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scopus(6)
Comparison of porous starches obtained from different enzyme types and levels
ArticleAbstract: The objective was to compare the action of different hydrolases for producing porous corn starches.Palabras claves:Amyloglucosidase, Branching enzyme, CGtase, Microstructure, porous starch, α-amylaseAutores:Benavent-Gil Y., Cristina M. RosellFuentes:scopusQuantifying the surface properties of enzymatically-made porous starches by using a surface energy analyzer
ArticleAbstract: The behavior of starch during processing and its performance in products is influenced by the surfacPalabras claves:Enzymes, Inverse gas chromatography, porous starch, Starch structure, Surface energetics, Water-sorptionAutores:Benavent-Gil Y., Carvajal T., Cristina M. Rosell, Martínez M.M., Martinez-Alejo J.M.Fuentes:scopusPerformance of Granular Starch with Controlled Pore Size during Hydrolysis with Digestive Enzymes
ArticleAbstract: Studies on porous starch have been directed to explore different industrial applications as bio-adsoPalabras claves:digestibility, Enzymes, glycemic index, porous starchAutores:Benavent-Gil Y., Cristina M. RosellFuentes:scopusPhysicochemical Properties of Gels Obtained from Corn Porous Starches with Different Levels of Porosity
ArticleAbstract: Porous starches are attracting much attention owing to their adsorption ability of different compounPalabras claves:gel matrix, Microstructure, porous starch, viscoelastic behaviorAutores:Benavent-Gil Y., Cristina M. Rosell, Gómez M., Román L.Fuentes:scopusMorphological and physicochemical characterization of porous starches obtained from different botanical sources and amylolytic enzymes
ArticleAbstract: Porous starches might offer an attractive alternative as bio-adsorbents of a variety of compounds. HPalabras claves:Amyloglucosidase, CGtase, Enzymes, Microstructure, porous starch, α-amylaseAutores:Benavent-Gil Y., Cristina M. RosellFuentes:scopusThermal stabilization of probiotics by adsorption onto porous starches
ArticleAbstract: Industrial processing factors, such as temperature, compromise the viability of probiotic cells. ObjPalabras claves:Amylase, Amyloglucosidase, Enzymes, L. plantarum, porous starch, probiotics, Thermal stabilityAutores:Benavent-Gil Y., Cristina M. Rosell, Rodrigo D.Fuentes:scopus