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Acceleration of soluble matter extraction from chicory with pulsed electric fields
Authors:KV Loginova  MV Shynkaryk  NI Lebovka  E Vorobiev  
Affiliation:aUnité Transformations Intégrées de la Matière Renouvelable, Université de Technologie de Compiègne, Centre de Recherches de Royallieu, B.P. 20529-60205 Compiègne Cedex, France;bInstitute of Biocolloidal Chemistry named after F.D. Ovcharenko, NAS of Ukraine, 42, Blvr. Vernadskogo, Kyiv 03142, Ukraine
Abstract:This work discusses effects of thermal and PEF treatments on efficiency of soluble solids extraction from chicory tissues. The effects of temperature, PEF electric field strength and time of treatment on damage degree and acceleration of the soluble matter extraction kinetics are discussed. The PEF treatment with field strength 100–600 V/cm, treatment time 10−3–50 s, and temperature 20–80 °C, was applied. The activation energy of usual thermal damage was rather high (Wτ ≈ 263 kJ/mol), however, it can be noticeably reduced to Wτ = 30–40 kJ/mol by application of PEF treatment. The moderate electric energy consumption (U < 10 kJ/kg) at room temperatures demands application of relatively high electric field strength (400–600 V/cm), however, the value of U noticeably decreases with temperature increase. The benefits of PEF application for enhancement of the soluble matter extraction from chicory were demonstrated. The PEF-pretreatment noticeably accelerated diffusion even at low temperatures within 20–40 °С. Proposed technique appears to be promising for future industrial applications of “cold” soluble matter extraction from chicory roots.
Keywords:Chicory roots  Pulsed electric fields  Thermal treatment  Soluble matter extraction  Effective diffusion coefficient
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