首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Thermal activation of copper oxide based upon the copper hydrotalcites of the type CuxZn6-xCr2(OH)(16)(CO3)center dot 4H(2)O
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Thermal activation of copper oxide based upon the copper hydrotalcites of the type CuxZn6-xCr2(OH)(16)(CO3)center dot 4H(2)O

机译:基于CuxZn6-xCr2(OH)(16)(CO3)中心点4H(2)O型铜水滑石的氧化铜热活化

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A combination of differential scanning calorimetry (DSC) and high-resolution differential thermogravimetric analysis (DTGA) coupled to a gas evolution mass spectrometer has been used to study the thermal properties of a chromium based series of Cu/Zn hydrotalcites of formulae CuxZn6-xCr2(OH)(16)(CO3).4H(2)O where x varied from 6 to 0. The spacing for the Cu6Cr2(OH)(16)(CO3).4H(2)O hydrotalcite is 6.95 Angstrom which decreases to 6.69 Angstrom with two moles of Zn substitution. The effect of cation substitution is small on the interlayer space. The variation was 0.26 Angstrom. Crystallite size was found to be cation dependent. The larger sizes were observed for the zinc substituted hydrotalcites. It is observed that that the sum of the mass spectrometric curves of water and carbon dioxide matches precisely the differential thermogravimetric (DTG) curve. The effect of increased Zn composition results in the increase of the endotherms and weight loss steps to higher temperatures. Evolved gas mass spectrometry shows that water is lost in a number of steps and that the interlayer carbonate anion is lost simultaneously with hydroxyl units. Hydrotalcites in which M2+ consist of Cu, Ni or Co form important precursors for mixed metal-oxide catalysts. The application of these mixed metal oxides is in the wet catalytic oxidation of low concentrations of retractable organics in water. Therefore, the thermal behavior of synthetic hydrotalcites, CuxZn6-xCr2(OH)(16)CO3.nH(2)O was studied by thermal analysis techniques in order to determine the correct temperatures for the synthesis of the mixed metal oxides. (C) 2003 Elsevier B.V. All rights reserved. [References: 20]
机译:差示扫描量热法(DSC)和高分辨率差示热重分析(DTGA)结合气体发生质谱仪已用于研究基于铬的一系列Cu / Zn水滑石的热性质,分子式为CuxZn6-xCr2( OH)(16)(CO3).4H(2)O,其中x从6变为0。Cu6Cr2(OH)(16)(CO3).4H(2)O水滑石的间距为6.95埃,减小至6.69埃具有两摩尔锌取代基的埃。阳离子取代对层间空间的影响很小。变化为0.26埃。发现微晶尺寸是阳离子依赖性的。对于锌取代的水滑石,观察到较大的尺寸。可以看出,水和二氧化碳的质谱曲线之和与差示热重(DTG)曲线精确匹配。 Zn组成增加的结果导致吸热增加,并且降低了向更高温度的失重步骤。演变的气体质谱分析表明,水在许多步骤中损失,并且层间碳酸根阴离子与羟基单元同时损失。 M2 +由Cu,Ni或Co组成的水滑石形成了混合金属氧化物催化剂的重要前体。这些混合的金属氧化物的应用是对水中低浓度的可收缩有机物进行湿式催化氧化。因此,通过热分析技术研究了合成水滑石CuxZn6-xCr2(OH)(16)CO3.nH(2)O的热行为,以确定合成金属氧化物的正确温度。 (C)2003 Elsevier B.V.保留所有权利。 [参考:20]

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