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首页> 外文期刊>Journal of Materials Science >Degradation of zirconate materials in ultra-high temperature reverse-flow pyrolysis reactors
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Degradation of zirconate materials in ultra-high temperature reverse-flow pyrolysis reactors

机译:超高温逆流热解反应器中锆酸盐材料的降解

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A reverse-flow reactor enables the pyrolysis of hydrocarbons at temperatures up to 2000 C to high value petrochemical products. Materials in the reactor hot zone, exposed to such extreme temperatures, are also subject to rapid oxidative cycling over a period of several seconds between a regeneration (heat addition) step that is mildly oxidizing and a pyrolysis (cracking) step that is strongly carburizing. This paper addresses the performance of a class of zirconate ceramics such as BaZrO_3, SrZrO_3, and La _2Zr_2O_7 that have been tested in a laboratory scale reverse-flow reactor and compares the results with thermodynamic predictions. It is observed that zirconate ceramics degrade by decomposition to zirconia and the second oxide, vaporization of the second oxide, and ceramic dusting corrosion of zirconia that involves carbide-oxide inter-conversion and carbon precipitation. The pyrolysis reaction promotes carbon deposition and carburization of zirconia leading to the formation of a non-protective porous carbide layer. The regeneration reaction converts the carbide layer partially back to oxide while also oxidizing away some of the deposited carbon. Repeated cycles of pyrolysis and regeneration steps eventually result in the breakup of the bulk zirconate ceramic structure into powder or dust.
机译:逆流反应器可将碳氢化合物在高达2000 C的温度下热解为高价值的石油化工产品。在处于这种极端温度的反应堆热区中的材料,在经过轻度氧化的再生(添加热量)步骤和发生强烈渗碳的热解(裂解)步骤之间,还需要经历几秒钟的快速氧化循环。本文介绍了已在实验室规模的逆流反应器中测试的一类锆酸盐陶瓷(如BaZrO_3,SrZrO_3和La _2Zr_2O_7)的性能,并将结果与​​热力学预测进行了比较。观察到锆酸盐陶瓷通过分解成氧化锆和第二氧化物,第二氧化物的汽化以及氧化锆的陶瓷粉尘腐蚀而降解,这涉及碳化物-氧化物的相互转化和碳沉淀。热解反应促进了氧化锆的碳沉积和渗碳,导致形成非保护性多孔碳化物层。再生反应将碳化物层部分转化回氧化物,同时还氧化掉一些沉积的碳。热解和再生步骤的重复循环最终导致块状锆酸盐陶瓷结构破碎成粉末或粉尘。

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