Catalytic CO methanation technology can be improved by process intensification, i.e. enabling higher energy efficiency and process sustainability. Here, thin-film composite membranes (TFCM) were developed for in-situ water removal in a catalytic membrane reactor (CMR) for the Sabatier process. The selective separation layer (1.4 μm-thick) of the composite membrane is made of the polyimide 6FDA-6FpDA, a glassy polyimide, which exhibits high permeability and selectivity together with stable function at unprecedented high temperatures (>200 °C), compared to polyimides reported until now (90 °C), thus matching the temperature range of Sabatier reactors. Remarkably, TFCM developed in this work, allow to extract an outstanding amount of water up ...
AbstractRobust ultrathin polymer membranes offer significant technical and economic advantage over c...
AbstractA high performance membrane based on polyvinylamine composite material has been reported wit...
The development of multilayer composite membranes for CO2 separation has gained increasing attention...
Methanol can be obtained through CO2 hydrogenation in a membrane reactor with higher yield or lower ...
Methanol can be obtained through CO2 hydrogenation in a membrane reactor with higher yield or lower ...
Global CO2 emissions have increased steadily in tandem with the use of fossil fuels. A paradigm shif...
Global CO2 emissions have increased steadily in tandem with the use of fossil fuels. A paradigm shif...
Nature has developed very active and specific catalysts that are critical for living organisms’ exis...
Novel selective polymeric thin-film composite membranes (TFCMs) for applications at elevated tempera...
Advancement in material engineering has made designing a myriad of high performing polymeric-based m...
One of the major problems the world is facing nowadays is Global Warming. The main ten Green House G...
The polymer of intrinsic microporosity PIM-1 was synthesized with different topologies and negligibl...
Membranes that are resistant to water vapor permeation have potential in natural gas sweetening by r...
A highly efficient biocatalytic carbonic anhydrase (CA)-polydopamine (PDA)/polyethylenimine (PEI)-po...
Membrane-based separation technology has been widely applied for large-scale industrial CO2 capture ...
AbstractRobust ultrathin polymer membranes offer significant technical and economic advantage over c...
AbstractA high performance membrane based on polyvinylamine composite material has been reported wit...
The development of multilayer composite membranes for CO2 separation has gained increasing attention...
Methanol can be obtained through CO2 hydrogenation in a membrane reactor with higher yield or lower ...
Methanol can be obtained through CO2 hydrogenation in a membrane reactor with higher yield or lower ...
Global CO2 emissions have increased steadily in tandem with the use of fossil fuels. A paradigm shif...
Global CO2 emissions have increased steadily in tandem with the use of fossil fuels. A paradigm shif...
Nature has developed very active and specific catalysts that are critical for living organisms’ exis...
Novel selective polymeric thin-film composite membranes (TFCMs) for applications at elevated tempera...
Advancement in material engineering has made designing a myriad of high performing polymeric-based m...
One of the major problems the world is facing nowadays is Global Warming. The main ten Green House G...
The polymer of intrinsic microporosity PIM-1 was synthesized with different topologies and negligibl...
Membranes that are resistant to water vapor permeation have potential in natural gas sweetening by r...
A highly efficient biocatalytic carbonic anhydrase (CA)-polydopamine (PDA)/polyethylenimine (PEI)-po...
Membrane-based separation technology has been widely applied for large-scale industrial CO2 capture ...
AbstractRobust ultrathin polymer membranes offer significant technical and economic advantage over c...
AbstractA high performance membrane based on polyvinylamine composite material has been reported wit...
The development of multilayer composite membranes for CO2 separation has gained increasing attention...