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In situ Raman investigation of the preparation of HDS catalyst precursors using scCO(2)

机译:原位拉曼使用SCCO制备HDS催化剂前体的制备(2)

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摘要

Catalysts used to remove sulfur from petroleum cuts are mainly based on molybdenum disulfides dispersed on alumina carrier with cobalt or nickel atoms decorating the edges of the molybdenum disulfides slabs. In this study, we proposed a novel synthesis route for these materials assisted by supercritical carbon dioxide (scCO(2)), with the aim to disperse molybdenum and cobalt onto alumina support. This article describes a method to follow the preparation of these catalyst precursors, via the use of in situ Raman spectroscopy. This enables the monitoring of the evolution of the oxometallic species present on the surface of the support as a function of the preparation conditions. Raman spectra recorded as a function of temperature during the synthesis and ex situ X-Ray diffraction characterizations put in evidence that the use of scCO(2) to disperse active phases on the Al2O3 support led to different species compared to a conventional drying.
机译:用于除去石油切口硫的催化剂主要基于用钴或镍原子分散在氧化铝载体上的钼二硫化物,所述钴或镍原子装饰钼二硫化物板坯的边缘。 在这项研究中,我们提出了一种通过超临界二氧化碳(SCCO(2))辅助这些材料的新型合成途径,其目的是将钼和钴分散到氧化铝载体上。 本文通过使用原位拉曼光谱来介绍一种遵循制备这些催化剂前体的方法。 这使得能够监测作为制备条件的函数的载体表面上存在的氧化物物种的演变。 作为在合成期间的温度的函数和出原位X射线衍射特征记录的拉曼光谱表明,与常规干燥相比,使用SCCO(2)在Al 2 O 3支撑件上分散有源相。

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