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Mechanistic Studies on the Coupled Reaction of n-Hexane and Ethanol Over HZSM-5 Zeolite Catalyst

机译:HZSM-5沸石催化剂上正己烷与乙醇偶联反应的机理研究

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The coupled reaction of n-hexane and ethanol over HZSM-5 zeolite has been, for the first time, investigated with a pulse-reaction system. The catalytic reaction results showed an improvement of the initial conversion activity of n-hexane when ethanol was introduced as co-reactant. The FT-IR analysis revealed that the ethanol molecules adsorbed on Bronsted acidic sites were immediately transformed into surface ethoxy groups, which were active species for converting n-hexane and improving the initial conversion activity of n-hexane by a bimolecular hydride transfer mode. Also, the catalytic tests suggested that alkenes resulting from the transformation of ethanol could not enhance the initial conversion of n-hexane compared to active ethoxy groups at the shortest contact time. A mechanism involving the ethoxy groups was proposed to understand the coupled reaction of ethanol and n-hexane.
机译:正己烷和乙醇在HZSM-5沸石上的偶合反应已首次通过脉冲反应系统进行了研究。催化反应结果表明,当引入乙醇作为共反应剂时,正己烷的初始转化活性得到改善。 FT-IR分析表明,吸附在布朗斯台德酸性位点上的乙醇分子立即转化为表面乙氧基,这是通过双分子氢化物转移模式转化正己烷并提高正己烷初始转化活性的活性物种。而且,催化试验表明,与乙醇在最短的接触时间相比,乙醇转化产生的烯烃不能提高正己烷的初始转化率。为了理解乙醇和正己烷的偶联反应,提出了一种涉及乙氧基的机理。

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