Swelling and pore structure in starchy materials

The specific surface areas of different starchy materials were determined by means of the t-method, their values being practically constant in the range of water activities 0·10-0·80. The straightness of the v1-t plots observed in all cases indicated the absence of an intrinsic microporous structure...

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Autor principal: Aguerre, Roberto Jorge
Publicado: 1989
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Acceso en línea:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_02608774_v9_n1_p71_Aguerre
http://hdl.handle.net/20.500.12110/paper_02608774_v9_n1_p71_Aguerre
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spelling paper:paper_02608774_v9_n1_p71_Aguerre2023-06-08T15:22:44Z Swelling and pore structure in starchy materials Aguerre, Roberto Jorge Carbohydrates--Porosity Flow of Fluids--Visualization Granular Materials--Porosity Mathematical Techniques--Curve Fitting Interlamellar Expansion Intrinsic Microporous Structure Pore Structure Absence Specific Surface Areas Starch Granule Structures Starchy Materials Pore Structure Starch The specific surface areas of different starchy materials were determined by means of the t-method, their values being practically constant in the range of water activities 0·10-0·80. The straightness of the v1-t plots observed in all cases indicated the absence of an intrinsic microporous structure. The lack of a pore structure and the high values of the specific surface areas are explained on the basis of the interlamellar expansion of the starch granule structures on uptake of water. © 1989. Fil:Aguerre, R.J. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. 1989 https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_02608774_v9_n1_p71_Aguerre http://hdl.handle.net/20.500.12110/paper_02608774_v9_n1_p71_Aguerre
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Carbohydrates--Porosity
Flow of Fluids--Visualization
Granular Materials--Porosity
Mathematical Techniques--Curve Fitting
Interlamellar Expansion
Intrinsic Microporous Structure
Pore Structure Absence
Specific Surface Areas
Starch Granule Structures
Starchy Materials Pore Structure
Starch
spellingShingle Carbohydrates--Porosity
Flow of Fluids--Visualization
Granular Materials--Porosity
Mathematical Techniques--Curve Fitting
Interlamellar Expansion
Intrinsic Microporous Structure
Pore Structure Absence
Specific Surface Areas
Starch Granule Structures
Starchy Materials Pore Structure
Starch
Aguerre, Roberto Jorge
Swelling and pore structure in starchy materials
topic_facet Carbohydrates--Porosity
Flow of Fluids--Visualization
Granular Materials--Porosity
Mathematical Techniques--Curve Fitting
Interlamellar Expansion
Intrinsic Microporous Structure
Pore Structure Absence
Specific Surface Areas
Starch Granule Structures
Starchy Materials Pore Structure
Starch
description The specific surface areas of different starchy materials were determined by means of the t-method, their values being practically constant in the range of water activities 0·10-0·80. The straightness of the v1-t plots observed in all cases indicated the absence of an intrinsic microporous structure. The lack of a pore structure and the high values of the specific surface areas are explained on the basis of the interlamellar expansion of the starch granule structures on uptake of water. © 1989.
author Aguerre, Roberto Jorge
author_facet Aguerre, Roberto Jorge
author_sort Aguerre, Roberto Jorge
title Swelling and pore structure in starchy materials
title_short Swelling and pore structure in starchy materials
title_full Swelling and pore structure in starchy materials
title_fullStr Swelling and pore structure in starchy materials
title_full_unstemmed Swelling and pore structure in starchy materials
title_sort swelling and pore structure in starchy materials
publishDate 1989
url https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_02608774_v9_n1_p71_Aguerre
http://hdl.handle.net/20.500.12110/paper_02608774_v9_n1_p71_Aguerre
work_keys_str_mv AT aguerrerobertojorge swellingandporestructureinstarchymaterials
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