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Please use this identifier to cite or link to this item: https://oldena.lpnu.ua/handle/ntb/40499
Title: Peculiarites of benzene decomposition in cavitation fields
Authors: Znak, Zynovii
Sukhatskii, Yurii
Zin, Olha
Mnykh, Roman
Khomiak, Semen
Hrabarovska, Anastasiia
Affiliation: Lviv Polytechnic National University
Bibliographic description (Ukraine): Peculiarites of benzene decomposition in cavitation fields / Zynovii Znak, Yurii Sukhatskii, Olha Zin, Roman Mnykh, Semen Khomiak, Anastasiia Hrabarovska // Litteris et Artibus : proceedings, 23–25 November, 2017. — Lviv : Lviv Polytechnic Publishing House, 2017. — P. 26–27. — (6th International academic conference «Chemistry & chemical technology 2017» (CCT-2017)).
Bibliographic description (International): Peculiarites of benzene decomposition in cavitation fields / Zynovii Znak, Yurii Sukhatskii, Olha Zin, Roman Mnykh, Semen Khomiak, Anastasiia Hrabarovska // Litteris et Artibus : proceedings, 23–25 November, 2017. — Lviv : Lviv Polytechnic Publishing House, 2017. — P. 26–27. — (6th International academic conference «Chemistry & chemical technology 2017» (CCT-2017)).
Is part of: Litteris et Artibus : матеріали, 2017
Litteris et Artibus : proceedings, 2017
Conference/Event: 7th International youth science forum «Litteris et Artibus»
Journal/Collection: Litteris et Artibus : матеріали
Issue Date: 23-Dec-2017
Publisher: Видавництво Львівської політехніки
Lviv Polytechnic Publishing House
Place of the edition/event: Львів
Lviv
Temporal Coverage: 23–25 листопада 2017 року
23–25 November, 2017
Keywords: cavitation fields
decomposition
benzene
ultrasonic magnetostrictive emitter
stationary treatment mode
Number of pages: 2
Page range: 26-27
Start page: 26
End page: 27
Abstract: It is proposed to carry out treatment of wastewaters, containing of aromatic compounds, in particular benzene, in cavitation fields. The results of studies of the cavitational decomposition of benzene under isothermal conditions (at temperatures 303, 313 and 323 K) are presented. The extremal characterof the dependence of the degree of decomposition of benzene from temperature with a minimum of 313 K is established. An abnormal appearance of the dependence is explained by possibility of occurrence of secondary processes , namely the formation of gas bubbles of nanometer sizes (babstons) and their clusters, which have high mechanical resistance and diffusivityy, and also on the basis of the kinetic theory of Frenkel's fluid.Recommendations for the implementation of the benzene decomposition process in cavitation fields are formulated on the basis of the results of experimental studies.
URI: https://ena.lpnu.ua/handle/ntb/40499
ISBN: 978-966-941-108-2
Copyright owner: © Національний університет “Львівська політехніка”, 2017
References (Ukraine): [1] Yu. V. Sukhatskii, “Hidrodynamichnyi kavitator dlia kavitatsiino-flotatsiinoho rozdilennia vodnykh heterohennykh seredovyshch” [“Hydrodynamic cavitator for cavitation-flotation separation of water heterogeneous environments”], Vydavnytstvo Natsionalnoho universytetu “Lvivska politekhnika” – Publishing House of the National University “Lviv Polytechnic”, p.24, 2017.
[2] O. I. Nekoz, O. A. Lytvynenko, R. V. Lohvinskyi, “Kavitatsiina tekhnolohiia ochyshchennia stichnykh vod vid toksychnykh rechovyn” [“Cavitation technology for wastewater treatment from toxic substances”], Vibratsii v tekhnitsi ta tekhnolohiiakh,vol. 2 (66) – Vibrations in technics and technologies vol. 2 (66), pp. 112-115, 2012.
[3] M. A. Margulis, “Zvukohimicheskie reaktsii i sonolyuminestsentsiya” [“Sonochemical reactions and sonoluminescence”], Himiya – Chemistry, 1986, p. 286.
[4] N. F. Bunkin, N. V. Suyazov, A. V. Shkirin, P. S. Ignatev, K. V. Indukaev “Klasternaya struktura stabilnyih nanopuzyirey rastvorennogo gaza v gluboko ochischennoy vode” [“Cluster structure of stable nano-bubbles of dissolved gas in deeply purified water”], ZhETF, T. 135, Vol. 5, pp. 917-937, 2009.
[5] A. N. Smirnov, A. V. Syiroeshkin, “Supranadmolekulyarnyie kompleksyi vodyi” [“Supramolecular water complexes”], Ros. him. zh. – Russian chemical journal, T.48, vol. 2, pp. 125-135, 2004.
[6] I. Ignatov, O. V. Mosin, B. Velikv, “Matematicheskie modeli, opisyivayuschie strukturu vodyi" [“Mathematical models describing the structure of water”], Internet-zhurnal “Nauko-vedenie” – Internet-journal "Science-Management", vol. 3, p. 25, 2013.
References (International): [1] Yu. V. Sukhatskii, "Hidrodynamichnyi kavitator dlia kavitatsiino-flotatsiinoho rozdilennia vodnykh heterohennykh seredovyshch" ["Hydrodynamic cavitator for cavitation-flotation separation of water heterogeneous environments"], Vydavnytstvo Natsionalnoho universytetu "Lvivska politekhnika" – Publishing House of the National University "Lviv Polytechnic", p.24, 2017.
[2] O. I. Nekoz, O. A. Lytvynenko, R. V. Lohvinskyi, "Kavitatsiina tekhnolohiia ochyshchennia stichnykh vod vid toksychnykh rechovyn" ["Cavitation technology for wastewater treatment from toxic substances"], Vibratsii v tekhnitsi ta tekhnolohiiakh,vol. 2 (66) – Vibrations in technics and technologies vol. 2 (66), pp. 112-115, 2012.
[3] M. A. Margulis, "Zvukohimicheskie reaktsii i sonolyuminestsentsiya" ["Sonochemical reactions and sonoluminescence"], Himiya – Chemistry, 1986, p. 286.
[4] N. F. Bunkin, N. V. Suyazov, A. V. Shkirin, P. S. Ignatev, K. V. Indukaev "Klasternaya struktura stabilnyih nanopuzyirey rastvorennogo gaza v gluboko ochischennoy vode" ["Cluster structure of stable nano-bubbles of dissolved gas in deeply purified water"], ZhETF, T. 135, Vol. 5, pp. 917-937, 2009.
[5] A. N. Smirnov, A. V. Syiroeshkin, "Supranadmolekulyarnyie kompleksyi vodyi" ["Supramolecular water complexes"], Ros. him. zh, Russian chemical journal, T.48, vol. 2, pp. 125-135, 2004.
[6] I. Ignatov, O. V. Mosin, B. Velikv, "Matematicheskie modeli, opisyivayuschie strukturu vodyi" ["Mathematical models describing the structure of water"], Internet-zhurnal "Nauko-vedenie" – Internet-journal "Science-Management", vol. 3, p. 25, 2013.
Content type: Conference Abstract
Appears in Collections:Litteris et Artibus. – 2017 р.

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