The quest for an efficient process to convert methane efficiently to fuels and high value-added chemicals such as olefins and aromatics is motivated by their increasing demands and recently discovered large reserves and resources of methane. Direct conversion to these chemicals can be realized either oxidatively via oxidative coupling of methane (OCM) or nonoxidatively via methane dehydroaromatization (MDA), which have been under intensive investigation for decades. While industrial applications are still limited by their low yield (selectivity) and stability issues, innovations in new catalysts and concepts are needed. The newly emerging strategy using iron single sites to catalyze methane conversion to olefins, aromatics, and hydrogen (MT...
While the search for catalysts capable of directly converting methane to higher value commodity chem...
Increasing global competition, stringent environmental regulations, and concerns over long-term sust...
Things go better without coke! The selective activation of methane and its direct conversion into li...
Direct conversion of methane, the main component in natural gas, into value-added chemical building ...
Direct conversion of methane into hydrogen and valuable chemicals under nonoxidative conditions is a...
Natural gas contains a large quantity of methane that is valuable as a fuel source. However, it can ...
Methane activation by heterogeneous catalysis will play a key role to secure the supply of energy, c...
Direct conversion of methane to benzene or other valuable chemicals is a very promising process for ...
Methane, when converted to higher hydrocarbons, promises a great future as the substituent for liqui...
This project explored conversion of methane to useful products by two techniques that do not involve...
In view of rising global demand for aromatics as starting chemical for many commodity goods as well ...
As finite crude oil resources are rapidly consumed, the pressure to implement alternative technologi...
The conversion of methane to more valuable chemicals is one of the most intensively studied topics i...
The efficient use of natural gas will require catalysts that can activate the first C-H bond of meth...
The progress in direct conversion of methane to chemicals is reviewed. The partial oxidation of meth...
While the search for catalysts capable of directly converting methane to higher value commodity chem...
Increasing global competition, stringent environmental regulations, and concerns over long-term sust...
Things go better without coke! The selective activation of methane and its direct conversion into li...
Direct conversion of methane, the main component in natural gas, into value-added chemical building ...
Direct conversion of methane into hydrogen and valuable chemicals under nonoxidative conditions is a...
Natural gas contains a large quantity of methane that is valuable as a fuel source. However, it can ...
Methane activation by heterogeneous catalysis will play a key role to secure the supply of energy, c...
Direct conversion of methane to benzene or other valuable chemicals is a very promising process for ...
Methane, when converted to higher hydrocarbons, promises a great future as the substituent for liqui...
This project explored conversion of methane to useful products by two techniques that do not involve...
In view of rising global demand for aromatics as starting chemical for many commodity goods as well ...
As finite crude oil resources are rapidly consumed, the pressure to implement alternative technologi...
The conversion of methane to more valuable chemicals is one of the most intensively studied topics i...
The efficient use of natural gas will require catalysts that can activate the first C-H bond of meth...
The progress in direct conversion of methane to chemicals is reviewed. The partial oxidation of meth...
While the search for catalysts capable of directly converting methane to higher value commodity chem...
Increasing global competition, stringent environmental regulations, and concerns over long-term sust...
Things go better without coke! The selective activation of methane and its direct conversion into li...