CaO&CaSO4 and CaO&Al2(SO4)3 as Pectin Precipitants–Model of Overlapping Diffuse Layers
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Published:2018-07-10
Issue:1
Volume:63
Page:239-245
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ISSN:1587-3765
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Container-title:Periodica Polytechnica Chemical Engineering
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language:
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Short-container-title:Period. Polytech. Chem. Eng.
Author:
Kuljanin Tatjana A.,Filipović Vladimir S.,Nićetin Milica R.,Lončar Biljana Lj.,Filipčev Bojana V.,Pezo Lato L.
Abstract
This work is concerned with the theoretical basis of novel sugar beet juice purification method using binary systems CaO&CaSO4 and CaO&Al2(SO4)3. The Gouy–Chapman–Stern (GCS) model of overlapping of diffuse layers of EDLs on pectin surface and that on Ca2+ and Al3+ ions, theoretically explains this method. The change of the zeta potential was used to quantitatively indicate overlapping of diffuse layers. For the experiment two model solutions of pectin (0.1 % w/w) were prepared, while the concentrations of CaO&CaSO4 and CaO&Al2(SO4)3 in the range of 50–500 g dm-3 were used. The greater decrease in the absolute value of zeta potential indicated greater overlapping of diffuse layers between pectin particles and Ca2+ and Al3+ ions and faster coagulation of pectin. The overlapping degree increased with increased concentration of these binary systems. Pectin with a greater surface charge and multivalent Al3+ from CaO&Al2(SO4), exerted a greater impact on the zeta potential. Optimal quantities of the applied binary mixtures were as follows: 256–640 mg g-1 pectin. This is much lower than CaO commonly used in the conventional process of sugar beet juice purification (about 9 g g-1 pectin).
Publisher
Periodica Polytechnica Budapest University of Technology and Economics
Subject
General Chemical Engineering