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XPS studies on passive film formed on stainless steel in a high-temperature and high-pressure methanol solution containing chloride ions

机译:XPS研究了在含有氯离子的高温高压甲醇溶液中在不锈钢上形成的钝化膜

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The composition and structure of passive film formed on 316L SS immersed in an anhydrous methanol solution (water content < 0.05 wt%) containing 0.42 wt% LiCl at 323-473 K were investigated by X-ray pho-toelectron spectroscopy (XPS), and compared with those of film formed in an aqueous solution. The passive film formed in the methanol solution was mainly composed of Fe and Cr oxides, and it possessed a double-layered structure consisting of an Fe oxide-rich outer layer and a Cr oxide-rich inner layer. Dissolution of the Fe-rich layer and densification of the Cr-rich inner layer were observed, especially at high temperatures. However, these were suppressed in an aerated methanol solution at 423 K or below, probably due to the barrier effect of adsorbed oxygen. No Ni compound contributed to composing the passive film, even at higher temperatures. The ratio of OH~- to O~(2-) was small and decreased with an increase in temperature (the presence of oxygen suppressed the decrease, especially at 423 K or below). The chloride ions were concentrated in the Fe-rich outer layer, and they penetrated more deeply than that in the aqueous solution into the passive film formed in the methanol solution.
机译:通过X射线光电子能谱(XPS)研究了在316L SS上形成的钝化膜的组成和结构,该钝化膜浸在323-473 K下含有0.42 wt%LiCl的无水甲醇溶液(水含量<0.05 wt%)中,并且与在水溶液中形成的膜相比。在甲醇溶液中形成的钝化膜主要由Fe和Cr氧化物组成,并具有由富Fe氧化物外层和富Cr氧化物内层组成的双层结构。观察到富铁层的溶解和富铬内层的致密化,特别是在高温下。但是,这些可能在423 K或更低的充气甲醇溶液中被抑制了,这可能是由于吸附的氧气的阻挡作用所致。即使在更高的温度下,也没有Ni化合物有助于构成钝化膜。 OH〜-与O〜(2-)的比例很小,并且随着温度的升高而降低(氧气的存在抑制了这种降低,尤其是在423 K或更低的温度下)。氯离子集中在富铁的外层中,并且比水溶液中的氯离子更深地渗透到甲醇溶液中形成的钝化膜中。

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