首页> 外文期刊>Petroleum Science and Technology >A Surface Kinetic Model for Coke Deposition Over Stainless Steel, Chromium, and Iron During Ethane Pyrolysis
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A Surface Kinetic Model for Coke Deposition Over Stainless Steel, Chromium, and Iron During Ethane Pyrolysis

机译:乙烷热解过程中不锈钢,铬和铁上焦炭沉积的表面动力学模型

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摘要

An experimental reaction setup consisting of an electric furnace and a quartz reactor with metal coupons inside it was used to study the rate of coke formation on the metal surfaces in different ranges of temperature and diluent ratio. Nitrogen, instead of steam, was used as a diluent in order to exclude the potential effect of oxidation of coke in a steam cracking environment. A kinetic model for coke deposition is experimentally derived based on an expounded surface reaction mechanism for ethane pyrolysis over chromium, iron, and stainless steel coupons. The results of the model are in good agreements with the experimental data with a significant probability confidence.
机译:使用由电炉和内部装有金属试片的石英反应器组成的实验反应装置,以研究在不同温度和稀释比范围内金属表面上焦炭形成的速率。为了排除蒸汽裂化环境中焦炭氧化的潜在影响,使用氮气代替蒸汽作为稀释剂。基于阐述的乙烷在铬,铁和不锈钢试样上热解的表面反应机理,通过实验得出了焦炭沉积的动力学模型。该模型的结果与实验数据吻合良好,概率置信度很高。

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