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首页> 外文期刊>Russian Journal of Physical Chemistry >Effect of structure and surface properties on the catalytic activity of nanodiamond in the conversion of 1,2-dichloroethane
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Effect of structure and surface properties on the catalytic activity of nanodiamond in the conversion of 1,2-dichloroethane

机译:结构和表面性质对1,2-二氯乙烷转化中纳米金刚石催化活性的影响

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摘要

The catalytic activity of a detonation nanodiamond and its Ni-containing forms in the conversion of 1,2-dichloroethane is studied and compared with the activity of other carbon and nanocarbon materials: carbon nanotubes, "Dalan" synthetic diamond, and fluorinated graphite. The surface and structure of the carbon materials are characterized using XRD, diffuse reflectance IR spectroscopy, XPS, BET, and TPR. The catalytic properties of the materials are studied using the pulsed microcatalytic method. It is found that the synthetic diamond, the nanodiamond, and its Ni-containing forms are catalysts for dichloroethane conversion in a nitrogen atmosphere, where the main product is ethylene. It is noted that the catalytic activity of deactivated diamond catalysts is restored after hydrogen treatment. It is shown that the carbon structure of the nanodiamond and the "Dalan" synthetic diamond with hydrogen groups located on it plays a key role in the dichloroethane conversion. It is found that the nanodiamond acts simultaneously as a catalyst and an adsorbent of chlorine-containing products of dichloroethane conversion.
机译:研究了爆轰纳米金刚石及其含镍形式在1,2-二氯乙烷转化中的催化活性,并将其与其他碳和纳米碳材料的活性进行了比较:碳纳米管,“ Dalan”合成金刚石和氟化石墨。碳材料的表面和结构使用XRD,漫反射红外光谱,XPS,BET和TPR进行表征。使用脉冲微催化方法研究了材料的催化性能。发现合成金刚石,纳米金刚石及其含镍形式是在氮气氛中二氯乙烷转化的催化剂,其中主要产物是乙烯。应当指出,在氢气处理之后,失活的金刚石催化剂的催化活性得以恢复。结果表明,纳米金刚石和位于其上具有氢基的“ Dalan”合成金刚石的碳结构在二氯乙烷转化中起关键作用。发现纳米金刚石同时充当二氯乙烷转化的含氯产物的催化剂和吸附剂。

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