Impact of Xylose on Dynamics of Water Diffusion in Mesoporous Zeolites Measured by NMR

dc.contributor.authorNelson, Madison L.
dc.contributor.authorRomo, Joelle E.
dc.contributor.authorWettstein, Stephanie G.
dc.contributor.authorSeymour, Joseph D.
dc.date.accessioned2021-11-18T22:06:06Z
dc.date.available2021-11-18T22:06:06Z
dc.date.issued2021-09
dc.description.abstractZeolites are known to be effective catalysts in biomass converting processes. Understanding the mesoporous structure and dynamics within it during such reactions is important in effectively utilizing them. Nuclear magnetic resonance (NMR) T2 relaxation and diffusion measurements, using a high-power radio frequency probe, are shown to characterize the dynamics of water in mesoporous commercially made 5A zeolite beads before and after the introduction of xylose. Xylose is the starting point in the dehydration into furfural. The results indicate xylose slightly enhances rotational mobility while it decreases translational motion through altering the permeability, K, throughout the porous structure. The measurements show xylose inhibits pure water from relocating into larger pores within the zeolite beads where it eventually is expelled from the bead itself.en_US
dc.identifier.citationNelson, Madison L., Joelle E. Romo, Stephanie G. Wettstein, and Joseph D. Seymour. “Impact of Xylose on Dynamics of Water Diffusion in Mesoporous Zeolites Measured by NMR.” Molecules 26, no. 18 (September 11, 2021): 5518. doi:10.3390/molecules26185518.en_US
dc.identifier.issn1420-3049
dc.identifier.urihttps://scholarworks.montana.edu/handle/1/16542
dc.language.isoen_USen_US
dc.rights© This final published version is made available under the CC-BY 4.0 license.en_US
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/en_US
dc.titleImpact of Xylose on Dynamics of Water Diffusion in Mesoporous Zeolites Measured by NMRen_US
dc.typeArticleen_US
mus.citation.extentfirstpage5518en_US
mus.citation.issue18en_US
mus.citation.journaltitleMoleculesen_US
mus.citation.volume26en_US
mus.data.thumbpage4en_US
mus.identifier.doi10.3390/molecules26185518en_US
mus.relation.collegeCollege of Engineeringen_US
mus.relation.departmentChemical & Biological Engineering.en_US
mus.relation.universityMontana State University - Bozemanen_US

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