In this chapter, two industrial processes of gas-phase, hydrocarbon catalytic oxidation are examined: (a) the oxychlorination of ethylene to 1,2-dichloroethane; and (b) the oxidation of n-butane to maleic anhydride. In the former case, the use of ethane as an alternative reactant has been studied, still without success, whereas in the latter case the alkane has replaced the corresponding C4 alkenes because of the better selectivity achieved. Recent developments are discussed for the two reactions, especially in terms of catalysts’ chemical-–physical and reactivity properties
In the field of selective oxidation, the utilization of the alkanes as raw materials instead of the ...
A detailed chemical kinetic model has been developed that accurately describes pyrolysis, ignition a...
Oxidative coupling of methane (OCM) to ethylene and ethane is a futuristic process of great practica...
In this chapter, two industrial processes of gas-phase, hydrocarbon catalytic oxidation are examined...
Liquid-phase air oxidation of hydrocarbons, notably p-xylene, cumene, ethylbenzene/isobutane, cycloh...
This review article summarizes recent advances in catalytic oxidation of hydrocarbons, especially pr...
The selective partial oxidation of short chain alkanes is a key challenge within catalysis research....
Interest in the transformation of light alkanes to valuable oxygenated compounds and olefins has bee...
The conversion of methane, ethane and ethene has been investigated both as a homogeneous reaction an...
Abstract: The exact knowledge of hydrocarbon oxidation kinetics is very important due to the fact th...
A detailed chemical kinetic mechanism has been developed to describe the oxidation of small hydrocar...
The mission of this work is to devise a new catalyst which can be used in the first simple, economic...
This chapter covers the basic chemistry of major large scale industrial oxidation processes. The are...
Liquid phase oxidation of organic substrates under an atmosphere of oxygen catalyzed by metal comple...
Ethene is a commodity chemical of great importance for manufacturing diverse consumer products, whos...
In the field of selective oxidation, the utilization of the alkanes as raw materials instead of the ...
A detailed chemical kinetic model has been developed that accurately describes pyrolysis, ignition a...
Oxidative coupling of methane (OCM) to ethylene and ethane is a futuristic process of great practica...
In this chapter, two industrial processes of gas-phase, hydrocarbon catalytic oxidation are examined...
Liquid-phase air oxidation of hydrocarbons, notably p-xylene, cumene, ethylbenzene/isobutane, cycloh...
This review article summarizes recent advances in catalytic oxidation of hydrocarbons, especially pr...
The selective partial oxidation of short chain alkanes is a key challenge within catalysis research....
Interest in the transformation of light alkanes to valuable oxygenated compounds and olefins has bee...
The conversion of methane, ethane and ethene has been investigated both as a homogeneous reaction an...
Abstract: The exact knowledge of hydrocarbon oxidation kinetics is very important due to the fact th...
A detailed chemical kinetic mechanism has been developed to describe the oxidation of small hydrocar...
The mission of this work is to devise a new catalyst which can be used in the first simple, economic...
This chapter covers the basic chemistry of major large scale industrial oxidation processes. The are...
Liquid phase oxidation of organic substrates under an atmosphere of oxygen catalyzed by metal comple...
Ethene is a commodity chemical of great importance for manufacturing diverse consumer products, whos...
In the field of selective oxidation, the utilization of the alkanes as raw materials instead of the ...
A detailed chemical kinetic model has been developed that accurately describes pyrolysis, ignition a...
Oxidative coupling of methane (OCM) to ethylene and ethane is a futuristic process of great practica...