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Please use this identifier to cite or link to this item: https://oldena.lpnu.ua/handle/ntb/46499
Title: The Study of Calcium Hydroxide Structure and its Physico-Chemical and Electrokinetic Properties in Sugar Production
Other Titles: Дослідження структури, фізико-хімічних і електрокінетичних властивостей гідроксиду кальцію у цукровому виробництві
Authors: Vyerchenko, Lidiia
Tkachenko, Serhii
Sheiko, Tamila
Kos, Tetiana
Dzhohan, Olha
Vasyliv, Volodymyr
Affiliation: National Academy of Agrarian Sciences of Ukraine
National University of Life and Environment Sciences of Ukraine
Bibliographic description (Ukraine): The Study of Calcium Hydroxide Structure and its Physico-Chemical and Electrokinetic Properties in Sugar Production / Lidiia Vyerchenko, Serhii Tkachenko, Tamila Sheiko, Tetiana Kos, Olha Dzhohan, Volodymyr Vasyliv // Chemistry & Chemical Technology. — Lviv : Lviv Politechnic Publishing House, 2019. — Vol 13. — No 4. — P. 477–481.
Bibliographic description (International): The Study of Calcium Hydroxide Structure and its Physico-Chemical and Electrokinetic Properties in Sugar Production / Lidiia Vyerchenko, Serhii Tkachenko, Tamila Sheiko, Tetiana Kos, Olha Dzhohan, Volodymyr Vasyliv // Chemistry & Chemical Technology. — Lviv : Lviv Politechnic Publishing House, 2019. — Vol 13. — No 4. — P. 477–481.
Is part of: Chemistry & Chemical Technology, 4 (13), 2019
Issue: 4
Issue Date: 28-Feb-2019
Publisher: Видавництво Львівської політехніки
Lviv Politechnic Publishing House
Place of the edition/event: Львів
Lviv
Keywords: дифузійний сік
вапняне молоко
реологічні властивості
електрокінетичний потенціал
raw juice
lime cream
rheological properties
electrokinetic potential
Number of pages: 5
Page range: 477-481
Start page: 477
End page: 481
Abstract: В статті наведено деякі основні положення впливу методів одержання вапняного молока та його фізико-хімічної природи на технологічний процес очищення дифузійного соку. Запропоновані засоби запобігання порушень технологічного режиму очищення дифузійного соку, які спричинені методами приготування вапняного молока. Досліджено електрокінетичний потенціал вапняного молока та запропоновано структуру міцели гідроксиду кальцію вапняного молока.
This article discusses the influence of the methods of lime cream generation and its physicochemical properties on raw juice purification process. It offers some measures for the raw juice clarification process failure prevention that stem from the methods of lime cream preparation. The electrokinetic potential of the lime cream is studied and the structure of calcium hydroxide micelle is proposed.
URI: https://ena.lpnu.ua/handle/ntb/46499
Copyright owner: © Національний університет „Львівська політехніка“, 2019
© Vyerchenko L., Tkachenko S., Sheiko T., Kos T., Dzhohan O., Vasyliv V., 2019
URL for reference material: https://doi.org/10.1080/02726358908906533
References (Ukraine): 1. Gusaruk T., Vyerchenko L., Homichak L. et al.: Tsukor Ukrainy, 2007, 2, 28.
2. Shaw D.: Introduction to Colloid and Surface Chemistry, 4th edn. Butterworth-Heinemann, Oxford 2013.
3. Vyerchenko L., Homichak L., Gusaruk T. et al.: Tsukor Ukrayiny, 2005, 1-2, 31.
4. Susie X., Cheng K., Kurtz L. et al.: Particul. Sci. Technol., 1989, 7, 139. https://doi.org/10.1080/02726358908906533
5. Ohshima H.: Theory of Colloid and Interfacial Electric Phenomena, 1st edn. Academic Press, Oxford 2006.
6. Zetasizer Nano User’s manual. Malvern Instruments Ltd., Malvern, United Kingdom 2009.
7. ASTMStandard D4187-82 (1985) Test Methods For Zeta Potential Of Colloids In Water And Waste Water, American Society for Testing andMaterials, West Conshohocken, Pennsylvania 1985.
8. YarchukM., KalinichenkoM., Chupahina V.: Pravila vedennya tehnologichnogo protsesu virobnitstva tsukru z tsukrovih buryakiv. Pravila ustalenoyi praktiki. Tsukor Ukrayiny, Kiev, 2007.
9. Fennell P., Anthony B.: Calcium and Chemical Looping Technology for Power Generation and Carbon Dioxide (CO2) Capture. Woodhead Publishing, Oxford 2015.
10. Gusaruk T., Verchenko L., Homichak L.: Pat. UA 20060454, Publ. Oct. 16, 2006.
11. Aitsin P.-C., Flatt R.: Science and Technology of Concrete Admixtures, 1st edn. Woodhead Publishing, Oxford 2015.
12. Tkachenko S., Sheiko T., Dzhohan O. et al.: Tsukor Ukrainy, 2018, 2(144), 28.
13. Lambert I., Clever H.: Alkaline Earth Hydroxides in Water and Aqueous Solutions, 1st edn. Pergamon, Oxford 1992.
14. Savostin A., Shurai P.: Sahar, 2008, 5, 64.
15. Hewlett P.: Lea's Chemistry of Cement and Concrete, 4 edn. Butterworth-Heinemann, Oxford 2003.
16. Wittneben U.: Zement-Kalk-Gips, 1980, 33, 526.
References (International): 1. Gusaruk T., Vyerchenko L., Homichak L. et al., Tsukor Ukrainy, 2007, 2, 28.
2. Shaw D., Introduction to Colloid and Surface Chemistry, 4th edn. Butterworth-Heinemann, Oxford 2013.
3. Vyerchenko L., Homichak L., Gusaruk T. et al., Tsukor Ukrayiny, 2005, 1-2, 31.
4. Susie X., Cheng K., Kurtz L. et al., Particul. Sci. Technol., 1989, 7, 139. https://doi.org/10.1080/02726358908906533
5. Ohshima H., Theory of Colloid and Interfacial Electric Phenomena, 1st edn. Academic Press, Oxford 2006.
6. Zetasizer Nano User’s manual. Malvern Instruments Ltd., Malvern, United Kingdom 2009.
7. ASTMStandard D4187-82 (1985) Test Methods For Zeta Potential Of Colloids In Water And Waste Water, American Society for Testing andMaterials, West Conshohocken, Pennsylvania 1985.
8. YarchukM., KalinichenkoM., Chupahina V., Pravila vedennya tehnologichnogo protsesu virobnitstva tsukru z tsukrovih buryakiv. Pravila ustalenoyi praktiki. Tsukor Ukrayiny, Kiev, 2007.
9. Fennell P., Anthony B., Calcium and Chemical Looping Technology for Power Generation and Carbon Dioxide (CO2) Capture. Woodhead Publishing, Oxford 2015.
10. Gusaruk T., Verchenko L., Homichak L., Pat. UA 20060454, Publ. Oct. 16, 2006.
11. Aitsin P.-C., Flatt R., Science and Technology of Concrete Admixtures, 1st edn. Woodhead Publishing, Oxford 2015.
12. Tkachenko S., Sheiko T., Dzhohan O. et al., Tsukor Ukrainy, 2018, 2(144), 28.
13. Lambert I., Clever H., Alkaline Earth Hydroxides in Water and Aqueous Solutions, 1st edn. Pergamon, Oxford 1992.
14. Savostin A., Shurai P., Sahar, 2008, 5, 64.
15. Hewlett P., Lea's Chemistry of Cement and Concrete, 4 edn. Butterworth-Heinemann, Oxford 2003.
16. Wittneben U., Zement-Kalk-Gips, 1980, 33, 526.
Content type: Article
Appears in Collections:Chemistry & Chemical Technology. – 2019. – Vol. 13, No. 4

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