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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Single and combined Fluidized Catalytic Cracking (FCC) catalyst deactivation by iron and calcium metal-organic contaminants
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Single and combined Fluidized Catalytic Cracking (FCC) catalyst deactivation by iron and calcium metal-organic contaminants

机译:铁和钙金属有机污染物对单一和组合流化催化裂化(FCC)催化剂的钝化作用

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摘要

The single and combined effects on catalyst stability, activity and selectivity of iron and calcium metal-organic contaminants deposited on a fluidized catalytic cracking (FCC) catalyst via a cyclic deactivation treatment have been studied. It has been found that iron contamination decreases catalyst activity by two different mechanisms. At low iron concentration the deactivation is mainly due to the direct poisoning of acid sites while at higher iron concentration the deactivation is mainly due to pore blocking. Moreover, iron clusters formed on FCC catalyst particles catalyze dehydrogenation reactions which lead to a higher coke selectivity. Calcium contamination is also at the origin of a large deactivation of the FCC catalyst which occurs by neutralizing acid sites and in a large extension by lowering the hydrothermal stability, at the origin of an important collapse of the zeolitic component. The combined contamination by iron and calcium does not show synergetic effects. Nevertheless, the fact that coke formation increases with iron can enhance the catalyst temperature in the industrial regenerator/leading to a further negative effect of calcium via zeolite destruction.
机译:研究了通过循环失活处理沉积在流化催化裂化(FCC)催化剂上的铁和钙金属有机污染物对催化剂稳定性,活性和选择性的单一和综合影响。已经发现铁污染通过两种不同的机理降低了催化剂的活性。在低铁浓度下,失活主要是由于酸性部位的直接中毒,而在高铁浓度下,失活主要是由于孔阻塞。而且,在FCC催化剂颗粒上形成的铁簇催化脱氢反应,从而导致更高的焦炭选择性。钙污染也是FCC催化剂的大量失活的起点,该失活是通过中和酸位而发生的,并且在很大范围内是通过降低水热稳定性而发生的,这是沸石组分的重要塌陷的起点。铁和钙的综合污染没有显示协同作用。然而,随着铁焦炭形成增加的事实可以提高工业再生器中的催化剂温度/导致通过沸石破坏而引起的钙的进一步负面作用。

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