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  4. Polymer-Solvent Interactions in Modified Starches Pastes–Electrokinetic, Dynamic Light Scattering, Rheological and Low Field Nuclear Magnetic Resonance Approach
 
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Polymer-Solvent Interactions in Modified Starches Pastes–Electrokinetic, Dynamic Light Scattering, Rheological and Low Field Nuclear Magnetic Resonance Approach

Type
Journal article
Language
English
Date issued
2022
Author
Makowska, Agnieszka 
Dwiecki, Krzysztof 
Kubiak, Piotr 
Baranowska, Hanna Maria 
Lewandowicz, Grażyna 
Faculty
Wydział Nauk o Żywności i Żywieniu
Journal
Polymers
ISSN
2073-4360
DOI
10.3390/polym14152977
Web address
https://www.mdpi.com/2073-4360/14/15/2977
Volume
14
Number
15
Pages from-to
art. 2977
Abstract (EN)
Starch paste is a very complex dispersion that cannot be clearly classified as a solution, colloid or suspension and many factors affects its properties. As these ambiguities constitute a barrier to technological development, the aim of this study was to investigate the interaction of starch macromolecules with water by analysing the results of rheological properties, low field nuclear magnetic resonance (LF NMR), dynamic light scattering (DLS) and ζ potential analyses. Starch pastes with a concentration of 1%, prepared with distilled water and buffered to pH values of 2.5, 7.0 and 9.5 were analysed. It was proved that the pH buffering substantially decreased the values of consistency index but the pH value itself was not significant. LF NMR studies indicated that the dissolution of starch in water resulted in a reduction in spin-lattice as well as spin-spin relaxation times. Moreover, changes in relaxation times followed the patterns observed in rheological studies. Electrokinetic and DLS analyses showed that potential values are primarily influenced by the properties of the starches themselves and, to a lesser extent, by the environmental conditions. The conducted research also showed complementarity and, to some extent, substitutability of the applied research methods as well as exclusion chromatography (a method not used in this work).
Keywords (EN)
  • starch

  • potential

  • hydrodynamic diameter

  • consistency index

  • flow behaviour index

  • spin-lattice relaxation time

  • spin-spin relaxation time

  • mean correlation time

License
cc-bycc-by CC-BY - Attribution
Open access date
July 22, 2022
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