In situ synchrotron radiation X-ray scattering study on the effect of a stearic sucrose ester on polymorphic behavior of a new sunflower oil variety

The effect of the stearic sucrose ester (SE) S-170 on crystallization behavior and polymorphism of two stearins obtained from a new variety of high stearic high oleic sunflower oil was studied by pulsed nuclear magnetic resonance (p-NMR), small (SAXS) and wide (WAXS) angle X-ray scattering using syn...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Rincón-Cardona, J.A., Agudelo-Laverde, L.M., Martini, S., Candal, R.J., Herrera, M.L.
Formato: JOUR
Materias:
Acceso en línea:http://hdl.handle.net/20.500.12110/paper_09639969_v64_n_p9_RinconCardona
Aporte de:
id todo:paper_09639969_v64_n_p9_RinconCardona
record_format dspace
spelling todo:paper_09639969_v64_n_p9_RinconCardona2023-10-03T15:54:46Z In situ synchrotron radiation X-ray scattering study on the effect of a stearic sucrose ester on polymorphic behavior of a new sunflower oil variety Rincón-Cardona, J.A. Agudelo-Laverde, L.M. Martini, S. Candal, R.J. Herrera, M.L. Crystallization Microstructure Polymorphism Solid fat content Stearic sucrose ester Sunflower oil stearins Crystallization Differential scanning calorimetry Dye-sensitized solar cells Enthalpy Esterification Esters Melting point Microstructure Polymorphism Scattering Supercooling Synchrotron radiation X ray scattering Microstructure Polymorphism Crystallization behavior Crystallization temperature High-oleic sunflower oil Nucleation and growth Polymorphic behavior Pulsed nuclear magnetic resonance Solid fat content Sucrose esters In-situ synchrotrons Sugar (sucrose) Crystallization The effect of the stearic sucrose ester (SE) S-170 on crystallization behavior and polymorphism of two stearins obtained from a new variety of high stearic high oleic sunflower oil was studied by pulsed nuclear magnetic resonance (p-NMR), small (SAXS) and wide (WAXS) angle X-ray scattering using synchrotron light and differential scanning calorimetry (DSC). p-NMR studies showed that there is always a crystallization temperature below which SE S-170 accelerated crystallization and above which SE S-170 delayed nucleation and growth. The effect of SE S-170 strongly depended on supercooling. It was efficient as a seed for high supercooling (low crystallization temperatures) but this efficiency diminished at low supercooling (temperatures close to the melting point) when few crystals were formed. SAXS and WAXS results demonstrated that depending on crystallization temperature SE S-170 promoted crystallization of α and β forms with more polymorphic similarity and inhibited occurrence of β' forms especially the β'2 polymorph. However, in some conditions SE S-170 favored crystallization of β'1 polymorph. DSC experiments showed that SE S-170 significantly diminished total melting enthalpies when the effect was a delay in crystallization. For other conditions no significant differences were found in melting temperatures or total melting enthalpies. When stearins were stored at 25°C, crystallization in the β2 form was promoted. Depending on crystallization temperature, polymorphic forms β'1 and β2 may be obtained as the main polymorphic forms. This is very relevant from the technological point of view. Depending on the application, SE S-170 may help obtain the required polymorphic form: β'1 form for spreads and β2 polymorph for chocolate production. © 2014 Elsevier Ltd. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_09639969_v64_n_p9_RinconCardona
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Crystallization
Microstructure
Polymorphism
Solid fat content
Stearic sucrose ester
Sunflower oil stearins
Crystallization
Differential scanning calorimetry
Dye-sensitized solar cells
Enthalpy
Esterification
Esters
Melting point
Microstructure
Polymorphism
Scattering
Supercooling
Synchrotron radiation
X ray scattering
Microstructure
Polymorphism
Crystallization behavior
Crystallization temperature
High-oleic sunflower oil
Nucleation and growth
Polymorphic behavior
Pulsed nuclear magnetic resonance
Solid fat content
Sucrose esters
In-situ synchrotrons
Sugar (sucrose)
Crystallization
spellingShingle Crystallization
Microstructure
Polymorphism
Solid fat content
Stearic sucrose ester
Sunflower oil stearins
Crystallization
Differential scanning calorimetry
Dye-sensitized solar cells
Enthalpy
Esterification
Esters
Melting point
Microstructure
Polymorphism
Scattering
Supercooling
Synchrotron radiation
X ray scattering
Microstructure
Polymorphism
Crystallization behavior
Crystallization temperature
High-oleic sunflower oil
Nucleation and growth
Polymorphic behavior
Pulsed nuclear magnetic resonance
Solid fat content
Sucrose esters
In-situ synchrotrons
Sugar (sucrose)
Crystallization
Rincón-Cardona, J.A.
Agudelo-Laverde, L.M.
Martini, S.
Candal, R.J.
Herrera, M.L.
In situ synchrotron radiation X-ray scattering study on the effect of a stearic sucrose ester on polymorphic behavior of a new sunflower oil variety
topic_facet Crystallization
Microstructure
Polymorphism
Solid fat content
Stearic sucrose ester
Sunflower oil stearins
Crystallization
Differential scanning calorimetry
Dye-sensitized solar cells
Enthalpy
Esterification
Esters
Melting point
Microstructure
Polymorphism
Scattering
Supercooling
Synchrotron radiation
X ray scattering
Microstructure
Polymorphism
Crystallization behavior
Crystallization temperature
High-oleic sunflower oil
Nucleation and growth
Polymorphic behavior
Pulsed nuclear magnetic resonance
Solid fat content
Sucrose esters
In-situ synchrotrons
Sugar (sucrose)
Crystallization
description The effect of the stearic sucrose ester (SE) S-170 on crystallization behavior and polymorphism of two stearins obtained from a new variety of high stearic high oleic sunflower oil was studied by pulsed nuclear magnetic resonance (p-NMR), small (SAXS) and wide (WAXS) angle X-ray scattering using synchrotron light and differential scanning calorimetry (DSC). p-NMR studies showed that there is always a crystallization temperature below which SE S-170 accelerated crystallization and above which SE S-170 delayed nucleation and growth. The effect of SE S-170 strongly depended on supercooling. It was efficient as a seed for high supercooling (low crystallization temperatures) but this efficiency diminished at low supercooling (temperatures close to the melting point) when few crystals were formed. SAXS and WAXS results demonstrated that depending on crystallization temperature SE S-170 promoted crystallization of α and β forms with more polymorphic similarity and inhibited occurrence of β' forms especially the β'2 polymorph. However, in some conditions SE S-170 favored crystallization of β'1 polymorph. DSC experiments showed that SE S-170 significantly diminished total melting enthalpies when the effect was a delay in crystallization. For other conditions no significant differences were found in melting temperatures or total melting enthalpies. When stearins were stored at 25°C, crystallization in the β2 form was promoted. Depending on crystallization temperature, polymorphic forms β'1 and β2 may be obtained as the main polymorphic forms. This is very relevant from the technological point of view. Depending on the application, SE S-170 may help obtain the required polymorphic form: β'1 form for spreads and β2 polymorph for chocolate production. © 2014 Elsevier Ltd.
format JOUR
author Rincón-Cardona, J.A.
Agudelo-Laverde, L.M.
Martini, S.
Candal, R.J.
Herrera, M.L.
author_facet Rincón-Cardona, J.A.
Agudelo-Laverde, L.M.
Martini, S.
Candal, R.J.
Herrera, M.L.
author_sort Rincón-Cardona, J.A.
title In situ synchrotron radiation X-ray scattering study on the effect of a stearic sucrose ester on polymorphic behavior of a new sunflower oil variety
title_short In situ synchrotron radiation X-ray scattering study on the effect of a stearic sucrose ester on polymorphic behavior of a new sunflower oil variety
title_full In situ synchrotron radiation X-ray scattering study on the effect of a stearic sucrose ester on polymorphic behavior of a new sunflower oil variety
title_fullStr In situ synchrotron radiation X-ray scattering study on the effect of a stearic sucrose ester on polymorphic behavior of a new sunflower oil variety
title_full_unstemmed In situ synchrotron radiation X-ray scattering study on the effect of a stearic sucrose ester on polymorphic behavior of a new sunflower oil variety
title_sort in situ synchrotron radiation x-ray scattering study on the effect of a stearic sucrose ester on polymorphic behavior of a new sunflower oil variety
url http://hdl.handle.net/20.500.12110/paper_09639969_v64_n_p9_RinconCardona
work_keys_str_mv AT rinconcardonaja insitusynchrotronradiationxrayscatteringstudyontheeffectofastearicsucroseesteronpolymorphicbehaviorofanewsunfloweroilvariety
AT agudelolaverdelm insitusynchrotronradiationxrayscatteringstudyontheeffectofastearicsucroseesteronpolymorphicbehaviorofanewsunfloweroilvariety
AT martinis insitusynchrotronradiationxrayscatteringstudyontheeffectofastearicsucroseesteronpolymorphicbehaviorofanewsunfloweroilvariety
AT candalrj insitusynchrotronradiationxrayscatteringstudyontheeffectofastearicsucroseesteronpolymorphicbehaviorofanewsunfloweroilvariety
AT herreraml insitusynchrotronradiationxrayscatteringstudyontheeffectofastearicsucroseesteronpolymorphicbehaviorofanewsunfloweroilvariety
_version_ 1782027192007393280