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Claude-Gilles Dussap

Researcher at University of Auvergne

Publications -  104
Citations -  3879

Claude-Gilles Dussap is an academic researcher from University of Auvergne. The author has contributed to research in topics: Photobioreactor & Activity coefficient. The author has an hindex of 31, co-authored 98 publications receiving 3267 citations. Previous affiliations of Claude-Gilles Dussap include Centre national de la recherche scientifique & Blaise Pascal University.

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A fully predictive model for one-dimensional light attenuation by Chlamydomonas reinhardtii in a torus photobioreactor.

TL;DR: The light attenuation in a photobioreactor is determined using a fully predictive model and the predictive determination of optical properties are calculated from only the knowledge of pigments content, shape, and size distributions of cultivated cells which are a function of the physiology of the current species.
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Wood-lignin: Supply, extraction processes and use as bio-based material

TL;DR: In this article, the authors summarize the strong interplay between extraction processes, resource supply, and recent uses of lignin into bio-based materials, and conclude that the potential of biobased resins, adhesives, or composites strongly depend on lignins' chemical structure, also dependent on fractionation process.
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A simplified monodimensional approach for modeling coupling between radiant light transfer and growth kinetics in photobioreactors

TL;DR: In this article, the authors proposed a method of determining working illuminated volume defined as the photobioreactor volume with sufficient radiant light energy for microorganism growth, which enables the coupling between radiant light transfer and growth kinetics to be easily studied.
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Chemical and conformational study of the interactions involved in mycotoxin complexation with beta-D-glucans

TL;DR: Using molecular mechanics, it is found that hydroxyl, ketone, and lactone groups are involved in the formation of both hydrogen bonds and van der Waals interactions between aflatoxins B1, deoxynivalenol and patulin, and beta-D-glucans.
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A structured model for simulation of cultures of the cyanobacterium Spirulina platensis in photobioreactors: I. Coupling between light transfer and growth kinetics.

TL;DR: A simple model based on the simplified, monodimensional equation of Schuster for radiative transfer is discussed, which provides a simple way to determine a working illuminated volume in which growth occurs, therefore allowing indentification of kinetic parameters.