J
Jacques Villermaux
Researcher at Centre national de la recherche scientifique
Publications - 96
Citations - 2239
Jacques Villermaux is an academic researcher from Centre national de la recherche scientifique. The author has contributed to research in topics: Micromixing & Crystallization. The author has an hindex of 27, co-authored 96 publications receiving 2178 citations.
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Crystallization and precipitation engineering—I. An efficient method for solving population balance in crystallization with agglomeration
TL;DR: In this paper, a simple and efficient method for solving the population balance equation in crystallization in the most general case: unsteady state, size dependant growth rate, agglomeration or breakage of crystals.
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Chemical engineering approach to dynamic modelling of linear chromatography: a flexible method for representing complex phenomena from simple concepts
TL;DR: The main features of the theory of linear chromatography based on a "systems approach" are presented in this article, where the main theorem states that the transfer function of the chromatographic system (the Laplace transform of the peak equation) can be obtained by combining the transfer functions of the residence-time distribution of the mobile phase, where the transferred function characterizes the reversible interaction with the stationary phase at the local level.
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Fast pyrolysis of wood: direct measurement and study of ablation rate☆
TL;DR: In this article, the apparent volatilization rate of wood rods undergoing fast pyrolysis by contact with a hot spinning steel disc was studied as a function of disc velocity, rod diameter, contact pressure and disc temperature.
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Crystallization and precipitation engineering—III. A discrete formulation of the agglomeration rate of crystals in a crystallization process
TL;DR: In this paper, an expression relying on fluid mechanical and phenomenological considerations is proposed for the agglomeration rate of adipic acid crystals during their crystallization in a mechanically stirred crystallizer.
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Planar laser induced fluorescence technique for measurements of concentration fields in continuous stirred tank reactors
TL;DR: In this paper, a nonintrusive method based on laser sheet visualization and image processing has been developed to measure the instantaneous concentration fields of a non-reacting fluorescent dye in a continuous stirred tank reactor.