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Real time spectroelectrochemical growth and corrosion resistance monitoring of lead carboxylate coatings in an environmental cell (eCell)

机译:环境细胞(eCell)中羧酸铅涂层的实时光谱电化学生长和耐腐蚀性监测

摘要

Heritage lead is subject to attack from organic acids emitted from wood and other sources in its environment.Coating the lead is a possible solution if the source cannot be eliminated. We present a study of the growth andcorrosion resistance of a lead carboxylate coating, (CH3(CH2)8COO)2Pb, deposited using an environmentallyfriendly process. Using a combination of synchrotron X-ray diffraction and electrochemical impedance spectroscopywe demonstrate the monitoring of the growth of the coating in real-time in an environmental cell configuredfor electrochemistry. Then, using the same cell, we show the dynamics of exposing the coating to 6.3% (by mass)acetic acid vapour in air at 75% relative humidity. Whereas unprotected lead shows significant corrosion in under2 h, a ~1.5 μm coating can withstand the acid vapour for up to 7 h. However, some coatings fail much sooner butnevertheless still show some residual inhibition. Data are correlated with ex-situ techniques including mass gainmeasurements.
机译:传统铅容易受到木材和其环境中其他来源释放出的有机酸的攻击,如果无法消除这种来源,则可以对铅进行涂层。我们提出了使用环保工艺沉积的羧酸铅涂层(CH3(CH2)8COO)2Pb的生长和耐腐蚀性的研究。使用同步加速器X射线衍射和电化学阻抗谱的组合,我们证明了在配置用于电化学的环境电池中实时监测涂层的生长。然后,使用相同的电池,我们展示了在相对湿度为75%的空气中将涂料暴露于6.3%(质量)乙酸蒸气的动力学。未保护的铅在2小时内显示出明显的腐蚀,而约1.5μm的涂层可以承受7小时的酸蒸汽。但是,有些涂层很快就会失效,但是仍然显示出一些残留的抑制作用。数据与包括质量增益测量在内的异地技术相关。

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