石油化工设备技术 ›› 2026, Vol. 47 ›› Issue (2): 37-41.doi: 10.3969/j.issn.1006-8805.2026.02.007

• 腐蚀与防护 • 上一篇    

苯乙烯装置脱氢尾气系统长周期运行创新性研究

张小伟,严慧玲,吴运民,巨涛,崔会英   

  1. 中国石油天然气股份有限公司独山子石化公司,新疆 独山子 833699
  • 收稿日期:2025-06-30 修回日期:2026-01-21 接受日期:2026-02-28 出版日期:2026-03-15 发布日期:2026-03-23
  • 作者简介:张小伟,男, 2007年毕业于长江大学过程装备与控制工程专业,工学学士,现从事设备完整性管理工作,就职于独山子石化公司乙烯一部,设备一级工程师,高级工程师。

Research on Innovations for Long-Term Operation of Dehydrogenation Tail Gas System in Styrene Unit

Zhang Xiaowei, Yan Huiling, Wu Yunmin, Ju Tao, Cui Huiying   

  1. PetroChina Dushanzi Petrochemical Company, Dushanzi, Xinjiang, 833699
  • Received:2025-06-30 Revised:2026-01-21 Accepted:2026-02-28 Online:2026-03-15 Published:2026-03-23

摘要: 针对某苯乙烯装置脱氢尾气系统腐蚀速率异常升高、威胁装置安全稳定运行的问题,文章开展腐蚀机理分析与长周期运行创新性研究。苯乙烯装置脱氢尾气系统腐蚀主要发生于脱氢尾气后冷却器的进口管道、壳体封头及出口凝液管道等部位,呈现坑蚀、沟槽状及台地状等典型二氧化碳局部腐蚀形貌。机理分析表明,腐蚀主要由介质中二氧化碳溶解于水生成碳酸所引发的电化学腐蚀导致,其速率受温度、压力、二氧化碳含量、沉淀物和水的碱性、水的组分、流动条件等多因素耦合影响。文章重点论述了介质温度、二氧化碳分压、介质流速对二氧化碳腐蚀速率的影响。 基于腐蚀机理分析结果,提出并实施了一系列改造措施,包括增加激冷器与盐冷器,降低介质温度、二氧化碳分压及流速等。改造后,尾气系统换热器与管道的腐蚀速率显著下降,在装置满负荷运行两年的情况下未发现明显腐蚀痕迹,表明该系统的二氧化碳腐蚀已得到有效控制。该研究实可现脱氢尾气系统的安全平稳运行,有效延长装置运行周期,并为同类装置腐蚀防护问题提供了参考。

关键词: 脱氢尾气系统, 创新性研究, 腐蚀机理, 二氧化碳局部腐蚀

Abstract: Concerning the abnormal increase in corrosion rates in the dehydrogenation tail gas system of a styrene unit, which has threatened the safe and stable operation of the unit, this paper conducts an analysis of the corrosion mechanism and research on the innovations for long-term operation. Corrosion in the dehydrogenation tail gas system of the styrene unit primarily occurs in areas such as the inlet pipelines, shell heads and outlet condensate pipelines of the tail gas cooler, exhibiting typical localized CO2 corrosion morphologies like pitting, groove-like and plateau-like features. Mechanism analysis reveals that the corrosion is primarily induced by electrochemical corrosion resulting from carbonic acid formation when CO2 in the medium dissolves in water. The corrosion rate is influenced by the coupling of multiple factors including temperature, pressure, CO2 content, precipitate alkalinity, water composition and flow conditions. This paper focuses on discussing the effects of medium temperature, CO2 partial pressure, and impact of medium flow velocity on the CO2 corrosion rate. Based on the results of the corrosion mechanism analysis, a series of modification measures have been proposed and implemented covering the addition of a quencher and a salt cooler to reduce the medium temperature, CO2 partial pressure and flow velocity. After the modifications, the corrosion rates in the tail gas system's heat exchangers and pipelines significantly decreased. No significant signs of corrosion were observed after two years of full-load operation, indicating that CO2 corrosion in the system has been effectively controlled. This research has achieved safe and stable operation of the dehydrogenation tail gas system and effectively extended the operational cycle of the unit. It provides a reference for addressing corrosion protection issues in similar units.

Key words: dehydrogenation tail gas system, research on innovations, corrosion mechanism, CO2 localized corrosion