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首页> 外文期刊>International Journal of Quantum Chemistry >THE CRYSTAL STRUCTURE OF BA-BETA-ALUMINA MATERIALS FOR HIGH-TEMPERATURE CATALYTIC COMBUSTION
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THE CRYSTAL STRUCTURE OF BA-BETA-ALUMINA MATERIALS FOR HIGH-TEMPERATURE CATALYTIC COMBUSTION

机译:高温催化燃烧用Ba-BETA-氧化铝材料的晶体结构

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Structure refinement through Rietveld analysis has been performed on a series of Ba-Al-O samples with Al/Ba ratios in the range 9-14. This material is considered for its potential use in catalytic combustion. The results show that different beta-Al2O3-type structures are obtained upon calcination at 1670 K depending on the Al/Ba ratio. A beta(II)-Al2O3 phase forms for the lowest Al/Ba ratio and a beta(1)-Al2O3 forms for the highest one. Small amounts of additional phases are present in the samples with the border compositions. For an in-between composition (Al/Ba = 12) a monophasic sample is obtained with crystal structure and calculated cell parameters intermediate between those of beta(I) and beta(II). The sample with the intermediate composition exhibits the highest surface area. A strict relationship between surface area and aspect ratio of the crystallites has been observed. This indicates that the sintering resistance of these materials derives from the suppression of crystal growth along the crystallographic axis c. Experimental data also indicate that sintering resistance is closely related to Ba content. (C) 1995 Academic Press, Inc. [References: 25]
机译:通过Rietveld分析对一系列Al / Ba比例在9-14之间的Ba-Al-O样品进行了结构优化。考虑到该材料在催化燃烧中的潜在用途。结果表明,取决于Al / Ba比,在1670 K下煅烧可获得不同的β-Al2O3-型结构。对于最低的Al / Ba比,形成β(II)-Al2O3相,对于最高的Al / Ba比形成β(1)-Al2O3。带有边界成分的样品中存在少量附加相。对于中间组成(Al / Ba = 12),获得的单相样品的晶体结构和计算的细胞参数介于β(I)和β(II)之间。具有中间组成的样品表现出最高的表面积。已经观察到微晶的表面积和纵横比之间的严格关系。这表明这些材料的抗烧结性源自抑制沿晶轴c的晶体生长。实验数据还表明,耐烧结性与Ba含量密切相关。 (C)1995 Academic Press,Inc. [参考:25]

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