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José Sanchez

Researcher at University of Montpellier

Publications -  107
Citations -  2316

José Sanchez is an academic researcher from University of Montpellier. The author has contributed to research in topics: Membrane & Mass transfer. The author has an hindex of 26, co-authored 100 publications receiving 2158 citations. Previous affiliations of José Sanchez include Claude Bernard University Lyon 1 & École Normale Supérieure.

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Progress in enzymatic membrane reactors ¿ a review

TL;DR: Some significant information is reported showing the last progress realised in the knowledge of the phenomena which limit the performances of EMR, and openings towards new and more efficient systems are mentioned.
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Sol-gel polyimide-silica composite membrane : gas transport properties

TL;DR: In this paper, the effect of silica particles prepared by the sol-gel technique on the gas transport properties of a polyimide film was studied and correlated with morphological changes in the polymer structure.
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Absorption kinetics of oxygen and carbon dioxide scavengers as part of active modified atmosphere packaging

TL;DR: In this paper, the absorption capacity, absorption rate constant, energy of activation, Arrhenius constant and variation of all these parameters were evaluated and discussed, and the importance of taking into account the important variation of absorption rate (about 20%) among individual gas scavengers and the temperature effect for reliable evaluation of the gas kinetics when using O 2 or CO 2 scavengers in an expected and secure way.
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Active Modified Atmosphere Packaging of Fresh Fruits and Vegetables: Modeling with Tomatoes and Oxygen Absorber

TL;DR: In this article, the authors developed a mathematical model predicting gas changes and based on the following independently evaluated parameters: vegetable respiration rate, film permeability, and oxygen absorption kinetic of the absorber.
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Theoretical analysis of concentration polarization in membrane modules for gas separation with feed inside the hollow-fibers

TL;DR: In this paper, a mathematical model was developed to investigate the effects of the polarization of concentration in gas separation hollow-fibers modules when the gas feed is made inside the fibers, in co-and counter-current configuration.