Published online: 16 Apr 2020Partial oxidation of methane (POM) offers a promising option to produce syngas for downstream processes such as hydrogen production and Fischer-Tropsch processes. POM in fixed-bed reactors requires an oxygen separation plant with high operation cost and safety risks. On the contrary, membrane reactors can provide an improved process by integrating both oxygen separation and catalytic reaction processes. With many advantages including high purity and efficient oxygen separation from the air at the catalytic reaction conditions, mixed ionic-electronic conducting membranes (MIEC) caught great attention in the scientific research field over the past two decades. In this review, POM using different catalysts in fixed...
This chapter addresses research and development of membrane reactors utilizing perovskite materials ...
This chapter addresses research and development of membrane reactors utilizing perovskite materials ...
Gas-To-Liquid (GTL) processes have great potential as alternative to conventional oil and coal proce...
Partial oxidation of methane (POM) offers a promising option to produce syngas for downstream proces...
A perovskite-type oxide of Ba0.5Sr0.5Co0.8Fe0.2O3-delta (BSCFO) shows mixed (electronic/oxygen ionic...
Methane partial oxidation (POM) by a catalytic membrane reactor is a promising process by integratio...
Partial oxidation of methane (POM) significantly offers benefits to the industrial production of syn...
A novel and ideal dense catalytic membrane reactor for the reaction of partial oxidation of methane ...
The gas-to-liquid process, consisting of the partial oxidation of methane (POM) followed by the Fisc...
Mixed-conducting oxygen permeable membranes represent a class of novel ceramic membranes, which exhi...
A mixed-conducting perovskite-type Ba0.5Sr0.5Co0.8Fe0.2O3-delta (BSCFO) ceramic membrane reactor wit...
This article reviews the catalytic reactions in mixed conductor oxygen permeable membrane reactors. ...
The application of mixed ionic and electronic conductors as oxygen separating membranes o®er an attr...
This article reviews the catalytic reactions in mixed conductor oxygen permeable membrane reactors. ...
Two consecutive model reactions of the type A->B->C are studied in two kinds of catalytic membrane r...
This chapter addresses research and development of membrane reactors utilizing perovskite materials ...
This chapter addresses research and development of membrane reactors utilizing perovskite materials ...
Gas-To-Liquid (GTL) processes have great potential as alternative to conventional oil and coal proce...
Partial oxidation of methane (POM) offers a promising option to produce syngas for downstream proces...
A perovskite-type oxide of Ba0.5Sr0.5Co0.8Fe0.2O3-delta (BSCFO) shows mixed (electronic/oxygen ionic...
Methane partial oxidation (POM) by a catalytic membrane reactor is a promising process by integratio...
Partial oxidation of methane (POM) significantly offers benefits to the industrial production of syn...
A novel and ideal dense catalytic membrane reactor for the reaction of partial oxidation of methane ...
The gas-to-liquid process, consisting of the partial oxidation of methane (POM) followed by the Fisc...
Mixed-conducting oxygen permeable membranes represent a class of novel ceramic membranes, which exhi...
A mixed-conducting perovskite-type Ba0.5Sr0.5Co0.8Fe0.2O3-delta (BSCFO) ceramic membrane reactor wit...
This article reviews the catalytic reactions in mixed conductor oxygen permeable membrane reactors. ...
The application of mixed ionic and electronic conductors as oxygen separating membranes o®er an attr...
This article reviews the catalytic reactions in mixed conductor oxygen permeable membrane reactors. ...
Two consecutive model reactions of the type A->B->C are studied in two kinds of catalytic membrane r...
This chapter addresses research and development of membrane reactors utilizing perovskite materials ...
This chapter addresses research and development of membrane reactors utilizing perovskite materials ...
Gas-To-Liquid (GTL) processes have great potential as alternative to conventional oil and coal proce...