1. Nikol’skiy V.G. Modern technologies of processing worn tires and other rubber-technical waste. Vtorichnyye resursy (Secondary Resources). 2002; (1): 48-51. (in Russ.)
2. Willis J.R., Plemons C., Turner P., Rodezno C., Mitchell T. Effect of ground tire rubber particle size and grinding method on asphalt binder properties. National Center for Asphalt Technology at Auburn University. Auburn, Alabama, October 2012. 47 р. [Electronic resource]. – Access mode: http://www.ncat.us/files/reports/2012/rep12-09.pdf - free.
3. 7th RILEM International Conference on Cracking in Pavements: Mechanisms, Modeling, Testing, Detection and Prevention Case Histories. A. Scarpas, N. Kringos, I. Al-Qadi, A. Loizos (Eds.). Springer, 2012. 1378 p.
4. Gaweł I., Piłat J., Radziszewski P., Kowalski K.J., Król J. Rubber modified bitumen. In: Polymer Modified Bitumen. Properties and Characterization. UK, Cambrige: Woodhead Publ., 2011. P. 72-97.
5. Nikol’skiy V.G., Dudareva T.V., Krasotkina I.A., Zvereva U.G., Bekeshev V.G., Rochev V.Y., Kaplan A.M., Chekunaev N.I., Vnukova L.V., Styrikovich N.M., Gordeeva I.V. Development and properties of new nanomodifiers for road pavement. Russian Journal of Physical Chemistry B. 2014; 8(4): 577-583.