The recent literature concerning the partial oxidation of methane to methanol and formaldehyde is reviewed, with particular attention to advances made since 1985. A number of topics are discussed in detail including approaches that can be taken in ranking catalyst performance as well as the extensive literature concerning simple oxide and supported oxide catalysts. It is considered that novel experimental approaches are required if high selectivity of commercial significance is to be achieved. Against this background the design methods for novel materials and alternative experimental approaches are highlighted
Fe-2(MoO4)(3) is the most active and selective catalyst among several molybdates for the partial oxi...
A simplified approach is described for the design of oxidation catalysts. It is based on three compo...
WITH the continuing need to identify new ways of synthesizing transportation fuels and hydrocarbon-b...
Abstract: The direct conversion of methane to methanol has attracted a great deal of attention for n...
The partial oxidation of methane to methanol and formaldehyde by reaction with air has been investig...
The approach adopted for the scientific design of methane partial oxidation catalysts has identified...
The catalytic partial oxidation of methane to methanol has proved to be an extremely demanding react...
The conversion of methane into methanol is viewed as one approach to utilizing the vast reserves of ...
In the present work, several parameters affecting on the catalytic behavior were studied in the proc...
In this study a new approach for the design of catalysts for methane partial oxidation to methanol i...
In this study a new approach for the design of catalysts for methane partial oxidation to methanol i...
Methane is an abundant resource and its direct conversion into value-added chemicals has been an att...
Typescript (photocopy).The selective oxidation of methanol to formaldehyde over molybdenum-containin...
The catalytic partial oxidation of methane to methanol has proved to be an extremely demanding react...
The partial oxidation of methane to formaldehyde has been studied at atmospheric pressure and in the...
Fe-2(MoO4)(3) is the most active and selective catalyst among several molybdates for the partial oxi...
A simplified approach is described for the design of oxidation catalysts. It is based on three compo...
WITH the continuing need to identify new ways of synthesizing transportation fuels and hydrocarbon-b...
Abstract: The direct conversion of methane to methanol has attracted a great deal of attention for n...
The partial oxidation of methane to methanol and formaldehyde by reaction with air has been investig...
The approach adopted for the scientific design of methane partial oxidation catalysts has identified...
The catalytic partial oxidation of methane to methanol has proved to be an extremely demanding react...
The conversion of methane into methanol is viewed as one approach to utilizing the vast reserves of ...
In the present work, several parameters affecting on the catalytic behavior were studied in the proc...
In this study a new approach for the design of catalysts for methane partial oxidation to methanol i...
In this study a new approach for the design of catalysts for methane partial oxidation to methanol i...
Methane is an abundant resource and its direct conversion into value-added chemicals has been an att...
Typescript (photocopy).The selective oxidation of methanol to formaldehyde over molybdenum-containin...
The catalytic partial oxidation of methane to methanol has proved to be an extremely demanding react...
The partial oxidation of methane to formaldehyde has been studied at atmospheric pressure and in the...
Fe-2(MoO4)(3) is the most active and selective catalyst among several molybdates for the partial oxi...
A simplified approach is described for the design of oxidation catalysts. It is based on three compo...
WITH the continuing need to identify new ways of synthesizing transportation fuels and hydrocarbon-b...