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Biotechnol Prog ; 20(3): 799-810, 2004.
Artigo em Inglês | MEDLINE | ID: mdl-15176885

RESUMO

Different ice modifications were obtained during freezing processes at several pressure levels from atmospheric pressure up to 300 MPa. In the pressure range between 210 and 240 MPa, a metastable ice I modification area was observed, as the nucleation of ice I crystals in the thermodynamically stable region of ice III was reached. A significant degree of supercooling was obtained before freezing the tissue water to ice III, which has to be considered when designing pressure-supported freezing processes. The effect of supercooling phenomenon on the phase transition time is discussed using a mathematical model based on the solution of the heat transfer governing differential equations. Phase transition and freezing times for the different freezing paths experimented are compared for the processes: freezing at atmospheric pressure, pressure-assisted freezing, and pressure-shift freezing. Different metastable states of liquid water are defined according to their process-dependent stability.


Assuntos
Modelos Biológicos , Solanum tuberosum/química , Solanum tuberosum/fisiologia , Água/química , Água/metabolismo , Simulação por Computador , Transferência de Energia/fisiologia , Conservação de Alimentos , Congelamento , Gelo/análise , Transição de Fase , Pressão , Temperatura , Condutividade Térmica , Água/análise
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