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  • Ескіз
    Документ
    Co-processing of coal and plastic waste: a review
    (Національний технічний університет "Харківський політехнічний інститут", 2020) Xiaobin, Zhang; Miroshnichenko, D. V.; Tulskaya, A. G.; Bogoyavlenskaya, E. V.
    Co-processing of coal and plastic waste: a review / Zh. Xiaobin [et al.] // Інформаційні технології: наука, техніка, технологія, освіта, здоров'я = Information technologies: science, engineering, technology, education, health : наук. вид. : тези доп. 28-ї міжнар. наук.-практ. конф. MicroCAD–2020, [28-30 жовтня 2020 р.] : у 5 ч. Ч. 2 / ред. Є. І. Сокол. – Харків : Планета-Прінт, 2020. – С. 297.
  • Ескіз
    Документ
    Electrochemical synthesis of peroxyacetic acid on Pt/PtO and PbO₂ anodes
    (Lviv Polytechnic National University Institutional, 2020) Bilous, T. A.; Tulskaya, A. G.; Ryshchenko, I. M.; Chahine, I.; Bairachnyi, V. B.
    The kinetics of anodic processes on Pt/PtO and PbO₂ anodes has been studied in water solutions of acetic acid. The addition of sulfuric acid has a catalytic effect in the electrochemical synthesis of peroxyacetic acid. The choice of promoters of peroxide-particles formation has been proved. I–, Cl– (current efficiency is 1.2–1.5 %) particles have been defined as the most effective for platinum anode and I–, F– (current efficiency is 0.50–0.55 %) have been defined as the most effective for lead-dioxide anode.
  • Ескіз
    Документ
    Co-processing of coal and plastic waste a revieew
    (ТОВ "Планета-Принт", 2020) Xiaobin, Zhang; Miroshnichenko, D. V.; Tulskaya, A. G.; Bogoyavlenskaya, E. V.
    The effective recycling processes for plastic waste represent a major challenge in the protection of the environment and natural resources, because the consumption of plastic is on increase. Disposing of wastes in a landfill is not a solution, essentially because, apart from it being increasingly difficult to find suitable places for building technically adequate landfills, it is still not well established what the long-term effects of their degradation could be. Incineration of plastic waste to produce heat may be a possibility, but its organic content would be totally destroyed.
  • Ескіз
    Документ
    Electrochemical synthesis of hydrogen with depolarization of the anodic process
    (2016) Tulskiy, Gennadiy; Tulskaya, A. G.; Skatkov, L. I.; Gomozov, V. P.; Deribo, S. G.
    A new active composite coating for graphite gas diffusion electrode for hybrid sulfur cycle was proposed. The kinetics of oxidation of SO₂ were studied on porous graphite anodes with different catalytic coatings. It was shown that the most efficient composite coating is based on activated carbon and platinum supported on graphite gas diffusion substrate. The voltage drop in the laboratory electrochemical cell was 1.3 V at a current density of 1000 A·m⁻². This corresponds to a specific consumption of 3.1 kWh electric energy per 1 m³ of hydrogen.
  • Ескіз
    Документ
    Anodic processes in dimethylsulfoxide water solution
    (Национальный технический университет "Харьковский политехнический институт", 2018) Tulskaya, A. G.; El Chorbagi, Akram A.
  • Ескіз
    Документ
    Electrochemical synthesis of peroxyacetic acid on Pt/PtO and PbO₂ anodes
    (2018) Tulskaya, A. G.; Bilous, T. A.
  • Ескіз
    Документ
    The choice of anode material for the electrochemical synthesis of peroxyacetic acid
    (Kyiv National University of Technologies and Design, 2017) Bilous, T. A.; Tulskaya, A. G.; Matrunchyk, O. L.
    A high-purity peroxyacetic acid may be produced electrochemically. The kinetics of anodic processes at electrolysis of acetic acid water solutions have been studied with application of different kinds of anodic materials. It has been shown that the formation of peroxyacetic acid is possible when the anodic potential is above 2,0 V. The choice of lead dioxide plated on titanium current-lead was justified. Application of lead dioxide in the electrochemical synthesis of peroxyacetic acid allows to increase the current output up by 8-12 % comparing to platinum.
  • Ескіз
    Документ
    The anodic oxidation of dimethyl sulfoxide
    (Бондаренко М. О., 2017) Matrunchyk, O. L.; Bilous, T. A.; Tulskaya, A. G.