Journal of Food Process Engineering · 2008 · 42 citations · 23 references
Solvent ExtractionEngineeringFood AnalysisMembrane FoulingFood ChemistryChemical EngineeringSouth AmericaFouling OccurrencesSeparation ScienceAnalytical ChemistryPurification MethodAdvanced SeparationFood TechnologyChromatographyHealth SciencesBiochemistrySeparation TechnologyFood QualityBiomolecular EngineeringEnvironmental EngineeringWater PurificationFood EngineeringFood ProcessingSeed Processing
ABSTRACT Stevia rebaudiana Bertoni is a native plant from South America and its active constituents have been considered the “sweeteners of the future.” Stevia is a natural diet‐sweetening source, safe to health and without calories. However, the obtained raw extract is foul smelling, bitter tasting, dark brown colored, and presents suspension matter due to organic and inorganic compounds. Therefore, further purification/clarification is essential in order to get a product of commercial quality. In this work ceramic membranes were applied in the stevia extract clarification process. The process was carried out under different membrane pore sizes and at different pressure values. The best clarification result was obtained with the membrane of 0.1 µ m at 4 bar. On the other hand, the best condition for the flux was obtained with the membrane of 0.2 µ m at 6 bar. The process with all the tested membranes and conditions achieved recovery of sweeteners higher than 90%. Finally, a filtration mathematical model was applied to describe the flux behavior, showing that the main fouling phenomenon during the process occurred because of the complete blocking of pores. PRACTICAL APPLICATION Stevia is the world's only all‐natural sweetener with zero calories, zero carbohydrates and a zero glycemic index. However, the obtained stevia extract has a dark brown appearance, mainly because of the presence of impurities. In this work the membrane separation process was studied for stevia extract clarification and purification in order to get a product with higher commercial acceptability. The obtained results showed that total clarification and recuperation of sweeteners was almost achieved. Nonetheless, membrane fouling is an inevitable problem during membrane filtration. The mathematical analysis of the fouling occurrences showed that the complete blocking of pores is the main cause for the membrane permeability decrease.
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Critical flux concept for microfiltration fouling
Robert W. Field, Dan Wu, John Howell et al. · Journal of Membrane Science · 1995 · 1.4K citations
Filtration, Environmental Engineering, Critical Flux Concept +2
Molecules of Interest Stevioside
Jan M.C. Geuns · Phytochemistry · 2003 · 273 citations