Conversion of methane to higher hydrocarbons by its low-temperature activation without forming undesirable carbon oxides is of great scientific and practical importance. Methane can be highly activated, yielding high rates of conversion to higher hydrocarbons and aromatics (10 to 45 percent) at low temperatures (400° to 600°C), by its reaction over H-galloaluminosilicate ZSM-5 type (MFI) zeolite in the presence of alkenes or higher alkanes. The methane activation results from its hydrogen-transfer reaction with alkenes
The paper investigates the effects of an additional mesoporous structure on the physicochemical, tex...
The direct functionalization of methane into platform chemicals is arguably one of the holy grails i...
Natural gas contains a large quantity of methane that is valuable as a fuel source. However, it can ...
Discovery of large shale gas reserves in recent years resulted in the reduction of natural gas price...
Gasoline from methane: Methane can be activated nonoxidatively and converted into higher hydrocarbon...
Gasoline from methane: Methane can be activated nonoxidatively and converted into higher hydrocarbon...
The dehydrogenation and aromatization of methane on modified ZSM-5 zeolite catalysts has been studie...
Non-oxidative dehydroaromatization is arguably the most promising process for the direct upgrading o...
Non-oxidative dehydroaromatization is arguably the most promising process for the direct upgrading o...
Non-oxidative dehydroaromatization is arguably the most promising process for the direct upgrading o...
Non-oxidative dehydroaromatization is arguably the most promising process for the direct upgrading o...
Non-oxidative dehydroaromatization is arguably the most promising process for the direct upgrading o...
The conversion of methane to value-added liquid chemicals is a promising answer to the imminent dema...
The effect of Mo loading, calcination temperature, reaction temperature and space velocity on the ca...
The direct functionalization of methane into platform chemicals is arguably one of the holy grails i...
The paper investigates the effects of an additional mesoporous structure on the physicochemical, tex...
The direct functionalization of methane into platform chemicals is arguably one of the holy grails i...
Natural gas contains a large quantity of methane that is valuable as a fuel source. However, it can ...
Discovery of large shale gas reserves in recent years resulted in the reduction of natural gas price...
Gasoline from methane: Methane can be activated nonoxidatively and converted into higher hydrocarbon...
Gasoline from methane: Methane can be activated nonoxidatively and converted into higher hydrocarbon...
The dehydrogenation and aromatization of methane on modified ZSM-5 zeolite catalysts has been studie...
Non-oxidative dehydroaromatization is arguably the most promising process for the direct upgrading o...
Non-oxidative dehydroaromatization is arguably the most promising process for the direct upgrading o...
Non-oxidative dehydroaromatization is arguably the most promising process for the direct upgrading o...
Non-oxidative dehydroaromatization is arguably the most promising process for the direct upgrading o...
Non-oxidative dehydroaromatization is arguably the most promising process for the direct upgrading o...
The conversion of methane to value-added liquid chemicals is a promising answer to the imminent dema...
The effect of Mo loading, calcination temperature, reaction temperature and space velocity on the ca...
The direct functionalization of methane into platform chemicals is arguably one of the holy grails i...
The paper investigates the effects of an additional mesoporous structure on the physicochemical, tex...
The direct functionalization of methane into platform chemicals is arguably one of the holy grails i...
Natural gas contains a large quantity of methane that is valuable as a fuel source. However, it can ...