The effect of calcination temperature (500-700 degrees C) on physico-chemical properties and catalytic activity of 2 wt. % K/Co-Mn-Al mixed oxide for N2O decomposition was investigated. Catalysts were characterized by inductively coupled plasma spectroscopy (ICP), X-ray powder diffraction (XRD), temperature-programmed reduction by hydrogen (TPR-H-2), temperature-programmed desorption of CO2 (TPD-CO2), temperature-programmed desorption of NO (TPD-NO), X-ray photoelectron spectrometry (XPS) and N-2 physisorption. It was found that the increase in calcination temperature caused gradual crystallization of Co-Mn-Al mixed oxide, which manifested itself in the decrease in Co2+/Co3+ and Mn3+/Mn4+ surface molar ratio, the increase in mean crystallit...
Catalytic decomposition of N2O over calcined Co–Mn–Al layered double hydroxide (LDH) modified with s...
Hydrotalcite-like materials containing apart from magnesium and aluminum also copper, cobalt, nickel...
Co-Mg-Mn-Al mixed oxide with or without K was prepared and characterized by XPS, TPR H-2, TPD NO, TP...
A series of catalysts was prepared by thermal treatment (500 °C) of the coprecipitated Co–Mn–Al laye...
Direct decomposition of nitric oxide (NO) proceeds over Co-Mn-Al mixed oxides promoted by potassium....
Fundamental research on direct NO decomposition is still needed for the design of a sufficiently act...
The catalysts investigated in this work were prepared by co-precipitation of nitrates with aqueous K...
The K-doped Co-Mn-Al mixed oxide deN2O catalyst was prepared by calcination of Co-Mn-Al layered doub...
A series of Co–Mn–Al mixed oxides modified with alkali metals (Li, Na, and K) were prepared from Co–...
Alkali promoted Co4MnAlOx mixed oxide (molar ratio of alkali metal/Co = 0.037) were prepared by impr...
A series of Co–Mn–Al mixed oxide catalysts with different Cs contents (0.5–4.6 wt%) was prepared by ...
The reaction mechanism of direct NO decomposition over Co4MnAlOx mixed oxides prepared by co-precipi...
Emission of nitric oxide represents a serious environmental problem since it contributes to the form...
In this study, Co-Mn-Al mixed oxides modified by K were prepared by co-precipitation of a solution o...
Co-Mn-Al mixed oxides promoted by potassium are known as active catalysts for the direct decompositi...
Catalytic decomposition of N2O over calcined Co–Mn–Al layered double hydroxide (LDH) modified with s...
Hydrotalcite-like materials containing apart from magnesium and aluminum also copper, cobalt, nickel...
Co-Mg-Mn-Al mixed oxide with or without K was prepared and characterized by XPS, TPR H-2, TPD NO, TP...
A series of catalysts was prepared by thermal treatment (500 °C) of the coprecipitated Co–Mn–Al laye...
Direct decomposition of nitric oxide (NO) proceeds over Co-Mn-Al mixed oxides promoted by potassium....
Fundamental research on direct NO decomposition is still needed for the design of a sufficiently act...
The catalysts investigated in this work were prepared by co-precipitation of nitrates with aqueous K...
The K-doped Co-Mn-Al mixed oxide deN2O catalyst was prepared by calcination of Co-Mn-Al layered doub...
A series of Co–Mn–Al mixed oxides modified with alkali metals (Li, Na, and K) were prepared from Co–...
Alkali promoted Co4MnAlOx mixed oxide (molar ratio of alkali metal/Co = 0.037) were prepared by impr...
A series of Co–Mn–Al mixed oxide catalysts with different Cs contents (0.5–4.6 wt%) was prepared by ...
The reaction mechanism of direct NO decomposition over Co4MnAlOx mixed oxides prepared by co-precipi...
Emission of nitric oxide represents a serious environmental problem since it contributes to the form...
In this study, Co-Mn-Al mixed oxides modified by K were prepared by co-precipitation of a solution o...
Co-Mn-Al mixed oxides promoted by potassium are known as active catalysts for the direct decompositi...
Catalytic decomposition of N2O over calcined Co–Mn–Al layered double hydroxide (LDH) modified with s...
Hydrotalcite-like materials containing apart from magnesium and aluminum also copper, cobalt, nickel...
Co-Mg-Mn-Al mixed oxide with or without K was prepared and characterized by XPS, TPR H-2, TPD NO, TP...