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Please use this identifier to cite or link to this item: https://oldena.lpnu.ua/handle/ntb/40472
Title: Bitumen modified by phenol-cresol-formaldehyde resins obtained from coking by-products
Authors: Demchuk, Yuriy
Gunka, Volodymyr
Pyshyev, Serhiy
Bratychak, Michael
Lypko, Yuriy
Affiliation: Lviv Polytechnic National University
Bibliographic description (Ukraine): Bitumen modified by phenol-cresol-formaldehyde resins obtained from coking by-products / Yuriy Demchuk, Volodymyr Gunka, Serhiy Pyshyev, Michael Bratychak, Yuriy Lypko // Litteris et Artibus : proceedings, 23–25 November, 2017. — Lviv : Lviv Polytechnic Publishing House, 2017. — P. 66–67. — (6th International academic conference «Chemistry & chemical technology 2017» (CCT-2017)).
Bibliographic description (International): Bitumen modified by phenol-cresol-formaldehyde resins obtained from coking by-products / Yuriy Demchuk, Volodymyr Gunka, Serhiy Pyshyev, Michael Bratychak, Yuriy Lypko // Litteris et Artibus : proceedings, 23–25 November, 2017. — Lviv : Lviv Polytechnic Publishing House, 2017. — P. 66–67. — (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: modified bitumen
«raw» phenol
phenolcresol- formaldehyde resin
Number of pages: 2
Page range: 66-67
Start page: 66
End page: 67
Abstract: Resins were synthesized via phenol polycondensation with formaldehyde from the coal coking byproduct, phenol fraction namely. Phenol-cresol-formaldehyde resins were obtained from the fractions b.b.–185 °C (PhCFR- 1) and “raw” phenol obtained from the fraction b.b.–185 °C (PhCFR-2). It was established that the resulting resins may be used as modifiers of road bitumen.
URI: https://ena.lpnu.ua/handle/ntb/40472
ISBN: 978-966-941-108-2
Copyright owner: © Національний університет “Львівська політехніка”, 2017
URL for reference material: http://www
http://web.snauka.ru/issues/2014/05/34687
References (Ukraine): [1] Anonymous, Second edition 2011, “The Bitumen Industry”. Available: http://www. bitumenuk. com/ images/library/files/Bitumen%20Industry/TheBitumenI ndustryMarch2011Edition.pdf.
[2] V. Haldina, “Modifitsyrovanye bitumy: rukovodstvo” p. 228, 2009.
[3] Z. Jiqing, B. Birgisson, N. Kringos, «Polymer modification of bitumen: Advance and challenges», European Polymer Journal, vol. 54, pp. 18-38, 2014.
[4] R. Tarasov, V. Makarova, A. Kadomtseva, “Modyfikatsya bitumov polimeramy, Sovremennye nauchnye isledovaniya i innovatsii”, vol.5, 2014. Available:http://web.snauka.ru/issues/2014/05/34687.
[5] S. Krischynskiy, “Physical and chemical properties of bitumen, modified, modified by the complex modifier Polyd”, Vestn. KhNADU, vol. 40, pp. 28-32, 2008.
[6] S. Pyshyev, Yu. Grytsenko, H. Bilushchak, R. Pyshyeva, N. Danyliv, “Production of Indenecoumarone Resins as Bitumen Modifiers, Petroleum and Coal”, vol. 57, pp. 303-324, 2015.
[7] S. Pyshiev, J. Hrytsenko, Y. Khlibnyk, H. Strap, T. Koval, “Influence the polimer nature on the properties of the modified bitumen”, Eastern European Magazine of Advanced Technology, vol. 68, pp. 4-8, 2014.
[8] S. Pyshiev, J. Hrytsenko, I. Nikolyshyn, Z. Hnativ, “Preparation of indene-coumarone resins for the modification of oil road bitumen”, Carbon chemistry magazine , vol. 5, pp. 41-48, 2014.
[9] T. Hoholeva, V. Shustykov, «Chemistry and technology of coal tar processing», p. 256, 1992.
[10] A. Toroptseva, K. Belohorodskay, V. Bondarenko, “Laboratory practicum on chemistry and technology of high-molecular compounds”, pp. 199-200, 1972
References (International): [1] Anonymous, Second edition 2011, "The Bitumen Industry". Available: http://www. bitumenuk. com/ images/library/files/Bitumen%20Industry/TheBitumenI ndustryMarch2011Edition.pdf.
[2] V. Haldina, "Modifitsyrovanye bitumy: rukovodstvo" p. 228, 2009.
[3] Z. Jiqing, B. Birgisson, N. Kringos, "Polymer modification of bitumen: Advance and challenges", European Polymer Journal, vol. 54, pp. 18-38, 2014.
[4] R. Tarasov, V. Makarova, A. Kadomtseva, "Modyfikatsya bitumov polimeramy, Sovremennye nauchnye isledovaniya i innovatsii", vol.5, 2014. Available:http://web.snauka.ru/issues/2014/05/34687.
[5] S. Krischynskiy, "Physical and chemical properties of bitumen, modified, modified by the complex modifier Polyd", Vestn. KhNADU, vol. 40, pp. 28-32, 2008.
[6] S. Pyshyev, Yu. Grytsenko, H. Bilushchak, R. Pyshyeva, N. Danyliv, "Production of Indenecoumarone Resins as Bitumen Modifiers, Petroleum and Coal", vol. 57, pp. 303-324, 2015.
[7] S. Pyshiev, J. Hrytsenko, Y. Khlibnyk, H. Strap, T. Koval, "Influence the polimer nature on the properties of the modified bitumen", Eastern European Magazine of Advanced Technology, vol. 68, pp. 4-8, 2014.
[8] S. Pyshiev, J. Hrytsenko, I. Nikolyshyn, Z. Hnativ, "Preparation of indene-coumarone resins for the modification of oil road bitumen", Carbon chemistry magazine , vol. 5, pp. 41-48, 2014.
[9] T. Hoholeva, V. Shustykov, "Chemistry and technology of coal tar processing", p. 256, 1992.
[10] A. Toroptseva, K. Belohorodskay, V. Bondarenko, "Laboratory practicum on chemistry and technology of high-molecular compounds", pp. 199-200, 1972
Content type: Conference Abstract
Appears in Collections:Litteris et Artibus. – 2017 р.

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