon emissions of the crude oil processing system, the produced water treatment system and the associated gas treatment system are 341.75kgCO2/h, 56.96kgCO2/h and 8.67kgCO2/h respectively. By applying the multi-functional oil-water separator, the waste heat utilization process of the produced water and the solar thermal utilization process, zero carbon emissions of the crude oil processing system can be achieved, with a reduction rate of 94.1% at the station.

Key words: station, carbon emission, heat transfer model, organic Rankine cycle, solar energy utilization