Open Access Open Access  Restricted Access Subscription or Fee Access

Study of Oil Vacuum Distillation Chemical Group Composition Influence on the Oxidized Asphalts Properties when Obtained Based on that in Sonochemical Activation Conditions


(*) Corresponding author


Authors' affiliations


DOI: https://doi.org/10.15866/ireme.v11i11.14135

Abstract


The relevance of this study is determined by the problem of petroleum asphalt raw materials low quality stability, the low processability of their production and the lack of scientifically grounded methods for regulating the physical, mechanical and chemical properties of petroleum asphalt binders when oil residues of various chemical compositions are used as bituminous raw material. The purpose of this article is to study the influence of oil vacuum distillation chemical group composition on the properties of asphalts obtained by oxidation with air oxygen under ultrasonic treatment conditions. The leading method for studying this problem is to analyze the chemical group composition of heavy oil fractions boiling at temperatures above 300°С, as well as the physical and mechanical methods used for studying petroleum asphalt (penetration, extensibility, softening temperature, etc.). The results of this study allowed establishing the optimal ranges of hydrocarbon groups of oil residual raw material for petroleum asphalt production with a series of properties that meets the modern normative and the technical documentation requirements. The study proved the effectiveness of the proposed method of selecting oil residual raw material for petroleum asphalt production, as well as the goodness of the method for obtaining asphalts through the sonochemical activation of the raw material during oxidation. The materials of the article may be useful for oil refining industry specialists, as well as for students and teachers of technical universities in the field of oil refining technologies.
Copyright © 2017 Praise Worthy Prize - All rights reserved.

Keywords


Petroleum Asphalt; Oil Vacuum Distillation; Oxidation; Sonochemical Activation; Chemical Group Composition

Full Text:

PDF


References


P. M. Tyukilina, V. N. Melnikov, V. A. Tyshchenko, V. V. Ermakov, A. A. Pimenov, Use of Multidimensional Data Analysis Method for developing high-quality road asphalt production technology, Chemistry and technology of fuels and oils, Vol. 5, n. 51, pp. 444-453, 2015.
http://dx.doi.org/10.1007/s10553-015-0623-8

M. A. Kamal, M. R. Ahadi, Q. Shahzad, N. Bashir, Performance Prediction of Hot Mix Asphalt from Asphalt Binders Imran Hafeez, Pak. J. Engg. & Appl. Sci, Vol. 11, pp. 104 -113, 2012.
http://dx.doi.org/10.1007/s13369-014-1216-2

A. S. Kolbanovskaya, V. V. Mikhailov, Petroleum asphalts, “Transport”, 1973.

R. B. Gun, Petroleum asphalts, Khimiya, 1989.

O. V. Abramov, V. O. Abramov, M. S. Mullakaev, Ultrasonic application for stimulation of well productivity, 11th Meeting of the European Society of Sonochemistry, р.113-114, 2008.

E. A. Yaushev, A. I. Abdullin, E. A. Emelyanycheva, Bulletin of Kazan National Research Technological University, Vol. 17, n. 24, p. 218, 2008.

V. V. Fryazinov, I. B. Grudnikov, Influence of the component composition and quality of oils on the physical, chemical and commercial properties of asphalt, Proceedings of Bashkir Scientific Research Institute for Oil Refining, Vol. 11, p.45, 1978.

O. N. Opanasenko, O. V. Luksha, S. I. Kozintsev, N. P. Krutposko, Synthesis of aliphatic polyamides in the dispersion medium of oxidized asphalt, Russian journal of applied chemistry, Vol. 2, n. 84, pp. 289-294, 2011.

L. M. Gokhman, Asphalt, polymer modified asphalt cement, asphaltic macadam, polymer asphalt concrete. Study guide, Publishing house, 2008.

E. S. Okhotnikova, Y. M. Ganeeva, T. N. Yusupova, V. I. Morozov, I. N. Frolov, G. V. Romanov, High-Molecular-Mass Asphaltene Fraction and Its Effect on the Structure and Stability of Oxidized Bitumens, Pet. Chem. (2011) 51: 187.
http://dx.doi.org/10.1134/s096554411103011x

M. R. Yakubov, S. G. Yakubova, D. N. Borisov, I. P. Kosachev, P. I. Gryaznov, G. S. Usmanova, D. V. Milordov, G. V. Romanov, Composition and properties of oxidation products of heavy oil residasphaltenes, Chemistry and technology of fuels and oils, Vol. 2, n. 51, pp. 222-230, 2015.
http://dx.doi.org/10.1007/s10553-015-0595-8

Wahib, Y., Abidi, M., Relationship between Bituminous Mastic and Mix Asphalt Properties, (2016) International Review of Civil Engineering (IRECE), 7 (4), pp. 96-101.
http://dx.doi.org/10.15866/irece.v7i4.9162

Manthos, E., Performance of Asphalt Concrete Mixtures with Conventional Bitumen, (2014) International Review of Civil Engineering (IRECE), 5 (5), pp. 171-175.
http://dx.doi.org/10.15866/irece.v5i5.3911

Glaoui, B., Merbouh, M., Bendjima, M., Van de Ven, M., Impact of Freeze-Thaw Cycles on the Performance of Polymer Modified Bitumen, (2014) International Review of Civil Engineering (IRECE), 5 (4), pp. 130-134.


Refbacks

  • There are currently no refbacks.



Please send any question about this web site to info@praiseworthyprize.com
Copyright © 2005-2024 Praise Worthy Prize