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首页> 外文期刊>The Korean journal of chemical engineering >Effect of Palladium and Nickel on the Temperature Programmed Reduction of Metal Oxides and Metal Oxide Layers
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Effect of Palladium and Nickel on the Temperature Programmed Reduction of Metal Oxides and Metal Oxide Layers

机译:钯和镍对程序升温还原金属氧化物和金属氧化物层的影响

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摘要

A new binary oxide support was suggested as being useful in many commercial reactions. Our study was focused on the reduction effect of metal oxide layer on alumina during reaction. Hence temperature programmed reduction of both bulk metal oxide and metal oxide layer on alumina was studied first and the effect of palladium and nickel on the reduction of the oxide support was also investigated. Vanadium oxide was mainly studied and niobium oxide, tantalum oxide, titanium oxide and zirconium oxide were also compared. Some metal oxides were reduced in a hydrogen stream at elevated temperature. In these cases both the bulk metal oxide and metal oxide layer were reduced. A tiny amount of palladium or nickel affected the reduction by decreasing the reduction temperature. The decrease of the reduction temperature was explained by means of increased adsorption of hydrogen on the transition metal and ability of the metal to spillover of the hydrogen to the oxides.
机译:有人提出一种新的二元氧化物载体可用于许多商业反应。我们的研究集中在反应过程中金属氧化物层对氧化铝的还原作用。因此,首先研究了氧化铝上本体金属氧化物和金属氧化物层的程序升温还原,并且还研究了钯和镍对氧化物载体还原的影响。主要研究了氧化钒,还比较了氧化铌,氧化钽,氧化钛和氧化锆。一些金属氧化物在高温下在氢气流中被还原。在这些情况下,块状金属氧化物和金属氧化物层均被还原。少量的钯或镍通过降低还原温度来影响还原。还原温度的降低是通过增加氢在过渡金属上的吸附以及金属将氢溢出到氧化物上的能力来解释的。

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