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Temperature-programmed reduction of metal-contaminated fluid catalytic cracking (FCC) catalysts

机译:程序升温还原金属污染的流体催化裂化(FCC)催化剂

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摘要

A temperature-programmed reduction study of equilibrium fluid catalytic cracking (FCC) catalysts has shown three hydrogen-consumption peaks associated with contaminanted metals. A low-temperature peak, located near 510°C, is produced by the reduction of several components in the catalyst. Highly-dispersed vanadium contributes to this peak. A high-temperature peak, located near 800°C, is produced by reduction of nickel aluminate or nickel silicate compounds. A linear relationship exists between the area of the high-temperature peak and nickel concentration on equilibrium catalysts. An intermediate-temperature peak, located near 690°C, appears to be related to some form of vanadium compound. The intermediate-temperature peak does not occur on low-vanadium-concentration equilibrium catalysts, but is observed at higher vanadium-contamination levels. The presence of the 690°C peak was found by deconvoluting hydrogen-consumption data. The existence of this intermediate-temperature peak was proven by external reduction of highly-contaminated equilibrium catalyst at 500 and 700°C. External reduction at 500°C removes the low-temperature peak from the temperature-programmed reduction (TPR) spectrum. External reduction at 700°C removes both the low-temperature and intermediate-temperature peaks from the TPR spectrum. The difference in spectrum between calcined and 700°C reduced samples shows a clear spectrum with only the low and intermediate-temperature peaks present.
机译:对平衡流化催化裂化(FCC)催化剂进行的程序升温还原研究表明,与污染金属相关的三个氢消耗峰。通过还原催化剂中的几种成分可产生一个位于510°C附近的低温峰。高度分散的钒有助于该峰。通过还原铝酸镍或硅酸镍化合物可产生位于800°C附近的高温峰。高温峰的面积与平衡催化剂上的镍浓度之间存在线性关系。位于690°C附近的中间温度峰似乎与某种形式的钒化合物有关。在低钒浓度的平衡催化剂上不会出现中间温度峰,但在较高的钒污染水平下会观察到。通过对氢气消耗数据进行反卷积可以发现690°C峰的存在。通过在500和700°C下外部还原高度污染的平衡催化剂证明了该中间温度峰的存在。在500°C时进行外部还原可从程序升温还原(TPR)光谱中去除低温峰。在700°C时进行外部还原可从TPR光谱中同时去除低温和中温峰。煅烧样品和700°C还原样品之间的光谱差异显示出清晰的光谱,仅存在低温和中温峰。

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