石油炼制与化工 ›› 2026, Vol. 57 ›› Issue (4): 34-40.

• 加工工艺 • 上一篇    下一篇

硫化氢氧化对轻石脑油铜片腐蚀试验结果的影响

秦朝晖   

  1. 中国石化上海石油化工股份有限公司
  • 收稿日期:2025-10-13 修回日期:2025-12-21 出版日期:2026-05-12 发布日期:2026-04-01
  • 通讯作者: 秦朝晖 E-mail:m13917703362@163.com

INFLUENCE OF HYDROGEN SULFIDE OXIDATION ON COPPER STRIP CORROSION TEST RESULTS IN LIGHT NAPHTHA

  • Received:2025-10-13 Revised:2025-12-21 Online:2026-05-12 Published:2026-04-01

摘要: 针对某石化公司加氢裂化轻石脑油醇胺法脱硫后时常出现铜片腐蚀试验不合格的问题,对影响轻石脑油铜片腐蚀性能的因素进行了分析,并通过扫描电镜-能量色散光谱(SEM-EDS)、X射线光电子能谱(XPS)和铜片腐蚀灵敏度试验等多种手段,深入探究了造成醇胺法脱硫轻石脑油铜片腐蚀试验不合格的原因。结果表明:在典型含量范围内,常见的有机硫化物及无机硫氧化物均不是导致铜片腐蚀不合格的原因;造成铜片腐蚀试验不合格的主要因素是轻石脑油中的单质硫;轻石脑油中的单质硫是由脱硫醇胺溶液中残留的硫化氢与空气接触氧化产生的,其对铜片腐蚀敏感度极高,当轻石脑油中的单质硫质量分数为2 μg/g时,其铜片腐蚀等级为2d。根据上述研究结果,该装置采取密封措施隔绝了醇胺溶液与空气的接触,从而保证了轻石脑油的铜片腐蚀性能合格。

关键词: 轻石脑油, 铜片腐蚀, 硫单质, 空气氧化

Abstract: To address the recurring unqualified of the copper strip corrosion test for hydrocracked light naphtha from a petrochemical company after alkanolamine desulfurization, factors influencing the copper strip corrosion performance of light naphtha were analyzed. Multiple techniques including scanning electron microscopy-energy dispersive spectroscopy (SEM-EDS), X-ray photoelectron spectroscopy (XPS), and copper strip corrosion sensitivity testing were employed to conduct an in-depth investigation into the root causes of the test failure. The results indicate that common organic sulfides and inorganic sulfur oxides within typical content ranges are not responsible for the unqualified corrosion test. The primary factor leading to the failure is elemental sulfur present in the light naphtha. The elemental sulfur is generated by the oxidation of residual hydrogen sulfide in the desulfurization alkanolamine solution upon contact with air, and it exhibits extremely high corrosion sensitivity to copper strips. When the mass fraction of elemental sulfur in light naphtha reaches 2 μg/g, the copper strip corrosion grade is determined to be 2d. Based on the research findings, the unit adopted sealing measures to isolate the alkanolamine solution from air exposure, thereby ensuring the copper strip corrosion performance of light naphtha meets the qualification criteria.

Key words: light naphtha, copper corrosion, elemental sulfur, air oxidation