Biogas is an increasingly attractive renewable resource, envisioned to secure future energy demands and help curb global climate change. To capitalize on this resource, membrane …
Membrane-based separations can improve energy efficiency and reduce the environmental impacts associated with traditional approaches. Nevertheless, many challenges must be …
The main purpose of research in membrane gas separation is to develop membranes with high permeability and selectivity. Historically, the gas separation performance of polymeric …
T Huang, T Puspasari, SP Nunes… - Advanced Functional …, 2020 - Wiley Online Library
Synthetic membranes with a high selectivity for demanding molecular separations and high permeance have a large potential for the reduction of energy consumption in separation …
D Bastani, N Esmaeili, M Asadollahi - Journal of Industrial and Engineering …, 2013 - Elsevier
Polymeric membrane technology has received extensive attention in the field of gas separation, recently. However, the tradeoff between permeability and selectivity is one of the …
Nowadays, membrane technologies are essential to a wide range of commercial applications in petrochemical, chemical, food, pharmaceutical, semiconductor …
Metal–organic frameworks (MOFs) are an emerging class of nanoporous materials comprising metal centers connected by various organic linkers to create one-, two-, and …
The combination of metal organic frameworks (MOFs) and polymers in the form of mixed matrix membranes (MMMs) has become an increasingly important field of research over the …
A series of zeolite adsorbents has been evaluated for potential application in post- combustion CO2 capture using a new high-throughput gas adsorption instrument capable of …