Ash Waste Utilization via Direct Current Arc Plasma with Production of SiC and AlN / A. Ya. Pak, G. Ya. Mamontov, K. V. Slusarskiy (Slyusarsky) [et al.]

Уровень набора: Waste and Biomass ValorizationАльтернативный автор-лицо: Pak, A. Ya., specialist in the field of electrical engineering, head of Department of Tomsk Polytechnic University, candidate of technical Sciences, 1986-, Aleksandr Yakovlevich;Mamontov, G. Ya., mathematician, Professor of Tomsk Polytechnic University, doctor of physical and mathematical Sciences, 1945-, Gennady Yakovlevich;Slusarskiy (Slyusarsky), K. V., specialist in the field of power engineering, assistant of Tomsk Polytechnic University, 1990-, Konstantin Vitalievich;Larionov, K. B., specialist in the field of power engineering, technician of Tomsk Polytechnic University, 1990-, Kirill Borisovich;Yankovsky, S. A., specialist in the field of power engineering, engineer of Tomsk Polytechnic University, assistant, 1985-, Stanislav Aleksandrovich;Gvozdyakov, D. V., specialist in the field of power engineering, engineer of Tomsk Polytechnic University, assistant, 1985-, Dmitry Vasilievich;Gubin, V. E., specialist in the field of power engineering, Associate Professor of Tomsk Polytechnic University, Candidate of technical sciences, 1976-, Vladimir Evgenievich;Martynov, R. S., specialist in the field of electric power engineering, Associate Scientist of Tomsk Polytechnic University, 1994-, Roman SergeevichКоллективный автор (вторичный): Национальный исследовательский Томский политехнический университет, Инженерная школа энергетики, Научно-образовательный центр И. Н. Бутакова (НОЦ И. Н. Бутакова)Язык: английский.Резюме или реферат: Ash accumulation is a relevant problem due to the widespread use of coal-fired power plants and a very limited number of ash utilization technologies. Plasma processing of ash is a promising method of ash valorization for production of various useful products, which is limited by high energy consumption. In the current study, a mixture of waste ash from power plant and black carbon was processed using an original direct current plasma arc experimental setup in ambient air which allows lower energy consumption due to the absence of the vacuuming system. Four types of samples at different plasma exposure times were produced and together with the initial ash were studied by thermal analysis, X-ray diffractometry and scanning electron microscopy. The X-ray diffraction analysis identified the resulting phases of graphite, silicon carbide, and aluminum nitride in the synthesis products; at the same time, at the arc discharge energy increased from 26 to 105 kJ, the intensities of the maxima that correspond to metal and nonmetal oxides in the composition of the initial ash decreased to nearly zero. To remove graphite, the processed samples were annealed at 750 °C in air and studied. It was found that the applied approach made it possible to obtain a mixture of silicon carbide and aluminum nitride powders in direct current arc plasma initiated in ambient air, which reduced the energy consumption for ash processing by electric arc..Примечания о наличии в документе библиографии/указателя: [References: 38 tit.].Аудитория: .Тематика: электронный ресурс | труды учёных ТПУ | ash | silicon carbide | aluminium nitride | direct current arc plasma | X-ray diffractometry | зола | карбид кремния | нитрид алюминия | рентгеновская дифрактометрия Ресурсы он-лайн:Щелкните здесь для доступа в онлайн
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[References: 38 tit.]

Ash accumulation is a relevant problem due to the widespread use of coal-fired power plants and a very limited number of ash utilization technologies. Plasma processing of ash is a promising method of ash valorization for production of various useful products, which is limited by high energy consumption. In the current study, a mixture of waste ash from power plant and black carbon was processed using an original direct current plasma arc experimental setup in ambient air which allows lower energy consumption due to the absence of the vacuuming system. Four types of samples at different plasma exposure times were produced and together with the initial ash were studied by thermal analysis, X-ray diffractometry and scanning electron microscopy. The X-ray diffraction analysis identified the resulting phases of graphite, silicon carbide, and aluminum nitride in the synthesis products; at the same time, at the arc discharge energy increased from 26 to 105 kJ, the intensities of the maxima that correspond to metal and nonmetal oxides in the composition of the initial ash decreased to nearly zero. To remove graphite, the processed samples were annealed at 750 °C in air and studied. It was found that the applied approach made it possible to obtain a mixture of silicon carbide and aluminum nitride powders in direct current arc plasma initiated in ambient air, which reduced the energy consumption for ash processing by electric arc.

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