石油炼制与化工 ›› 2026, Vol. 57 ›› Issue (8): 66-75.

• 加工工艺 • 上一篇    下一篇

川西气田某天然气脱硫站低负荷运行特性分析

王杰1,赵羽1,李思1,张雅馨1,周榆1,宋辞2,陶哲学2,陈历波2   

  1. 1. 中石化川西天然气勘探开发有限公司
    2. 重庆科技大学化学化工学院
  • 收稿日期:2026-01-29 修回日期:2026-04-20 出版日期:2026-08-12 发布日期:2026-07-23
  • 通讯作者: 陈历波 E-mail:libochen134@foxmail.com
  • 基金资助:
    中石化西南石油局科研项目“川西气田负荷调整优化运行技术研究”

ANALYSIS OF LOW-LOAD OPERATING CHARACTERISTICS OF A NATURAL GAS DESULFURIZATION STATION IN THE CHUANXI GAS FIELD

  • Received:2026-01-29 Revised:2026-04-20 Online:2026-08-12 Published:2026-07-23

摘要: 川西气田气井压力持续下降,某天然气脱硫站面临低负荷运行下设备失稳、产品质量超标、硫回收率下降等挑战。基于HYSYS软件构建了脱硫-硫回收全流程稳态模型,分析了该天然气脱硫站在负荷由70%降至20%情况下的设备运行特性。结果表明:在50%~70%负荷下,装置运行总体平稳,净化气质量达标,个别设备在较低负荷下出现轻微失稳;在20%~40%负荷下,塔类设备水力学特性与净化气质量达标矛盾凸显,贫胺液高循环量会导致塔类设备水力学失稳,低循环量则会导致净化气质量超标;此外,20%负荷下,风机送风流量低于其喘振限,若为避免喘振而提高风量,则会导致氧过量,严重破坏H2S/SO2比例平衡,造成硫回收率从96.5%骤降至72.2%。因此,在50%负荷以下,需通过更换塔内构件及填料、进行塔设备改造来优化运行条件,泵类设备需投用最小流量保护;尤其在20%负荷下,风机须增设防喘振回路或更换小流量风机,才能保障设备正常运行。

关键词: 天然气脱硫, 低负荷工况, 硫回收, 风气比, 设备失稳

Abstract: The gas well pressure in the West Sichuan gas field continues to decline, putting a natural gas desulfurization station under low-load operation, which brings challenges such as equipment instability, product quality exceeding limits, and reduced sulfur recovery rates. A comprehensive steady-state model of the desulfurization and sulfur recovery process was built using HYSYS software to analyze the equipment performance as the load decreased from 70% to 20%. The results show that at load of 50%–70%, the unit operates stably with qualified purified gas, though slight instabilities occur in individual equipment at lower loads. At load of 20%–50%, a clear conflict arises between hydraulic performance of tower equipment and purified gas quality compliance—high lean amine circulation rates cause hydraulic instability in towers, while low rates lead to gas quality exceeding standards. Additionally, at load of 20%, fan airflow drops below the surge limit; increasing airflow to avoid surge introduces excess oxygen, severely disrupting the H2S/SO2 ratio and causing sulfur recovery rate to plummet from 96.5% to 72.2%. Therefore, below load of 50% , tower internals and packing should be replaced or retrofitted to optimize operating conditions, and pumps must activate minimum flow protection. Especially at load of 20%, fans require the addition of an anti-surge loop or replacement with smaller-capacity fans to ensure stable operation.

Key words: natural gas desulfurization, low-load condition, sulfur recovery, air-to-acid gas ratio, equipment instability