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Ceramic Dusting Corrosion of Yttria Stabilized Zirconia in Ultra-High Temperature Reverse-Flow Pyrolysis Reactors

机译:在超高温反流热解反应器中亚钇稳定氧化锆的陶瓷除尘腐蚀

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A reverse-flow reactor (RFR) enables the pyrolysis of hydrocarbons at temperatures up to 2000°C to high value petrochemical products through acetylene intermediate. Materials in the hottest regions of the reactor, exposed to such extreme temperatures, are subject to 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 reducing, accompanied by high carbon activity. Experimental results obtained from single crystal and polycrystalline yttria stabilized zirconia (YSZ) ceramics of different porosities show that the pyrolysis reaction triggers the carburization of YSZ by diffusion of carbon through the lattice, the grain boundaries, and the pores. Subsequently graphite deposition occurs on the carburized surface. During the regeneration step, some of the graphite and (oxy)carbide are reoxidized. Corrosion advances in subsequent cycles by a repetition of oxide-carbide inter-conversion, carbon precipitation, and reoxidation steps. Since degradation involves the breakup of the bulk ceramic structure into powder or "dust" and is reminiscent of metal dusting corrosion observed in metallic materials in carbon supersaturated environments, we name this corrosion "ceramic dusting". Details of the corrosion mechanism and the steps leading to such degradation are discussed.
机译:反流式反应器(RFR)使得通过乙炔中间体在高达2000℃的温度至高值石化产品的温度下热解。在反应器的最热区域中暴露于这种极端温度的最热区域,在温和地氧化的再生(搅拌)步骤之间的几秒钟内待氧化循环,并且在强烈减少的热解(裂解)步骤之间的几秒钟内。伴有高碳活性。从单晶和多晶硅钇稳定的氧化锆(YSZ)陶瓷获得的实验结果,表明热解反应通过通过晶格,晶状体边界和孔的扩散来触发YSZ的渗碳。随后在渗碳表面上发生石墨沉积。在再生步骤期间,将一些石墨和(氧)碳化物被再氧化。通过重复氧化物 - 碳化物间转化,碳沉淀和再氧化步骤,腐蚀在随后的循环中进展。由于降解涉及将散装陶瓷结构的分解成粉末或“灰尘”,并使在碳超饱和环境中的金属材料中观察到的金属粉尘腐蚀,使得这种腐蚀“陶瓷除尘”。讨论了腐蚀机制的细节和导致这种降解的步骤。

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