Taylor C D, Chandra A, Vera J, Sridhar N
DNV GL, Dublin, OH 43017, USA.
Faraday Discuss. 2015;180:459-77. doi: 10.1039/c4fd00220b. Epub 2015 Apr 27.
Organic corrosion inhibitors can provide an effective means to extend the life of equipment in aggressive environments, decrease the environmental, economic, health and safety risks associated with corrosion failures and enable the use of low cost steels in place of corrosion resistant alloys. To guide the construction of advanced models for the design and optimization of the chemical composition of organic inhibitors, and to develop predictive tools for inhibitor performance as a function of alloy and environment, a multiphysics model has been constructed following Staehle's principles of "domains and microprocesses". The multiphysics framework provides a way for science-based modelling of the various phenomena that impact inhibitor efficiency, including chemical thermodynamics and speciation, oil/water partitioning, effect of the inhibitor on multiphase flow, surface adsorption and self-assembled monolayer formation, and the effect of the inhibitor on cathodic and anodic reaction pathways. The fundamental tools required to solve the resulting modelling from a first-principles perspective are also described. Quantification of uncertainty is significant to the development of lifetime prediction models, due to their application for risk management. We therefore also discuss how uncertainty analysis can be coupled with the first-principles approach laid out in this paper.
有机缓蚀剂可以提供一种有效的方法,以延长设备在侵蚀性环境中的使用寿命,降低与腐蚀失效相关的环境、经济、健康和安全风险,并能够使用低成本钢材替代耐腐蚀合金。为了指导构建用于设计和优化有机缓蚀剂化学成分的先进模型,并开发作为合金和环境函数的缓蚀剂性能预测工具,遵循施泰勒的“域和微观过程”原则构建了一个多物理场模型。该多物理场框架为基于科学的各种影响缓蚀剂效率的现象建模提供了一种方法,包括化学热力学和物种形成、油/水分配、缓蚀剂对多相流的影响、表面吸附和自组装单分子层形成,以及缓蚀剂对阴极和阳极反应途径的影响。还描述了从第一性原理角度求解所得模型所需的基本工具。由于寿命预测模型应用于风险管理,不确定性的量化对其发展具有重要意义。因此,我们还讨论了不确定性分析如何与本文提出的第一性原理方法相结合。