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Nanocrystalline Mixed Oxides Containing Magnesium Prepared by a Combined Sol-Gel and Self-Combustion Method for Catalyst Applications

机译:溶胶-凝胶和自燃相结合制备的含镁纳米晶混合氧化物在催化剂中的应用

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MgFe2O4 spinel ferrite and La0.6Pb0.2Mg0.2MnO3 perovskite nanopowders were synthesized by a combined sol-gel and self-combustion method and heat treatment. The morphological and structural characterization of the obtained powders has been performed with various techniques: X-ray diffraction (XRD), SEM observations, EDAX spectroscopy and BET analysis. The samples have been catalytically tested in flameless combustion reaction of acetone, benzene, propane and Pb free gasoline at atmospheric pressure. The results revealed a higher catalytic activity of La0.6Pb0.2Mg0.2 MnO3 perovskite than that of MgFe2O4 ferrite. This higher catalytic activity can be ascribed to smaller crystallite size (27 nm), larger surface area (8.5 m2/g) and the presence of manganese cations with variable valence (Mn3+ - Mn4+). The current results suggest that La0.6Pb0.2Mg0.2MnO3 perovskite is preferable to the Mg ferrite and that it can be a promising catalyst for acetone and propane combustion at low temperatures. ?
机译:通过溶胶-凝胶结合自燃和热处理的方法合成了MgFe2O4尖晶石铁氧体和La0.6Pb0.2Mg0.2MnO3钙钛矿纳米粉。所获得粉末的形态和结构表征已通过多种技术进行:X射线衍射(XRD),SEM观察,EDAX光谱和BET分析。样品已在大气压下在丙酮,苯,丙烷和无铅汽油的无焰燃烧反应中进行了催化测试。结果表明,La0.6Pb0.2Mg0.2 MnO3钙钛矿的催化活性高于MgFe2O4铁氧体。这种较高的催化活性可以归因于较小的微晶尺寸(27 nm),较大的表面积(8.5 m2 / g)和存在化合价(Mn3 +-Mn4 +)的锰阳离子。目前的结果表明,La0.6Pb0.2Mg0.2MnO3钙钛矿优于Mg铁氧体,并且它可能是低温下丙酮和丙烷燃烧的有前途的催化剂。 ?

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