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首页> 外文期刊>Journal of Materials Science >THERMAL DECOMPOSITION OF THE PB, AL-HYDROTALCITE MATERIAL
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THERMAL DECOMPOSITION OF THE PB, AL-HYDROTALCITE MATERIAL

机译:PB,水滑石材料的热分解

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The transformation of methane into C-2 hydrocarbons over thermally degraded Mg, Pb, Al-hydrotalcite material proceeds with the active participation of beta-PbO. The conditions of pre-treatment leading beta-PbO formation in the catalyst have been examined on the Pb, Al-hydrotalcite material as a model system. By use of X-ray diffraction, scanning electron microscopy, transmission electron microscopy, infrared spectroscopy and diffuse-reflectance spectroscopy techniques, it was found that the temperature interval 600-750 degrees C is optimal for beta-PbO crystallization. On the basis of the present and previous results, the formation of all components of the catalytically active thermally degraded Mg, Pb, Al-hydrotalcite material, has been explained. During calcination of the Mg, Pb, Al-hydrotalcite material, the lead-containing components form beta-PbO and gamma-Al2O3 and the magnesium-containing components transform to a finely dispersed MgO-Al2O3 matrix. [References: 16]
机译:在热降解的Mg,Pb,Al水滑石材料上,甲烷向C-2碳氢化合物的转化伴随着β-PbO的积极参与。已经在铅,铝水滑石材料作为模型系统上研究了导致催化剂中β-PbO形成的预处理条件。通过使用X射线衍射,扫描电子显微镜,透射电子显微镜,红外光谱和漫反射光谱技术,发现600-750℃的温度区间对于β-PbO结晶是最佳的。基于当前和先前的结果,已经解释了催化活性的热降解的Mg,Pb,Al-水滑石材料的所有组分的形成。在Mg,Pb,Al水滑石材料的煅烧过程中,含铅组分形成β-PbO和γ-Al2O3,并且含镁组分转变为精细分散的MgO-Al2O3基体。 [参考:16]

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