dc.creatorDa Rosa G.S.
dc.creatorJunior A.M.
dc.creatorDos Santos Rocha S.C.
dc.date2011
dc.date2015-06-30T20:29:30Z
dc.date2015-11-26T14:50:24Z
dc.date2015-06-30T20:29:30Z
dc.date2015-11-26T14:50:24Z
dc.date.accessioned2018-03-28T22:01:35Z
dc.date.available2018-03-28T22:01:35Z
dc.identifier9782854289787
dc.identifierMicrowave And Rf Power Applications: Proceeding Of The 13th International Conference On Microwave And Radio Frequency Heating, Ampere 2011. Editions Cepadues, v. , n. , p. 282 - 285, 2011.
dc.identifier
dc.identifier
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-84907027157&partnerID=40&md5=1f1dbc97de7fcff5f670340e4405d768
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/108130
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/108130
dc.identifier2-s2.0-84907027157
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1254151
dc.descriptionPoly-hydroxybutirate (PHB) is a biodegradable thermoplastic polyester that can be considered analogous to many conventional petroleum-derived plastics currently in use. In Brazil, PHB is produced by bacterial fermentation of the sugarcane in a process integrated to the sugar and ethanol industrial chain. Drying is an important step of PHB production because an adequate post-processing can be achieved only at moisture contents lower than 0.50 % (w.b.). This work aimed at investigating the influence of microwave power level and hot air conditions on drying of PHB in a combined microwave and rotating pulsed fluidized bed (RPFB) dryer. The effects of operational parameters were analyzed by a 2-level factorial design with 3 repetitions at the center point. The results showed final moisture content in the range of 0.38-0.95 % (w.b.). Temperature of the air and microwave power level had a significant influence on the drying process. The dryer proved to be appropriate to dry the PHB granules, resulting in a lower process time compared to convective drying in RPFB.
dc.description
dc.description
dc.description282
dc.description285
dc.descriptionAssoc. for Microwave Power in Europe for,et al.,French MTT Chapter of IEEE,Institut National Polytechnique de Toulouse (INP),Research and Education (AMPERE),Universite Paul Sabatier - Toulouse IIIPublisher:Editions Cepadues
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dc.descriptionGao, Y., Kong, L., Zhang, L., Gong, Y., Chen, G., Zhaoand, N., Zhang, X., (2006) Eur Polym J, 42, p. 764
dc.descriptionMa, G., Yang, D., Wang, K., Han, J., Ding, S., Song, G., Nie, J., Organic-soluble chitosan polyhydroxybutyrate ultrafine fibers as skin regeneration prepared by electrospinning (2010) Journal of Applied Polymer Science, 118, pp. 3619-3624
dc.descriptionMantelatto, P.E., Nazareno, A.S.D., PHB Industrial S. A., Process for extracting and recovering polyhydroxyalkanoates (PHAS) from cellular biomass (2008) Int CI C12P 7=62, , U. S. 2008=0193987 A1
dc.descriptionGodoi, F.C., Boin, E.A.S.F., Pereira, N.R., Rocha, S.C.S., Fluid dynamics and drying of cohesive particles of a biodegradable polymer (poly-hydroxybutyrate) in a rotating pulsed fluidized bed (2010) Drying Technology, 28 (11), pp. 1297-1306
dc.descriptionDrouzas, A.E., Schubert, H., Microwave application in vacuum drying of fruits (1996) Journal of Food Engineering, 28, pp. 203-209
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dc.languageen
dc.publisherEditions Cepadues
dc.relationMicrowave and RF Power Applications: Proceeding of the 13th International Conference on Microwave and Radio Frequency Heating, AMPERE 2011
dc.rightsfechado
dc.sourceScopus
dc.titleCombined Microwave And Rotating Pulsed Fluidized Bed Drying Of Poly-hydroxybutyrate
dc.typeActas de congresos


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