[1]
V.A. Perfilov, I.V. Shevcov, B. Ya. Zaslichko, U.V. Kanavec, Recycling of oil and heat-generating wastes to improve industrial and environmental safety, VolgGASU. 43 (2016) 238-243.
Google Scholar
[2]
V.A. Perfilov, O.N. Vol'skaya, Recycling of industrial waste to improve environmental safety, South-Russia: Ecology, development. 2(2016) 205-212.
Google Scholar
[3]
V.A. Perfilov, D.S. Budnikov, 13th International Scientific Conference Indoor air and environmental quality, 32-37 (2015).
Google Scholar
[4]
D.V. Oreshkin, A.N. Chebotaev, V.A. Perfilov, Disposal of drilling sludge in the production of bulding materials, Procedia Engineering. 111 (2015) 607-611.
DOI: 10.1016/j.proeng.2015.07.053
Google Scholar
[5]
D.V. Oreshkin, G.P. Saxarov, A.N. Chebotaev, A.S. Kurbatova, Geoecological problem of disposing of drilling cuttings on Yamal, Vestnik MGSU. 2 (2012) 125-129.
Google Scholar
[6]
V.A. Perfilov, D.V. Oreshkin, M.O. Zubova, D.L. Neizvestny'j, I.G. Lukina, A.N. Chebotaev, Ballasting of subsea pipelines using basalt fibers and drilling sludge, Construction of oil and gas wells on land and at sea. 11 (2012) 40-41.
Google Scholar
[7]
A.N. Chebotaev, The possibility of disposing of drilling mud of Bovanenko field in the production of building materials, Construction of oil and gas wells on land and at sea. 9 (2015) 25-28.
Google Scholar
[8]
V.A. Perfilov, The V International Scientific Conference Indoor air and environmental quality,. 39-41 (2007).
Google Scholar
[9]
V.A. Perfilov, Yu. S. Ageev, RU, Patent 2, 257, 363. (2005).
Google Scholar
[10]
V.A. Perfilov, U.V. Alatorceva, Yu.S. Ageev, S.P. Mityaev, A.A. Tyurin, RU, Patent 2, 361, 847. (2009).
Google Scholar
[11]
V.A. Perfilov, Light heat-resistant fibre concrete when exposed to high temperatures, Concrete technology. 10(2013) 48-49.
Google Scholar
[12]
V.A. Perfilov, Influence of high temperature on strength and fracture toughness of heat-resistant concrete, Concrete technology. 1-2 (2012) 36-37.
Google Scholar
[13]
V.A. Perfilov, U.V. Alatorceva, A.A. Tyurin, Light heat-resistant fibre concrete, Russian Physics Journal. 9 (2008) 23-25.
Google Scholar
[14]
V.A. Perfilov, A.V. Kotlyarevskaya, U.V. Kanavec, Influence of mikroreinforcement fibers and plasticizers on the properties of fine-grained concretes, Vestnik VolgGASU. 44 (2016) 111-118.
Google Scholar
[15]
V.A. Perfilov, Fine fiber concretes, VolgGASU, Volgograd, (2015).
Google Scholar
[16]
V.A. Perfilov, M.O. Zubova, Influence of basalt fibers for strength fine-grained fibre concrete, Internet-vestnik VolgGASU. 1 (2015) 9.
Google Scholar
[17]
V.A. Perfilov, M.O. Zubova, Fine bazal fibre concretes, Vestnik VolgGASU. 38 (2014) 85-93.
Google Scholar
[18]
V.A. Perfilov, M.O. Zubova, Basalt fiber fibre as the main component of dispersive-fibrous reinforcement of concrete, Vestnik DonNASA. 3 (2013) 146-148.
Google Scholar
[19]
V.A. Perfilov, M.O. Zubova, D.L. Neizvestny'j, 6-th International Scientific Conference Reliability and durability of building materials, structures and grounds of foundations, 248-250 (2011).
Google Scholar
[20]
V.A. Perfilov, M.O. Zubova, D.L. Neizvestny'j, Application of basalt fibers and modifying additives to improve strength properties of heavy concrete, Russian Physics Journal. 12 (2011) С. 46-49.
Google Scholar
[21]
V.A. Perfilov, A.V. Atkina, O.A. Kusmarceva, The application of modifying mikroreinforcing components for increase of durability of cellular materials, Russian Physics Journal. 9 (2010) 11-14.
Google Scholar
[22]
V.A. Perfilov, A.V. Atkina, O.A. Kusmarceva, U.V. Kanavec, The III All-Russian scientific and technical conference Science. Practice. Education, 236-238 (2009).
Google Scholar