1. Nkosi N., Muzenda E. A review and discussion of waste tyre pyrolysis and derived products proceedings. The World Congress on Engineering, 2014, vol 2, pp. 979-985.
2. Kalitko U., Chun Yao Wu M. Tire scrap pyrolysis recycling by steaming way: heat-mass balance solutions and developments. Pyrolysis: Types, Processes, 2009, pp. 1-37.
3. Petrenko T. V., Novichkov Yu. A. Pyrolysis of rubber crumb. Tverdyebytovyeotkhody= Municipal solid waste, 2007, vol. 4, no. 10, pp. 6-9(in Russian).
4. Quek A., Balasubramanian R. Liquefaction of waste tires by pyrolysis for oil and chemicals - a review. Journal of Analytical and Applied Pyrolysis, 2013, vol. 101, pp. 1-16. https://doi.org/10.1016/j.jaap.2013.02.016
5. Perondi D., Scopel B. S., Collazzo G. C., Silva J. P., Botomé M. L., Dettmer A., Godinho M., Vilela A. C. F. Characteristics of pyrolysis products from waste tyres and spent foundry sand co-pyrolysis progress in rubber. Plastics and Recycling Technology, 2016, vol. 32, no. 4, pp. 213-240. https://doi.org/10.1177/147776061603200403
6. Gulevich A. L., Kovalevich V. A., Kiyko T. N. Extraction photometry of non-steroidal analgesics. Analitika RB - 2010: Respubl. nauch. konf. po analit. khimii s mezhdunar. uchastiem, Minsk, 14-15 maya 2010 g.: tez. dokl. [Analytics RB - 2010: Republ. scientific. conf. on analytical chemistry with the international participation, Minsk, May 14-15, 2010: Book of abstracts]. Minsk, 2010, pp. 111 (in Russian).
7. Leshchev S. M., Genarova T. N., Savchin V. V., Levkina V. V. Extraction sample preparation of pyrolysis oil of waste automobile tires with its component and quantitative GC-MS analysis. Analitika I kontrol’ = Analytics and control, 2019, vol. 23, no. 3, pp. 401-409 (in Russian).
8. Lozhechnik A. V., Savchin V. Pyrolysis of rubber in a screw reactor. Journal of Engineering Physics and Thermophysics, 2016, vol. 89, no. 6, pp. 1482-1486. https://doi.org/10.1007/s10891-016-1517-2
9. State standart 2070-82. Light oil products. Methods for determining iodine numbers and the content of unsaturated hydrocarbons. Minsk, Standartinform, 2008, part 2. 14 p. (in Russian).
10. Tarasevich B. N. IR spectra of the main classes of organic compounds. Reference materials. Moscow, Moscow State University. M. V. Lomonosov, 2012. 53 p. (in Russian).
11. Girard H-L., Bourrianne P., Chen D., Jaishankar A., Vreeland J. L., Cohen R. E., Varanasi K. K., McKinley G. H. Asphaltene adsorption on functionalized solids. Langmuir, 2020, vol. 36, no. 14, pp. 3894-3902. https://doi.org/10.1021/acs.langmuir.0c00029
12. Gaile A. A., Semenov L. V. Electron-donor ability of hydrocarbons and electron-acceptor characteristics of polar solvents. Zhurnal Prikladnoi Khimii = Russian Journal of Applied Chemistry, 1986, vol. 59, no. 4, pp. 2669-2675 (in Russian).
13. Leshchev S. M., Seidel A. V., Zayats M. F. Method of group increments as a method of generalizing data on the extraction of organic substances and assessing the influence of intramolecular effects on their extraction from aqueous solutions. Khimiya novykh materialov I biologicheski aktivnykh veshchestv [Chemistry of new materials and biologically active substances]. Minsk, 2016, pp. 135-151 (in Russian).