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X-ray Fluorescence Tomography of Aged Fluid-Catalytic-Cracking Catalyst Particles Reveals Insight into Metal Deposition Processes

机译:老化的流化催化裂化催化剂颗粒的X射线荧光层析成像揭示了对金属沉积过程的了解

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摘要

Microprobe X-ray fluorescence tomography was used to investigate metal poison deposition in individual, intact and industrially deactivated fluid catalytic cracking (FCC) particles at two differing catalytic life-stages. 3 D multi-element imaging, at submicron resolution was achieved by using a large-array Maia fluorescence detector. Our results show that Fe, Ni and Ca have significant concentration at the exterior of the FCC catalyst particle and are highly co-localized. As concentrations increase as a function of catalytic life-stage, the deposition profiles of Fe, Ni, and Ca do not change significantly. V has been shown to penetrate deeper into the particle with increasing catalytic age. Although it has been previously suggested that V is responsible for damaging the zeolite components of FCC particles, no spatial correlation was found for V and La, which was used as a marker for the embedded zeolite domains. This suggests that although V is known to be detrimental to zeolites in FCC particles, a preferential interaction does not exist between the two.
机译:Microprobe X射线荧光层析成像用于研究在两个不同催化寿命阶段中单个,完整和工业停用的流体催化裂化(FCC)颗粒中的金属毒物沉积。通过使用大型阵列Maia荧光检测器可实现亚微米分辨率的3D D多元素成像。我们的结果表明,Fe,Ni和Ca在FCC催化剂颗粒的外部具有明显的浓度,并且高度共定位。随着浓度随着催化寿命的增加而增加,Fe,Ni和Ca的沉积曲线不会发生明显变化。已经表明,随着催化寿命的增加,V会更深地渗透到颗粒中。尽管先前已经提出V负责破坏FCC颗粒的沸石组分,但未发现V和La的空间相关性,V和La被用作嵌入沸石域的标记。这表明尽管已知V对FCC颗粒中的沸石有害,但两者之间不存在优先相互作用。

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