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Mixed oxides obtained from Co and Mn containing layered double hydroxides: Preparation, characterization, and catalytic properties

机译:由含钴和锰的层状双氢氧化物获得的混合氧化物:制备,表征和催化性能

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Co-Mn-Al layered double hydroxides (LDHs) with various Co:Mn:Al molar ratios (4:2:0, 4:1.5:0.5, 4:1:1, 4:0.5:1.5, and 4:0:2) were prepared and characterized. Magnesium containing LDHs Co-Mg-Mn (2:2:2), Co-Mg-Mn-Al (2:2: 1: 1), and Co-Mg-Al (2:2:2) were also studied. Thermal decomposition of prepared LDHs and formation of related mixed oxides were studied using high-temperature Xray powder diffraction and thermal analysis. The thermal decomposition of Mg-free LDHs starts by their partial dehydration accompanied by shrinkage of the lattice parameter c from ca. 0.76 to 0.66 nm. The dehydration temperature of the Co-Mn-Al LDHs decreases with increasing Mn content from 180 degrees C in Co-Al sample to 120 degrees C in sample with Co:Mn:Al molar ratio of 4:1.5:0.5. A subsequent step is a complete decomposition of the layered structure to nanocrystalline spinel, the complete dehydration, and finally decarbonation of the mixed oxide phase. Spinel-type oxides were the primary crystallization products. Mg-containing primary spinels had practically empty tetrahedral cationic sites. A dramatic increase of the spinel cell size upon heating and analysis by Raman spectroscopy revealed a segregation of Co-rich spinel in Co-Mn and Co-Mn-Al specimens. In calcination products obtained at 500 degrees C, the spinel mean coherence length was 5-10 nm, and the total content of the X-ray diffraction crystalline portion was 50-90%. These calcination products were tested as catalysts in the total oxidation of ethanol and decomposition of N2O. The catalytic activity in ethanol combustion was enhanced by increasing (Co + Mn) content while an optimum content of reducible components was necessary for high activity in N2O decomposition, where the highest conversions were found for calcined Co-Mn-Al sample with Co:Mn:Al molar ratio of 4: 1: 1. (C) 2005 Elsevier Inc. All rights reserved.
机译:具有各种Co:Mn:Al摩尔比(4:2:0、4:1.5:0.5、4:1:1、4:0.5:1.5和4:0:4的Co-Mn-Al层状双氢氧化物(LDH) 2)准备并表征。还研究了含镁的LDHs Co-Mg-Mn(2:2:2),Co-Mg-Mn-Al(2:2:1:1)和Co-Mg-Al(2:2:2)。使用高温X射线粉末衍射和热分析研究了制备的LDH的热分解和相关混合氧化物的形成。无镁LDHs的热分解始于它们的部分脱水,伴随着晶格参数c从ca的收缩。 0.76至0.66 nm。 Co-Mn-Al LDH的脱水温度随着Mn含量的增加而降低,从Co-Al样品中的180摄氏度到Co:Mn:Al摩尔比为4:1.5:0.5的样品中的120摄氏度。后续步骤是将层状结构完全分解为纳米晶尖晶石,完全脱水,最后使混合氧化物相脱碳。尖晶石型氧化物是主要的结晶产物。含镁的尖晶石几乎没有空的四面体阳离子位。加热和通过拉曼光谱分析后,尖晶石晶胞尺寸的急剧增加揭示了富钴尖晶石在Co-Mn和Co-Mn-Al样品中的分离。在500℃下获得的煅烧产物中,尖晶石平均相干长度为5-10nm,并且X射线衍射结晶部分的总含量为50-90%。测试了这些煅烧产物作为乙醇完全氧化和N2O分解的催化剂。乙醇燃烧的催化活性通过增加(Co + Mn)含量而增强,而可还原组分的最佳含量对于N2O分解中的高活性是必需的,其中以Co:Mn煅烧的Co-Mn-Al样品的转化率最高。 :Al的摩尔比为4∶1∶1。(C)2005 Elsevier Inc.保留所有权利。

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