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dc.contributor.authorChapuis, Arnauden_US
dc.contributor.authorLancement, Charleneen_US
dc.contributor.authorGiraldo, Franciscoen_US
dc.contributor.authorPrecoppe, Marceloen_US
dc.contributor.authorMoreno, Martinen_US
dc.contributor.authorDufour, Dominiqueen_US
dc.contributor.authorTran, Thierryen_US
dc.date.accessioned2023-02-07T15:33:05Zen_US
dc.date.available2023-02-07T15:33:05Zen_US
dc.identifier.urihttps://hdl.handle.net/10568/128494en_US
dc.titleExtensive experimental validation of a model for pneumatic drying of cassava starchen_US
cg.authorship.typesCGIAR and advanced research instituteen_US
dcterms.abstractA pneumatic drying model, developed in a previous work, was tested and validated based on a series of 56 experiments of cassava starch drying conducted on a pilot-scale pneumatic dryer. After fitting two parameters, the average diameter of starch particles and a heat loss factor, the model predicted the effects of main operating conditions with a level of accuracy comparable to that of the experimental measurements. Transient phases with sudden variations of product feed rate were also successfully simulated. The model is therefore suitable for equipment design purposes. The experimental results showed that the size of starch particles considerably decreases with increasing air velocity. As a result, at high air velocity, despite the shorter residence time in the drying pipe, the overall drying performance is improved due to the smaller particle size. It is therefore possible to increase air velocity, and hence product feed rate and production capacity, without detrimental effect on the drying efficiency.en_US
dcterms.accessRightsLimited Accessen_US
dcterms.audienceScientistsen_US
dcterms.available2022-06-20en_US
dcterms.bibliographicCitationChapuis, A.; Lancement, C.; Giraldo, F.; Precoppe, M.; Moreno, M.; Dufour, D.; Tran, T. (2022) Extensive experimental validation of a model for pneumatic drying of cassava starch. Drying Technology 41(1) p. 122-136. ISSN: 0737-3937en_US
dcterms.extentp. 122-136en_US
dcterms.issued2023-01-03en_US
dcterms.languageenen_US
dcterms.licenseCopyrighted; all rights reserveden_US
dcterms.publisherInforma UK Limiteden_US
dcterms.subjectcassavaen_US
dcterms.subjectdryersen_US
dcterms.subjectstarchen_US
dcterms.subjectsecadorasen_US
dcterms.subjectalmidónen_US
dcterms.subjectmodellingen_US
dcterms.typeJournal Articleen_US
cg.contributor.affiliationCIRADen_US
cg.contributor.affiliationUniversity of Montpellieren_US
cg.contributor.affiliationBioversity Internationalen_US
cg.contributor.affiliationUniversidad del Valleen_US
cg.contributor.affiliationUniversity of Greenwichen_US
cg.identifier.doihttps://doi.org/10.1080/07373937.2022.2087668en_US
cg.isijournalISI Journalen_US
cg.subject.alliancebiovciatCASSAVAen_US
cg.subject.impactAreaNutrition, health and food securityen_US
cg.subject.sdgSDG 1 - No povertyen_US
cg.subject.sdgSDG 2 - Zero hungeren_US
cg.subject.sdgSDG 3 - Good health and well-beingen_US
cg.creator.identifierDominique Dufour: 0000-0002-6046-0741en_US
cg.creator.identifierThierry Tran: 0000-0002-9557-3340en_US
cg.contributor.donorCentre de Coopération Internationale en Recherche Agronomique pour le Développementen_US
cg.contributor.donorCGIAR Trust Funden_US
cg.reviewStatusPeer Reviewen_US
cg.journalDrying Technologyen_US
cg.issn0737-3937en_US
cg.volume41en_US
cg.issue1en_US
cg.subject.actionAreaGenetic Innovationen_US
cg.contributor.initiativeAccelerated Breedingen_US


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