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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Oxidative conversion of propane in a microreactor in the presence of plasma over MgO-based catalysts: An experimental study
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Oxidative conversion of propane in a microreactor in the presence of plasma over MgO-based catalysts: An experimental study

机译:基于MgO的催化剂在等离子体存在下在微反应器中丙烷的氧化转化:一项实验研究

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摘要

In this work, oxidative cracking of propane was studied in a microreactor containing a catalyst. A dielectric barrier discharge (DBD) allows one to generate a cold microplasma, which activates propane forming radicals, at room temperature and atmospheric pressure. Homogeneous and well crystalline thin layers of MgO and Li/MgO catalysts, 25 mu m thicknesses, were deposited in the microchannel using sol-gel method and by micropipetting. Li/MgO catalyst showed higher propane conversion and olefins selectivity compared to MgO. The latter one suggests that (i) radicals formed by DBD in gas phase are differently terminated depending on the catalyst surface and (ii) the surface of Li/MgO catalyst present more selective sites than MgO, such as [Li+O-] centers and F-type defects that are generated and able to react at room temperature. Surprisingly large amounts of products with higher molecular weight than propane, that is, C-4, C-4(+) were also observed due to only C-C bond formation.
机译:在这项工作中,在含催化剂的微反应器中研究了丙烷的氧化裂解。介电势垒放电(DBD)可使人们在室温和大气压下产生冷微等离子体,从而激活丙烷形成自由基。使用溶胶-凝胶法和微量移液将厚度为25μm的MgO和Li / MgO催化剂的均质且结晶良好的薄层沉积在微通道中。与MgO相比,Li / MgO催化剂显示出更高的丙烷转化率和烯烃选择性。后者表明(i)气相DBD形成的自由基根据催化剂表面的不同而终止,并且(ii)Li / MgO催化剂的表面具有比MgO更多的选择性位点,例如[Li + O-]中心以及在室温下会发生反应的F型缺陷。出乎意料的是,由于仅形成C-C键,还观察到大量具有比丙烷更高的分子量的产物,即C-4,C-4(+)。

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