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Metal Dusting Corrosion Of Carbon Steel

机译:碳钢的金属喷粉腐蚀

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The kinetics and mechanism of metal dusting corrosion of carbon steel have been studied as a function of temperature (873 - 1173 K) in propane-butane atmosphere, being the mixture of 70 vol. % of propane and 30 vol. % of butane with the total pressure equal 10~5 Pa. The kinetics of corrosion have been studied thermogravimetrically in the apparatus enabling the mass changes of corroded sample to be followed continuously with the accuracy of the order of 10~(-6) g. It has been found that metal dusting corrosion in this atmosphere, modeling in some way industrial environments in petrochemical industry, proceeds with extremely high rate in agreement with linear rate law. Linear course of corrosion indicates that chemical reactions and not diffusion determine the overall rate of steel degradation. The aggregates of porous reaction products are composed with carbon filaments of various shapes, often separated by thin iron-containing particles. This peculiar shape of reaction products may be considered as characteristic feature of metal dusting corrosion in propane-butane atmosphere.
机译:已经研究了丙烷-丁烷气氛(70体积比)的混合物中碳钢的金属喷粉腐蚀动力学和机理与温度(873-1173 K)的函数关系。丙烷百分比和30体积总压力等于10〜5 Pa的丁烷的百分数。在设备中通过热重分析研究了腐蚀动力学,使腐蚀样品的质量变化能够连续不断地跟踪,精度约为10〜(-6)g。已经发现,在该气氛中的金属粉尘腐蚀,以某种方式在石化工业的工业环境中进行建模,与线性速率定律一致地以极高的速率进行。线性腐蚀过程表明化学反应而不是扩散决定了钢的总体降解速率。多孔反应产物的聚集体由各种形状的碳丝组成,通常被含铁的细颗粒隔开。反应产物的这种特殊形状可以认为是丙烷-丁烷气氛中金属粉尘腐蚀的特征。

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