T. Tomila
National Academy of Sciences of Ukraine
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Featured researches published by T. Tomila.
Waste Management | 2018
Marina Vlasova; Abigail Parra Parra; Pedro Antonio Márquez Aguilar; Ariadna Trujillo Estrada; Verónica González Molina; M. Kakazey; T. Tomila; Virginia Gómez-Vidales
The recycling of waste activated sludge (WAS) formed in the process of biological purification of sewage is an urgent ecological problem. In the present work, two ways of recycling of WAS containing from 8 to 30% free water, namely, the synthesis of a carbon-containing component and synthesis of porous building ceramics (bricks) with the use of WAS and waste carbonizate, have been considered. For the preparation of a carbon adsorbent, the carbonization of WAS has been carried out in an argon atmosphere. For the synthesis of ceramics, clay-cullet-tezontle-WAS mixtures with different contents of the components have been used. Sintering has been performed in air. It has been established that, in treatment of WAS at 600 °C for 30 min, better adsorption properties are obtained due to the presence of free carbon bonds. The efficiency of water purification from dyes (methylene blue) depends on the standard conditions: the methylene blue concentration, cabonizate-to-solution ratio, and exposure time of the carbonizate in solution. The use of wet WAS makes it possible to exclude the addition of water from the traditional scheme of preparation of a plastic semiproduct, i.e., realize a water-saving technology. The introduction of low-melting cullet, basalt, and WAS powders into red clay makes enables us to reduce substantially the sintering time of porous bricks (down to 8 h) and vary their strength properties.
Science of Sintering | 2007
Y. Enríquez Méndez; M. Vlasova; I. Leon; M. Kakazey; M. Dominguez-Patiño; L. Isaeva; T. Tomila
Optics and Laser Technology | 2010
P. A. Marquez Aguilar; M. Vlasova; M. Kakazey; D. Mayorga Cruz; E. Juarez Arellano; V. Stetsenko; T. Tomila; A. Ragulya
Ceramics International | 2007
M. Vlasova; P.A. Márquez Aguilar; M. Kakazey; M.C. Reséndiz-González; A. Bykov; A. Ragulya; T. Tomila
Powder Technology | 2009
M. Kakazey; Marina Vlasova; Martha Lilia Domínguez-Patiño; Gloria Dominguez-Patiño; Yolanda Enríquez-Méndez; M.C. Reséndiz-González; T. Tomila; M. M. Ristic; M.V. Nikolić
Science of Sintering | 2002
Marina Vlasova; M. Kakazey; J.G. Gonzales-Rodriguez; G. Dominguez; M. M. Ristic; O. Scherbina; T. Tomila; L. Isaeva; I.I. Timofeeva; A. Bukov
Optics and Laser Technology | 2010
M. Vlasova; P.A. Márquez Aguilar; M.C. Reséndiz-González; M. Kakazey; I. González; V. Stetsenko; T. Tomila; A. Ragulya
Theoretical and Experimental Chemistry | 2011
P. M. Silenko; A. N. Shlapak; T. Tomila; A. I. Bykov; A. Ragulya
Science of Sintering | 2010
M. Vlasova; A. Ragulya; V. Stetsenko; M. Kakazey; P. A. Marquez Aguilar; I. Timofeeva; T. Tomila; E. Juarez Arellano
Ceramics International | 2009
M. Vlasova; P.A. Márquez Aguilar; M.C. Reséndiz-González; M. Kakazey; J. Guzman; A. Bykov; V. Stetsenko; T. Tomila; A. Ragulya