Fluorinated MOF platform for selective removal and sensing of SO2 from flue gas and air

Removal of SO2 from flue gas is of prime importance to avoid its poisoning of CO2-seperating agents. Here, the authors demonstrate that two fluorinated metal–organic frameworks selectively remove SO2 from synthetic flue gas and can sense SO2 with p.p.m.-level detection using quartz crystal microbala...

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Autores principales: M. R. Tchalala, P. M. Bhatt, K. N. Chappanda, S. R. Tavares, K. Adil, Y. Belmabkhout, A. Shkurenko, A. Cadiau, N. Heymans, G. De Weireld, G. Maurin, K. N. Salama, M. Eddaoudi
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/5e07801a18314467a38414eed145b435
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spelling oai:doaj.org-article:5e07801a18314467a38414eed145b4352021-12-02T17:32:56ZFluorinated MOF platform for selective removal and sensing of SO2 from flue gas and air10.1038/s41467-019-09157-22041-1723https://doaj.org/article/5e07801a18314467a38414eed145b4352019-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09157-2https://doaj.org/toc/2041-1723Removal of SO2 from flue gas is of prime importance to avoid its poisoning of CO2-seperating agents. Here, the authors demonstrate that two fluorinated metal–organic frameworks selectively remove SO2 from synthetic flue gas and can sense SO2 with p.p.m.-level detection using quartz crystal microbalance transducers.M. R. TchalalaP. M. BhattK. N. ChappandaS. R. TavaresK. AdilY. BelmabkhoutA. ShkurenkoA. CadiauN. HeymansG. De WeireldG. MaurinK. N. SalamaM. EddaoudiNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-10 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
M. R. Tchalala
P. M. Bhatt
K. N. Chappanda
S. R. Tavares
K. Adil
Y. Belmabkhout
A. Shkurenko
A. Cadiau
N. Heymans
G. De Weireld
G. Maurin
K. N. Salama
M. Eddaoudi
Fluorinated MOF platform for selective removal and sensing of SO2 from flue gas and air
description Removal of SO2 from flue gas is of prime importance to avoid its poisoning of CO2-seperating agents. Here, the authors demonstrate that two fluorinated metal–organic frameworks selectively remove SO2 from synthetic flue gas and can sense SO2 with p.p.m.-level detection using quartz crystal microbalance transducers.
format article
author M. R. Tchalala
P. M. Bhatt
K. N. Chappanda
S. R. Tavares
K. Adil
Y. Belmabkhout
A. Shkurenko
A. Cadiau
N. Heymans
G. De Weireld
G. Maurin
K. N. Salama
M. Eddaoudi
author_facet M. R. Tchalala
P. M. Bhatt
K. N. Chappanda
S. R. Tavares
K. Adil
Y. Belmabkhout
A. Shkurenko
A. Cadiau
N. Heymans
G. De Weireld
G. Maurin
K. N. Salama
M. Eddaoudi
author_sort M. R. Tchalala
title Fluorinated MOF platform for selective removal and sensing of SO2 from flue gas and air
title_short Fluorinated MOF platform for selective removal and sensing of SO2 from flue gas and air
title_full Fluorinated MOF platform for selective removal and sensing of SO2 from flue gas and air
title_fullStr Fluorinated MOF platform for selective removal and sensing of SO2 from flue gas and air
title_full_unstemmed Fluorinated MOF platform for selective removal and sensing of SO2 from flue gas and air
title_sort fluorinated mof platform for selective removal and sensing of so2 from flue gas and air
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/5e07801a18314467a38414eed145b435
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