首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >A detailed speciation of iron on FCC catalysts based on an integrated use of advanced characterisation methods and thermodynamic equilibrium simulation
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A detailed speciation of iron on FCC catalysts based on an integrated use of advanced characterisation methods and thermodynamic equilibrium simulation

机译:基于先进特征方法和热力学平衡模拟的综合使用,对FCC催化剂的铁对FCC催化剂的详细形式

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摘要

This paper aims to characterise six spent and equilibrated catalysts (Ecats) collected from two different fluid catalytic cracking (FCC) units. Apart from bench-scale facilities including Mossbauer spectroscopy, XPS, XRD and SEM-EDS, synchrotron X-ray Adsorption Spectroscopy (XAS) was used to investigate the speciation of iron (Fe), vanadium (V) and sulphur (S), their spatial distribution across each single catalyst and variation between the two refineries. Additionally, thermodynamic equilibrium calculations were performed to elaborate the probable formation mechanisms. As have been confirmed, the oxidation state of iron varies greatly between top surface and bulk of each catalyst, and between the samples collected from different refineries. Fe2+ is predominant in the catalysts collected from the refinery with a partial combustion regenerator. It is also in higher concentration inside a catalyst than on the surface, and preferentially combined with other metallic contaminants on the Al3+-centred active sites, causing the deactivation of the catalysts.
机译:本文旨在表征由两种不同流体催化裂化(FCC)单元收集的六种花费和平衡催化剂(Ecats)。除了包括Mossbauer光谱,XPS,XRD和Sem-ED的板凳规模设施外,Synchrotron X射线吸附光谱(XAs)用于研究铁(Fe),钒(V)和硫(S)的形态每种催化剂的空间分布和两个炼油厂之间的变化。另外,进行热力学平衡计算以详细说明可能的形成机制。如已经证实的,铁的氧化状态在每种催化剂的顶表面和大量的顶部表面和大量之间变化,并且在不同炼油厂收集的样品之间。 Fe2 +在用部分燃烧再生器从炼油厂收集的催化剂中占主导地位。它在催化剂内的浓度高于表面,并且优先与Al3 + - 契约的活性位点上的其他金属污染物结合,从而导致催化剂的失活。

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