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Karl Fischer-titrering×Accelereret holdbarhedstest×DSC Gelatinisering×
FagområdeFødevarevidenskabFødevarevidenskabFødevarevidenskab
FamilieProcess / pipelineProcess / pipelineProcess / pipeline
Oprindelsesår193519751985
OphavspersonKarl FischerMizrahi and SymbolisticMultiple researchers
TypeTitrimetric Water DeterminationDegradation Kinetics MethodThermodynamic Characterization
Oprindelig kildeKarl Fischer. Neue Methode zur Maßstabbestimmung des Wassers in Flüssigkeiten und Gasen. Angewandte Chemie, 48(44), 394-396. (1935) link ↗Mizrahi, S. (1996). Kinetic models of food quality and shelf-life: A review. Journal of Food Quality, 19(4), 315-340. link ↗Biliaderis, C. G. (1991). The structure and interactions of starch with food constituents. Canadian Journal of Physiology and Pharmacology, 69(1), 60-78. DOI ↗
AliasserKFTASLTDSC, differential scanning calorimetry
Relaterede333
ResuméKarl Fischer Titration (KFT) is a precise analytical method for determining water content in food and pharmaceutical products. Developed by Karl Fischer in 1935, KFT uses a chemical reaction between water and an iodine-based titrant, allowing quantification of moisture with exceptional accuracy and sensitivity. KFT is the official gold-standard method for water determination in numerous food and pharmaceutical standards worldwide.Accelerated Shelf-Life Testing (ASLT) uses elevated temperature and controlled storage conditions to rapidly assess product degradation and predict realistic shelf-life without waiting months. By measuring quality parameters (moisture, acidity, nutrient levels, microbial growth) at accelerated conditions and applying kinetic modeling, ASLT predicts expiration dates and optimal storage parameters before market launch.Differential Scanning Calorimetry (DSC) is a thermal analysis technique that measures the heat absorbed or released by a sample as temperature changes, enabling characterization of starch gelatinization—the structural transformation of starch granules when heated with water. DSC reveals the temperature at which starch swells, the energy required, and the range over which this occurs, providing insight into starch source, processing history, and ingredient interactions.
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ScholarGateSammenlign metoder: Karl Fischer Titration · Accelerated Shelf-Life Testing · DSC Gelatinization. Hentet 2026-06-20 fra https://scholargate.app/da/compare