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Methanol Partial Oxidation on MoO3/SiO2 Catalysts: Application of Vibrational Spectroscopic Imaging Techniques in a High Throughput Operando Reactor

机译:MoO3 / SiO2催化剂上的甲醇部分氧化:振动光谱成像技术在高通量Operando反应器中的应用

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摘要

A home-built, high-throughput ope rondo (HTO) reactor was applied to study methanol partial oxidation reaction over MoO3/SiO2 catalysts. This HTO reactor combines Fourier transform infrared (FT-IR) imaging and Raman spectroscopy for high throughput catalyst evaluation and simultaneously for catalyst characterization under operando conditions. The catalyst activity and selectivity of all parallel reaction channels were followed at a time resolution of 2-20 s by the FT-IR imaging system that offers a spatial resolution of 16,384 pixels over a 2 x 2 inches illuminated cross-section area. Six specialized Raman probes were used to simultaneously collect Raman spectra of the catalyst surfaces and reaction intermediates under operando conditions. The structural variation of the MoO3/SiO2 catalysts with different molybdenum loadings and their catalytic performance at various temperatures were determined. The HTO reactor with the integrated imaging techniques allowed us to track the catalytic activities and the surface morphologies for multiple samples under various operando conditions.
机译:应用国产高通量旋风分离器(HTO)研究MoO3 / SiO2催化剂上甲醇的部分氧化反应。该HTO反应器结合了傅里叶变换红外(FT-IR)成像和拉曼光谱,可进行高通量催化剂评估,同时可在操作条件下表征催化剂。 FT-IR成像系统以2-20 s的时间分辨率跟踪所有平行反应通道的催化剂活性和选择性,该系统在2 x 2英寸的照明横截面上提供16384像素的空间分辨率。在操作条件下,使用六个专门的拉曼探针同时收集催化剂表面和反应中间体的拉曼光谱。确定了不同钼含量的MoO3 / SiO2催化剂的结构变化及其在不同温度下的催化性能。具有集成成像技术的HTO反应器使我们能够跟踪多种操作条件下多个样品的催化活性和表面形态。

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