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Modeling a process combining a cereal dryer with a bioenergy unit for equipment design in developing countries

Rivier Michel, Collignan Antoine, Méot Jean-Michel, Madoumier Martial, Sebastian Patrick. 2018. Modeling a process combining a cereal dryer with a bioenergy unit for equipment design in developing countries. Journal of Food Process Engineering, 41 (6):e12836, 12 p.

Article de revue ; Article de recherche ; Article de revue à facteur d'impact
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Quartile : Q3, Sujet : ENGINEERING, CHEMICAL / Quartile : Q3, Sujet : FOOD SCIENCE & TECHNOLOGY

Résumé : This study describes the development of a process model combining a biomass energy conversion unit with a cereal‐based products' dryer. Heat and mass transfer and pressure drops, which occur during the process, are identified using two experimental set‐ups. The tool can predict the behavior of a heat exchanger and simulate drying of agglomerated products. The model is then used to evaluate the process performance in its installation context, by means of indicators, based on which six design solutions are studied. The results obtained provide initial guidelines for installing a processing unit in the South and clearly show the usefulness of this sort of process design aid tool. It may be integrated into a multiobjective optimization environment, in order to design a high‐performance process, tailored to the context of developing countries.

Mots-clés géographiques Agrovoc : Burkina Faso, Mali, Afrique occidentale

Mots-clés libres : Food process modelling, Design aid tool, Cereal-based products drying, Biomass energy

Classification Agris : N20 - Machines et matériels agricoles
Q01 - Sciences et technologies alimentaires - Considérations générales

Champ stratégique Cirad : Axe 2 (2014-2018) - Valorisation de la biomasse

Auteurs et affiliations

  • Rivier Michel, CIRAD-PERSYST-UMR Qualisud (FRA) - auteur correspondant
  • Collignan Antoine, Montpellier SupAgro (FRA)
  • Méot Jean-Michel, CIRAD-PERSYST-UMR Qualisud (FRA)
  • Madoumier Martial, Montpellier SupAgro (FRA)
  • Sebastian Patrick, Université de Bordeaux (FRA)

Source : Cirad-Agritrop (https://agritrop.cirad.fr/588589/)

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