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Dive into the research topics where Karin Barthelet is active.

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Featured researches published by Karin Barthelet.


Journal of the American Chemical Society | 2012

Comparison of the Behavior of Metal–Organic Frameworks and Zeolites for Hydrocarbon Separations

David Peralta; Gérald Chaplais; Angélique Simon-Masseron; Karin Barthelet; Céline Chizallet; Anne-Agathe Quoineaud; Gerhard D. Pirngruber

The objective of this work was to study the adsorption and separation of the most important families of hydrocarbon compounds on metal-organic frameworks (MOFs), in comparison with zeolites. For this purpose, we have selected four probe molecules, each of them representing one of these families, i.e., o- and p-xylene as aromatics, 1-octene as an alkene, and n-octane as an alkane. The separation of these four molecules was studied by binary breakthrough experiments. To represent the large diversity of MOF structures, the experiments were carried out with (i) two MOFs with coordinatively unsaturated metal sites (CUS), i.e., Cu-btc (HKUST-1) and CPO-27-Ni, (ii) a MOF with an anionic framework and extraframework cations, i.e. RHO-ZMOF, and (iii) two rather apolar zeolitic imidazolate framework (ZIF) materials with different pore sizes, i.e. ZIF-8 and ZIF-76. Zeolite NaY and zeolite β were used as polar and apolar reference adsorbents, respectively. The results can be briefly summarized as follows: ZIFs (not carrying any polar functional groups) behave like apolar adsorbents and exhibit very interesting and unexpected molecular sieving properties. CUS-MOFs behave like polar adsorbents but show the specificity of preferring alkenes over aromatics. This feature is rationalized thanks to DFT+D calculations. MOFs with extraframework cations behave like polar (cationic) zeolites.


Energy & Fuels | 2012

Metal–organic framework materials for desulfurization by adsorption

David Peralta; Gérald Chaplais; Angélique Simon-Masseron; Karin Barthelet; Gerhard D. Pirngruber


Industrial & Engineering Chemistry Research | 2012

Separation of C6 Paraffins Using Zeolitic Imidazolate Frameworks: Comparison with Zeolite 5A

David Peralta; Gérald Chaplais; Angélique Simon-Masseron; Karin Barthelet; Gerhard D. Pirngruber


Journal of Physical Chemistry C | 2012

Adsorption and Separation of Xylene Isomers: CPO-27-Ni vs HKUST-1 vs NaY

David Peralta; Karin Barthelet; Javier Pérez-Pellitero; Céline Chizallet; Gérald Chaplais; Angélique Simon-Masseron; Gerhard D. Pirngruber


Microporous and Mesoporous Materials | 2013

The separation of xylene isomers by ZIF-8: A demonstration of the extraordinary flexibility of the ZIF-8 framework

David Peralta; Gérald Chaplais; Jean-Louis Paillaud; Angélique Simon-Masseron; Karin Barthelet; Gerhard D. Pirngruber


Microporous and Mesoporous Materials | 2012

Synthesis and adsorption properties of ZIF-76 isomorphs

David Peralta; Gérald Chaplais; Angélique Simon-Masseron; Karin Barthelet; Gerhard D. Pirngruber


Archive | 2012

Masse de captation a performances ameliorees et son utilisation dans la captation de metaux lourds

Fabien Porcheron; Karin Barthelet; Arnaud Baudot; Antoine Daudin; Marc-Antoine Lelias; Yannick Gelie; Alexandre Nicolaos


Archive | 2011

PROCESS FOR PREPARATION OF A CATIONIC ZEOLITE BY ION EXCHANGE

Karin Barthelet; Patrick Magnoux; Alain Methivier; Vania Santos-Moreau


Archive | 2014

Process for capturing a heavy metal contained in a wet gas incorporating a heat pump for heating the gas introduced into a capturing body

Florent Guillou; Fabien Porcheron; Karin Barthelet; Arnaud Baudot; Yann Lepine; Clotilde Jubin


Archive | 2013

POLYMETALLIC CAPTURE MASS FOR CAPTURING HEAVY METALS

Fabien Porcheron; Arnaud Baudot; Karin Barthelet

Collaboration


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David Peralta

Centre national de la recherche scientifique

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Gérald Chaplais

Centre national de la recherche scientifique

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Angélique Simon-Masseron

Centre national de la recherche scientifique

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Joël Patarin

University of Strasbourg

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Jean-Louis Paillaud

Centre national de la recherche scientifique

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Michèle Pijolat

École Normale Supérieure

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