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High-Resolution Single-Molecule Fluorescence Imaging of Zeolite Aggregates within Real-Life Fluid Catalytic Cracking Particles

机译:现实生活中流体催化裂化颗粒中沸石聚集体的高分辨率单分子荧光成像。

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摘要

Fluid catalytic cracking (FCC) is a major process in oil refineries to produce gasoline and base chemicals from crude oil fractions. The spatial distribution and acidity of zeolite aggregates embedded within the 50–150 μm-sized FCC spheres heavily influence their catalytic performance. Single-molecule fluorescence-based imaging methods, namely nanometer accuracy by stochastic chemical reactions (NASCA) and super-resolution optical fluctuation imaging (SOFI) were used to study the catalytic activity of sub-micrometer zeolite ZSM-5 domains within real-life FCC catalyst particles. The formation of fluorescent product molecules taking place at Brønsted acid sites was monitored with single turnover sensitivity and high spatiotemporal resolution, providing detailed insight in dispersion and catalytic activity of zeolite ZSM-5 aggregates. The results point towards substantial differences in turnover frequencies between the zeolite aggregates, revealing significant intraparticle heterogeneities in Brønsted reactivity.
机译:流化催化裂化(FCC)是炼油厂从原油馏分生产汽油和基础化学品的主要工艺。嵌入在50-150μm大小的FCC球中的沸石聚集体的空间分布和酸度严重影响其催化性能。基于单分子荧光的成像方法,即通过随机化学反应的纳米精度(NASCA)和超分辨率光学涨落成像(SOFI),用于研究现实生活中的FCC中亚微米沸石ZSM-5域的催化活性。催化剂颗粒。用单一转换灵敏度和高时空分辨率监测在布朗斯台德酸位点发生的荧光产物分子的形成,从而提供了对沸石ZSM-5聚集体的分散性和催化活性的详细了解。结果表明,沸石聚集体之间的周转频率存在显着差异,这表明布朗斯台德反应性中存在明显的颗粒内异质性。

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