高温高压复杂水相环境下缓蚀剂的作用特性及机理

Action characteristics and mechanism of corrosion inhibitors in high temperature and high pressure complex aqueous environment

  • 摘要: 金属材料在高温高压复杂水相环境中的腐蚀问题是制约能源、化工及环保领域先进技术装备发展的关键。在高温高压尤其是亚/超临界水环境中,材料的腐蚀风险进一步加大。为有效应对该问题,缓蚀剂作为重要的腐蚀防护技术之一,在高温高压水相极端环境中的应用研究逐渐成为焦点。本文综述了无机和有机缓蚀剂在高温高压乃至亚/超临界水环境中的应用现状,重点探讨了常见缓蚀剂(如硅酸盐、亚硝酸盐、咪唑啉类、季铵盐类等)的作用特性与缓蚀机理,特别是在高温、高压及氧化性介质下的缓蚀剂稳定性与效率;分析了缓蚀剂在不同腐蚀环境中的评价方法,提出了缓蚀剂性能与环境条件间的相互关系;并指出,缓蚀剂的稳定性、环境适应性和复配使用的协同效应是影响其性能的关键因素。尽管已有研究揭示了缓蚀剂在常温常压条件下的良好性能,但在亚/超临界水环境中,现有的研究对缓蚀剂的高温稳定性及优化使用仍显不足。未来应进一步深入探索高温高压下缓蚀剂的耐久性与环境友好性,推动新型缓蚀剂的研发与应用。本综述为高温高压水环境中的金属腐蚀防护技术提供了理论支持,并为清洁能源生产与资源优化利用领域的技术发展提供了重要参考。

     

    Abstract: The corrosion problem of metal materials in high temperature and high pressure complex aqueous environment is the key to restrict the development of advanced technology and equipment in the field of energy, chemical industry and environmental protection. In high temperature and high pressure, especially in sub / supercritical water environment, the corrosion risk of materials is further increased. In order to effectively deal with this problem, as one of the important corrosion protection technologies, the application of corrosion inhibitors in the extreme environment of high temperature and high-pressure water phase has gradually become the focus. In this paper, the application status of inorganic and organic corrosion inhibitors in high temperature and high pressure and even sub / supercritical water environment is reviewed. The action characteristics and corrosion inhibition mechanism of common corrosion inhibitors (such as silicate, nitrite, imidazoline, quaternary ammonium salt, etc.) are discussed, especially the stability and efficiency of corrosion inhibitors in high temperature, high pressure and oxidizing media. The evaluation methods of corrosion inhibitors in different corrosive environments were analyzed, and the relationship between corrosion inhibitor performance and environmental conditions was proposed. It is pointed out that the stability of corrosion inhibitor, environmental adaptability and synergistic effect of compound use are the key factors affecting its performance. Although existing studies have revealed the good performance of corrosion inhibitors under normal temperature and pressure conditions, in the sub / supercritical water environment, the existing research on the high temperature stability and optimal use of corrosion inhibitors is still insufficient. In the future, the durability and environmental friendliness of corrosion inhibitors under high temperature and high pressure should be further explored to promote the development and application of new corrosion inhibitors. This review provides theoretical support for metal corrosion protection technology in high temperature and high-pressure water environment, and provides an important reference for technological development in the field of clean energy production and resource optimization.

     

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