In this work, we applied low-field, NMR spin–lattice measurements to evaluate for the first time the effect of carbonization temperature (range 600–1000 ℃) on the preparation of Alumina-Carbon Molecular Sieve Membranes (Al-CMSMs), providing new insights into intra-pore fluid interactions. The results show that the average Al-CMSM pore size generally increases with carbonization temperature whilst the hydrophilicity of the pore surface, and the amount of strongly adsorbed H2O, decreases with an increasing carbonization temperature. As such, lower carbonization temperatures produce more hydrophilic membranes, with further evidence provided by FTIR measurements demonstrating the presence of polar functional groups on the surface, with water in...
ABSTRACT: Carbon molecular sieve membranes have been analyzed in supported and unsupported configura...
Nitrogen-selective Carbon Molecular Sieve (CMS) membranes were developed for nitrogen/methane separa...
Carbon molecular sieve membranes (CMSMs) are emerging as promising solution to overcome the drawback...
In this work, we applied low-field, NMR spin–lattice measurements to evaluate for the first time the...
In this work, we applied low-field, NMR spin–lattice measurements to evaluate for the first time the...
Carbon membranes are a potentially attractive candidate for the in-situ removal of water vapor in CO...
Carbon membranes are a potentially attractive candidate for the in-situ removal of water vapor in CO...
The separation of H2O vapor from (hydrogen-rich) gaseous streams is a topic of increasing interest i...
In this paper, we demonstrate the potential of pulsed field gradient (PFG) NMR spectroscopy to revea...
UnrestrictedCarbon molecular-sieve (CMS) membranes have been studied in the past few years as an alt...
Carbon molecular sieve (CMS) membranes are usually prepared from dense polymeric precursors that alr...
Carbon molecular sieve membranes have been analyzed in supported and unsupported configurations in t...
Supported composite alumina-carbon molecular sieve membranes (c-CMSM) were prepared from in house pr...
Sol-gel polymerisation routes have been devised to produce microporous silica membranes for CO2/N-2 ...
and MCC researcher’s contract (2021.03255.CEECIND).This study presents the characterization of water...
ABSTRACT: Carbon molecular sieve membranes have been analyzed in supported and unsupported configura...
Nitrogen-selective Carbon Molecular Sieve (CMS) membranes were developed for nitrogen/methane separa...
Carbon molecular sieve membranes (CMSMs) are emerging as promising solution to overcome the drawback...
In this work, we applied low-field, NMR spin–lattice measurements to evaluate for the first time the...
In this work, we applied low-field, NMR spin–lattice measurements to evaluate for the first time the...
Carbon membranes are a potentially attractive candidate for the in-situ removal of water vapor in CO...
Carbon membranes are a potentially attractive candidate for the in-situ removal of water vapor in CO...
The separation of H2O vapor from (hydrogen-rich) gaseous streams is a topic of increasing interest i...
In this paper, we demonstrate the potential of pulsed field gradient (PFG) NMR spectroscopy to revea...
UnrestrictedCarbon molecular-sieve (CMS) membranes have been studied in the past few years as an alt...
Carbon molecular sieve (CMS) membranes are usually prepared from dense polymeric precursors that alr...
Carbon molecular sieve membranes have been analyzed in supported and unsupported configurations in t...
Supported composite alumina-carbon molecular sieve membranes (c-CMSM) were prepared from in house pr...
Sol-gel polymerisation routes have been devised to produce microporous silica membranes for CO2/N-2 ...
and MCC researcher’s contract (2021.03255.CEECIND).This study presents the characterization of water...
ABSTRACT: Carbon molecular sieve membranes have been analyzed in supported and unsupported configura...
Nitrogen-selective Carbon Molecular Sieve (CMS) membranes were developed for nitrogen/methane separa...
Carbon molecular sieve membranes (CMSMs) are emerging as promising solution to overcome the drawback...