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Deoxydesulfurization of dibenzothiophene sulfone over cesium/MCM-41 catalysts

机译:铯/ MCM-41催化剂上二苯并噻吩砜的脱氧脱硫

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Dibenzothiophene sulfone, one of the products of the oxidative desulfurization of heavy oil, can be utilized through catalytic cracking. The object of the present study is to provide Cs/MCM-41 catalysts for the removal of sulfur dioxide from dibenzothiophene sulfone. Cesium oxide was deposited via an impregnation method on MCM-41, and the catalytic performances of the samples were investigated during the deoxydesulfurization of dibenzothiophene sulfone to biphenyl and sulfur dioxide gas. The influence of cesium loading on the basic properties of MCM-41 was estimated by the temperature-programmed desorption of carbon dioxide. The dibenzothiophene sulfone conversions of the MCM-41, Cs(1 wt%)/MCM-41, Cs(3 wt%)/MCM-41 and Cs(10 wt%)/MCM-41 catalysts were 38.5, 52.1, 72.4 and 40.9%, respectively, which implies that the Cs(3 wt%)/MCM-41 catalyst has the highest activity. This result agrees with the finding of the basicity enhancement of MCM-41 with the addition of cesium, in which Cs(3 wt%)/MCM-41 exhibited a maximum number of basic sites.
机译:重油氧化脱硫的产物之一二苯并噻吩砜可通过催化裂化来利用。本研究的目的是提供用于从二苯并噻吩砜中除去二氧化硫的Cs / MCM-41催化剂。通过浸渍法将氧化铯沉积在MCM-41上,并在二苯并噻吩砜砜脱氧脱硫为联苯和二氧化硫气体的过程中研究了样品的催化性能。铯负载对MCM-41基本性能的影响是通过温度程序控制的二氧化碳脱附估算的。 MCM-41,Cs(1 wt%)/ MCM-41,Cs(3 wt%)/ MCM-41和Cs(10 wt%)/ MCM-41催化剂的二苯并噻吩砜转化率分别为38.5、52.1、72.4和分别为40.9%,这表明Cs(3 wt%)/ MCM-41催化剂具有最高的活性。该结果与添加铯的MCM-41的碱度提高的发现一致,其中铯(3wt%)/ MCM-41表现出最大的碱性位点。

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