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Green and efficient organic-inorganic hybrid nanocatalyst for oxidative desulfurization of gasoline

机译:汽油氧化脱硫的绿色和高效有机无机杂交纳米催化剂

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摘要

A new organic-inorganic hybrid nanocomposite (TBA-Si2W18Mn4@SAB) was synthesized by supporting quaternary ammonium salt of sandwich-type polyoxometalate (TBA-Si2W18Mn4) on sodium-activated bentonite (SAB) for catalysing an oxidative desulfurization (ODS) process. The synthesized materials were characterized by means of elemental analysis, Si-29 NMR, Fourier transform infrared and UV-visible spectroscopies, X-ray diffraction and scanning electron microscopy. The proposed ODS process was successfully developed on the basis of the catalytic oxidation of organosulfur compounds using TBA-Si2W18Mn4@SAB as catalyst and CH3COOH/H2O2 as oxidizing agent. The removal of the sulfur content of gasoline reached 97% at a temperature of 35 degrees C after 1 h using 0.10 g of the prepared catalyst. Various experiments were conducted to investigate the effects of reaction time, catalyst amount, reaction temperature and catalyst type on sulfur removal efficiency. The heterogeneous TBA-Si2W18Mn4@SAB catalyst was found to be reusable for five times. The obtained data illustrated that the use of the TBA-Si2W18Mn4@SAB/CH3COOH/H2O2 oxidation system could be a convenient strategy for reducing the sulfur content of gasoline fuel under moderate reaction conditions.
机译:通过在钠活化的膨润土(SAB)上支持含三明化型多氧化酯酸盐(TBA-Si2W18MN4)的季铵盐,合成了一种新的有机无机杂化纳米复合材料(TBA-Si2W18MN4 //6SAB),用于催化氧化脱硫(ODS)方法。通过元素分析,Si-29 NMR,傅立叶变换红外和UV可见光谱,X射线衍射和扫描电子显微镜,其特征在于合成材料。在使用TBA-Si2w18MN4 /αaab作为催化剂和CH 3 COOH / H 2 O 2作为氧化剂,基于有机硫化合物的催化氧化成功开发了所提出的ODS方法。在使用0.10g制备的催化剂的1小时后,在35℃的温度下去除汽油的硫含量达到97%。进行各种实验以研究反应时间,催化剂量,反应温度和催化剂类型对硫去除效率的影响。发现非均相TBA-Si2W18MN4 / Sab催化剂可重复使用五次。所获得的数据示出了使用TBA-Si2w18MN4 / H 2 O 2氧化系统的使用可以是在中等反应条件下降低汽油燃料的硫含量的方便策略。

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