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Please use this identifier to cite or link to this item: https://oldena.lpnu.ua/handle/ntb/42090
Title: Elemental and mineral composition of ash-slag wastes of Slovianska thermal power plant
Other Titles: Елементний і мінеральний склад золошлакових відходів Слав‘янської ТЕС
Authors: Khobotova, Elina
Ignatenko, Marina
Larin, Vasiliy
Kalmykova, Yulia
Turenko, Anatoly
Affiliation: Kharkiv National Automobile and Highway University
Bibliographic description (Ukraine): Elemental and mineral composition of ash-slag wastes of Slovianska thermal power plant / Elina Khobotova, Marina Ignatenko, Vasiliy Larin, Yulia Kalmykova, Anatoly Turenko // Chemistry & Chemical Technology. — Lviv : Lviv Politechnic Publishing House, 2017. — Vol 11. — No 3. — P. 378–372.
Bibliographic description (International): Elemental and mineral composition of ash-slag wastes of Slovianska thermal power plant / Elina Khobotova, Marina Ignatenko, Vasiliy Larin, Yulia Kalmykova, Anatoly Turenko // Chemistry & Chemical Technology. — Lviv : Lviv Politechnic Publishing House, 2017. — Vol 11. — No 3. — P. 378–372.
Is part of: Chemistry & Chemical Technology, 3 (11), 2017
Issue: 3
Volume: 11
Issue Date: 20-Jan-2017
Publisher: Lviv Politechnic Publishing House
Place of the edition/event: Lviv
Keywords: паливна зола
шлак
фракція
мінерал
радіоактивність
fuel ash
slag
fraction
mineral
radioactivity
Number of pages: -5
Page range: 378-372
Start page: 378
End page: 372
Abstract: Визначено елементний, мінеральний і радіонуклідний склад золошлаків Слав’янської ТЕС (Україна). Фракції золошлаків відповідають першому класу радіаційної безпеки. Кількісний оксидний склад наступний: SiO2, Al2O3, Fe2O3, CaO і MgO. Гранулометричні фракції відходів можуть бути рекомендовані як компоненти легких бетонів.
Elemental, mineral and radionuclide composition of the Slovianska thermal power plant (Ukraine) ash-slag has been determined. The ash-slag fractions refer to the first class of radiation safety. The quantitative oxide composition is the following: SiO2, Al2O3, Fe2O3, CaO and MgO. The granulometric fractions of wastes can be recommended as the components of light concretes.
URI: https://ena.lpnu.ua/handle/ntb/42090
Copyright owner: © Національний університет „Львівська політехніка“, 2017
© Khobotova E., Ignatenko M., Larin V., Kalmykova Yu., Turenko A., 2017
References (Ukraine): [1] Lieuw Kie Song M.R.: Work 2001: First International Conference of Employment Creation in Development, South Africa, Witwatersrand 2001, 11.
[2]Malhotra S., Tehri S.: Indian J. Eng. Mat. Sci., 1995, 2, 80.
[3] Eguchi K: P. Jpn. Concrete Inst., 2011, 33, 761.
[4] Khobotova E., Kalmykova Yu.: Zaschita Okruzhaushei Prirodnoi Sredy pri Utilizatsii Otvalnykh Domennykh Shlakov v Proizvodstve StroitelnykhMaterialov. XNADU, Kharkov 2014.
[5] Wang H., Qi C., FarzamH., Turici J.: Concrete Int., 2006, 28, 47.
[6] Malhotra V., Mehta P.: High-Performance, High-Volume Fly Ash Concrete. Supplementary Cementing Materials for Sustainable Development Inc., Ottawa 2005.
[7] Thomas M.: Optimizing the Use of Fly Ash in Concrete. Portland Cement Association, Publication IS 548, 2007.
[8] Karthik H.: Concrete InFocus, 2008, 60.
[9] Naik T., Ramme B., Kraus R., Siddique R.: ACI Mat. J., 2003,100, 150.
[10] Khobotova E., Ukhaniova M., Graivoronskaya I., Kalmykova Yu.: Radiatsionno-Khimicheskoe Obosnovanie Ispolzovaniya Tverdykh Promyshlennykh Othodov v Kachestve Technicheskikh Materialov. XNADU, Kharkov 2011.
[11] Khobotova E., Larin V., Ignatenko M., Kalmykova Yu.: Radioecologicheskyi Monitoring Syrievykh Materialov Stroitelnoi Otrasli. XNADU, Kharkov 2016.
[12] Ivanov I.: Legkie Betony s Primeneniem Zol Electrostanciy. Stroiizdat. Moskva 1986.
[13] zakon.rada.gov.ua/laws/show/v4422400-87
[14] JCPDS PDF-1 File. International Committee for Diffraction Data, release 1994. PA, USA
[15] Sergeev A.: Ispolzovanie v Stroitelstve Othodov Energeticheskoi Promyshlennosti. Budivelnyk, Kyiv 1984.
References (International): [1] Lieuw Kie Song M.R., Work 2001: First International Conference of Employment Creation in Development, South Africa, Witwatersrand 2001, 11.
[2]Malhotra S., Tehri S., Indian J. Eng. Mat. Sci., 1995, 2, 80.
[3] Eguchi K: P. Jpn. Concrete Inst., 2011, 33, 761.
[4] Khobotova E., Kalmykova Yu., Zaschita Okruzhaushei Prirodnoi Sredy pri Utilizatsii Otvalnykh Domennykh Shlakov v Proizvodstve StroitelnykhMaterialov. XNADU, Kharkov 2014.
[5] Wang H., Qi C., FarzamH., Turici J., Concrete Int., 2006, 28, 47.
[6] Malhotra V., Mehta P., High-Performance, High-Volume Fly Ash Concrete. Supplementary Cementing Materials for Sustainable Development Inc., Ottawa 2005.
[7] Thomas M., Optimizing the Use of Fly Ash in Concrete. Portland Cement Association, Publication IS 548, 2007.
[8] Karthik H., Concrete InFocus, 2008, 60.
[9] Naik T., Ramme B., Kraus R., Siddique R., ACI Mat. J., 2003,100, 150.
[10] Khobotova E., Ukhaniova M., Graivoronskaya I., Kalmykova Yu., Radiatsionno-Khimicheskoe Obosnovanie Ispolzovaniya Tverdykh Promyshlennykh Othodov v Kachestve Technicheskikh Materialov. XNADU, Kharkov 2011.
[11] Khobotova E., Larin V., Ignatenko M., Kalmykova Yu., Radioecologicheskyi Monitoring Syrievykh Materialov Stroitelnoi Otrasli. XNADU, Kharkov 2016.
[12] Ivanov I., Legkie Betony s Primeneniem Zol Electrostanciy. Stroiizdat. Moskva 1986.
[13] zakon.rada.gov.ua/laws/show/v4422400-87
[14] JCPDS PDF-1 File. International Committee for Diffraction Data, release 1994. PA, USA
[15] Sergeev A., Ispolzovanie v Stroitelstve Othodov Energeticheskoi Promyshlennosti. Budivelnyk, Kyiv 1984.
Content type: Article
Appears in Collections:Chemistry & Chemical Technology. – 2017. – Vol. 11, No. 3

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