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Preparation, characterisation and catalytic property of ultrafine Ce–La–Mn mixed oxides

机译:Ce-La-Mn超细混合氧化物的制备,表征和催化性能

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Using cerium carbonate, lanthanum oxide and manganese nitrate as raw materials, ultrafine particles of Ce–La–Mn mixed oxides were prepared by the sol–gel method combined with supercritical drying technology. The prepared materials were characterised by thermo-gravimetric and differential thermal analysis, X-ray diffraction, Fourier transform infrared spectroscopy and transmission electron microscope. The catalytic properties of ultrafine Ce–La–Mn mixed oxides were tested by the reaction ‘2CO?+?2NO?=?2CO_(2)?+?N_(2)’. The key aim was to examine the effect of supercritical fluid drying technology and Ce-doping on the crystal structure, morphology and catalytic activity of ultrafine Ce–La–Mn mixed oxides. The results show that at 260°C, Ce–La–Mn mixed oxides are brown loose flocculent powders with good dispersibility. The particles are spherical about 10?nm in size. The main crystal components are CeO_(2), MnO, La_(5)O_(7)NO_(3) and La(OH)_(2)NO_(3). After thermal treating at 850°C, Ce–La–Mn mixed oxides were made up of plenty of quasi-global grains smaller than 20?nm; the main crystal components of the Ce–La–Mn mixed oxides are LaMnO_(3+) _(λ) , La_(2)O_(3) and CeO_(2); heat treatment can enhance the crystallinity of the materials. Cerium-doped mixtures just exist as crystal CeO_(2), which contributes to the crystallisation of Ce–La–Mn mixed oxides in the process of supercritical fluid drying at 260°C, enhancing the catalytic activity of ultrafine Ce–La–Mn mixed oxides which are thermal treated at 850°C.
机译:以碳酸铈,氧化镧和硝酸锰为原料,通过溶胶-凝胶法结合超临界干燥技术制备了Ce-La-Mn混合氧化物超细颗粒。通过热重和差热分析,X射线衍射,傅立叶变换红外光谱和透射电子显微镜对所制备的材料进行表征。通过反应“ 2CO2 +?2NO?=?2CO_(2)?+?N_(2)”测试了超细Ce-La-Mn混合氧化物的催化性能。关键目的是研究超临界流体干燥技术和Ce掺杂对超细Ce-La-Mn复合氧化物的晶体结构,形态和催化活性的影响。结果表明,在260°C时,Ce-La-Mn混合氧化物为棕色疏松絮状粉末,具有良好的分散性。颗粒是球形的,尺寸约为10?nm。主要晶体成分是CeO_(2),MnO,La_(5)O_(7)NO_(3)和La(OH)_(2)NO_(3)。经过850°C的热处理后,Ce-La-Mn混合氧化物由大量小于20?nm的准全球晶粒组成。 Ce–La–Mn复合氧化物的主要晶体成分为LaMnO_(3+) _(λ),La_(2)O_(3)和CeO_(2);热处理可以增强材料的结晶度。掺铈的混合物仅以晶体CeO_(2)的形式存在,这有助于在260°C下超临界流体干燥过程中Ce-La-Mn混合氧化物的结晶,从而增强了超细Ce-La-Mn混合氧化物的催化活性。在850℃下热处理的氧化物。

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