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使用递归图分析铁钝化-腐蚀过程的非线性动力学响应。

Using recurrence plots for the analysis of the nonlinear dynamical response of iron passivation-corrosion processes.

作者信息

Valavanis Dimitrios, Spanoudaki Dimitra, Gkili Chrysanthi, Sazou Dimitra

机构信息

Department of Chemistry, Aristotle University of Thessaloniki, 54 124 Thessaloniki, Greece.

出版信息

Chaos. 2018 Aug;28(8):085708. doi: 10.1063/1.5025801.

DOI:10.1063/1.5025801
PMID:30180650
Abstract

Recurrence plots (RPs) and recurrence quantification analysis (RQA) are used in this work to study different nonlinear dynamical regimes emerging in an electrochemical system, namely, the electrodissolution-passivation of iron in chloride-containing sulfuric acid solutions. Current oscillations at different applied potentials and chloride concentrations exhibit bifurcations from periodic to complex (bursting) periodic and aperiodic or chaotic behaviors, associated with different dissolution states of iron. The clarification of these transitions is essential to understand the type of corrosion (uniform or localized) taking place as well as the underlying mechanisms governing the stability of the metal. The RQA reveals that the predictability of the chloride-perturbed Fe|0.75M HSO system strongly depends on the chloride concentration and the applied potential. At relatively low chloride concentrations, RQA measures, based on vertical and diagonal structures in RPs, display a decrease upon the breakdown of the passivity on iron and the initiation of localized corrosion (pitting). Phases of pitting corrosion (propagation/growth and unstable pitting) that followed pit initiation are discerned by keen changes of complexity measures upon varying the applied potential. At higher chloride concentrations, the evolution of RQA measures with the potential signifies a transition from the passive-active state dissolution to the polishing state dissolution of iron inside pits. The increase of the applied potential at late stages of pitting corrosion increases the nonlinear correlations and thus the complexity of the system decreases, which corroborates the RQA.

摘要

在本工作中,使用递归图(RPs)和递归定量分析(RQA)来研究电化学系统中出现的不同非线性动力学状态,即铁在含氯硫酸溶液中的电溶解 - 钝化过程。在不同施加电位和氯化物浓度下的电流振荡表现出从周期性到复杂(爆发性)周期性以及非周期性或混沌行为的分岔,这与铁的不同溶解状态相关。阐明这些转变对于理解发生的腐蚀类型(均匀腐蚀或局部腐蚀)以及控制金属稳定性的潜在机制至关重要。RQA表明,氯化物扰动的Fe|0.75M HSO系统的可预测性强烈依赖于氯化物浓度和施加电位。在相对较低的氯化物浓度下,基于RPs中的垂直和对角线结构的RQA测量值在铁的钝化破坏和局部腐蚀(点蚀)开始时会降低。通过改变施加电位时复杂性测量值的敏锐变化,可以识别出点蚀起始后的点蚀腐蚀阶段(扩展/生长和不稳定点蚀)。在较高的氯化物浓度下,RQA测量值随电位的变化表明从铁在点蚀内的被动 - 主动状态溶解向抛光状态溶解的转变。点蚀腐蚀后期施加电位的增加会增加非线性相关性,从而使系统的复杂性降低,这证实了RQA的结果。

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