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The influence of catalyst amount and Pd loading on the H2O2 synthesis from hydrogen and oxygen

机译:催化剂量和PD载荷对H2O2合成氢和氧的影响

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Palladium catalysts with an active metal content from 0.3 to 5.0 wt.% and supported on a strongly acidic, macroporous resin were prepared by ion-exchange/reduction method. H2O2 direct synthesis was carried out in the absence of promoters (acids and halides). The total Pd amount in the reacting environment was varied by changing A) the catalyst concentration in the slurry and B) the Pd content of the catalyst. In both cases, smaller amounts of the active metal enhance the selectivity towards H2O2, at any H-2 conversion, with option B) better than A). In case A), the Pd(II)/Pd(0) molar ratio (XPS) in the spent catalysts was found to decrease at lower catalyst Pd content. With these catalysts and this experimental set-up the dynamic H-2(1)/Pd molar ratio, the metal loading and the metal particle size were the key factors controlling the selectivity, which reached 57% at 60% H-2 conversion, and 80% at lower conversion.
机译:通过离子交换/还原方法制备具有活性金属含量为0.3至5.0 wt%的活性金属含量,并在强酸性的大孔树脂上支撑的钯催化剂。 H2O2直接合成是在没有启动子(酸和卤化物)的情况下进行的。 反应环境中的总PD量通过更改a)浆液中的催化剂浓度和b)催化剂的PD含量。 在这两种情况下,在任何H-2转换下,较少量的活性金属都可以增强对H2O2的选择性,并且选项B)比A)更好。 在A)的情况下,发现在较低的催化剂PD含量下,pd(ii)/pd(0)摩尔比(XPS)降低。 使用这些催化剂和该实验设置的动态H-2(1)/PD摩尔比,金属载荷和金属粒径是控制选择性的关键因素,在60%H-2转换时达到57%, 和80%的转换时。

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