首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Characterization and catalytic investigation of NO plus CO reaction on perovskites of the general formula LaxM1-xFeO3 (M = Sr and/or Ce) prepared via a reverse micelles microemulsion route
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Characterization and catalytic investigation of NO plus CO reaction on perovskites of the general formula LaxM1-xFeO3 (M = Sr and/or Ce) prepared via a reverse micelles microemulsion route

机译:反相胶束微乳液法制备通式LaxM1-xFeO3(M = Sr和/或Ce)钙钛矿的NO + CO反应的表征和催化研究

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Four different perovskite type solids with nominal composition LaFeO3 (LFOr), La0.85Sr0.15FeO3 (LSFOr), La0.8Sr0.1Ce0.1FeP3 (LSCFOr) and La0.8Ce0.2FeO3 (LCFOr) were prepared via a reverse micelles microemulsion route. The aim of this work was to investigate the effect of doping with Sr and Ce in the structural properties, surface area and catalytic properties of final solids in comparison with the undoped reference solid LaFeO3. The microemulsion system which was used is composed of cetyl-trimethyl-ammonium-bromide (CTAB), 1-butanol, n-octane and nitrate salts of the metals. XRD measurements combined with Rietveld analysis helped us to identify the % quantity of structural phases which were formed. Scanning electron microscopy (SEM) images showed that the obtained solids consist of nanoparticles in the range of 20-80 run. BET experiments showed that-the final solids achieve much higher specific surface area (ssa) (30-61 m(2)/g) than similar solids which have been prepared by other methods. Catalytic tests in NO + CO reaction were made with the use of gases He/NO/CO in the ratio 96/2/2 with a total flow rate of 100 cm(3)/min. The full sequence of catalytic activity of tested solids is LCFOr > LSCFOr > LSFOr > LFOr and this sequence is in full agreement with the sequence of increment of ssa of the solids. (C) 2006 Elsevier B.V. All rights reserved.
机译:通过反胶束微乳化路线制备了四种标称组成为LaFeO3(LFOr),La0.85Sr0.15FeO3(LSFOr),La0.8Sr0.1Ce0.1FeP3(LSCFOr)和La0.8Ce0.2FeO3(LCFOr)的钙钛矿型固体。这项工作的目的是研究与未掺杂参比固体LaFeO3相比,掺杂Sr和Ce对最终固体的结构性质,表面积和催化性质的影响。使用的微乳液系统由十六烷基三甲基溴化铵(CTAB),1-丁醇,正辛烷和金属硝酸盐组成。 XRD测量与Rietveld分析相结合,帮助我们确定了所形成的结构相的百分比。扫描电子显微镜(SEM)图像显示,获得的固体由20-80nm范围内的纳米颗粒组成。 BET实验表明-最终固体比通过其他方法制备的类似固体具有更高的比表面积(ssa)(30-61 m(2)/ g)。使用气体He / NO / CO的比例为96/2/2,总流速为100 cm(3)/ min,进行了NO + CO反应的催化测试。被测固体的催化活性的完整序列为LCFOr> LSCFOr> LSFOr> LFOr,并且该序列与固体的ssa增量序列完全一致。 (C)2006 Elsevier B.V.保留所有权利。

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