首页> 外文期刊>Journal of Catalysis >Hydrodechlorination of dichloromethane with mono- and bimetallic Pd-Pt on sulfated and tungstated zirconia catalysts
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Hydrodechlorination of dichloromethane with mono- and bimetallic Pd-Pt on sulfated and tungstated zirconia catalysts

机译:在硫酸盐化和钨酸化的氧化锆催化剂上用单金属和双金属Pd-Pt对二氯甲烷进行加氢脱氯

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摘要

Monometallic (Pt or Pd) and bimetallic (Pt-Pd) catalysts supported on zirconia promoted with sulfate (SZ) or tungsten oxide (WZ) were prepared and tested in the gas-phase hydrodechlorination of dichloromethane. The catalysts showed a high selectivity to non-chlorinated products (between 80% and 90% at 250 °C) being methane the main reaction product. As a general trend, the WZ catalysts yielded significantly higher dichloromethane conversion than the SZ ones, yielding all the catalysts initial conversions higher than 80% at a reaction temperature of 250 °C. However, the former showed a very poor stability regardless of the metallic active phase. On the other hand, the presence of palladium in the sulfated zirconia catalyst avoids deactivation as proved in long-term experiments (80-h time on stream). XPS and elemental analyses of the used catalysts suggest that adsorption of organochlorinated species is a cause of deactivation by blocking the active sites. In the monometallic SZ Pt catalyst, deactivation occurs also by poisoning of the Pt sites by the H _2S resulting from sulfate reduction under the hydrogen-rich gas atmosphere. The metal particle size appears to be a critical point with regard to stability of the catalysts. The one with the highest dispersion showed the highest stability with no signs of deactivation after more than 80 h on stream.
机译:制备了负载在硫酸盐(SZ)或氧化钨(WZ)促进下的氧化锆上的单金属(Pt或Pd)和双金属(Pt-Pd)催化剂,并在二氯甲烷的气相加氢脱氯中进行了测试。催化剂对作为甲烷的主要反应产物的非氯化产物(在250°C下介于80%和90%之间)具有很高的选择性。作为一般趋势,WZ催化剂的二氯甲烷转化率明显高于SZ催化剂,在250°C的反应温度下,所有催化剂的初始转化率均高于80%。但是,前者显示出非常差的稳定性,而与金属活性相无关。另一方面,硫酸盐氧化锆催化剂中钯的存在避免了长期实验(运行80小时)中证明的失活。 XPS和所用催化剂的元素分析表明,有机氯物质的吸附是通过封堵活性位而导致失活的原因。在单金属SZ Pt催化剂中,由于富氢气体气氛下硫酸盐还原引起的H _2S对Pt位的毒害,也会使钝化发生。金属粒度似乎是催化剂稳定性的关键点。分散度最高的一种在运行80小时后显示出最高的稳定性,没有失活的迹象。

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