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Improving the environmental safety of coal-fired thermal power plants by using fly ash in recycling technology

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Języki publikacji
EN
Abstrakty
EN
The paper presents the results of hydrothermal zeolitization of fly ash from hard coal combustion in one of the Polish power plants and possible further applications of zeolites. The synthesis was carried out using various NaOH fly ash mass ratio and the effect of NaOH concentration in the activating solution on composition of synthesized sample was tested. The present work proves the benefits from development of fly ash utilization and further opportunities in the use of zeolites. There exist the need for research to expand options to reduce harmful impact derived from energy production.
Rocznik
Strony
135--142
Opis fizyczny
Bibliogr. 14 poz., rys., tab.
Twórcy
  • Kielce University of Technology, Poland
Bibliografia
  • [1] Dindi A., Quang D.V., Vega L.F., Nashef E., Abu-Zahra M.R.M., Applications of fly ash for CO2 capture, utilization, and storage, Journal CO2 Util., 29 (2019), pp. 82-102.
  • [2] Koshlak H., Ecological danger of technogenic soil pollution by heavy metals for territories of influence of amber TPP. Ecological Safety and Balanced Use of Resources, 2019.
  • [3] Bhatt A., Priyadarshini S., Mohanakrishnan A.A., Abri A., Sattler M., Techapaphawit S., Physical, chemical, and geotechnical properties of coal fly ash: A global review, Case Studies in Construction Materials, Volume 11, 2019, https://doi.org/10.1016/j.cscm.2019.e00263.
  • [4] Brigden K., Santillo D., Stringer R., Hazardous emissions from Thai coal-fired power plants. Toxic and potentially toxic elements in fly ashes collected from the Mae Moh and Thai Petrochemical Industry coal-fired power plants in Thailand, 2002.
  • [5] El-Mogazi D., Lisk D.J., Weinstein L.H., A review of physical, chemical, and biological properties of fly ash and effects on agricultural ecosystems, Science of The Total Environment, Vol. 74, 1988, pp. 1-37.
  • [6] Ohenoja K., Pesonen J., Yliniemi J., Illikainen M., Utilization of Fly Ashes from Fluidized Bed Combustion: A Review Sustainability 2020, 12, 2988; doi: 10.3390/su12072988.
  • [7] Rayalu S.S., Udhoji J.S., Munshi K.N., Hasan M.Z., Highly crystalline zeolite - A from fly ash of bituminous and lignite coal combustion. J. Hazard. Mater. 2001, 88, pp. 107-121.
  • [8] Anandhan S., Recent Trends in Fly Ash Utilization in Polymer Composites. Int J Waste Resources 4: 149, 2014, doi: 10.4172/2252-5211.1000149.
  • [9] Ren X., Qu R., Liu S., Zhao H., Wu W., Song H., Zheng C., Wu X., Gao X., Synthesis of Zeolites from Coal Fly Ash for Removal of Harmful Gaseous Pollutants: A Review. Aerosol Air Qual. Res. 20: 1127-1144, 2020.
  • [10] Ojha K., Pradhan N.C., Samanta A.N., Zeolite from fly ash: synthesis and characterization. Bull Mater Sci 27, 2004, pp. 555-564, https://doi.org/10.1007/BF027072852.
  • [11] Querol X., Moreno N., Umaña J.C., Alastuey A., Hernández E., López-Soler A., Plana F., Synthesis of zeolites from coal fly ash: An overview. Int. J. Coal. Geol. 2002; 50: 413-423, doi: 10.1016/S0166-5162(02)00124-6.
  • [12] Boycheva S., Zgureva D., Lazarova K. et al., Progress in the Utilization of Coal Fly Ash by Conversion to Zeolites with Green Energy Applications. Materials (Basel). 2020; 13(9): 2014. Published 2020 Apr 25. doi: 10.3390/ma13092014.
  • [13] Cruz T.J.T., Melo M.I.S., Pergher S., Optimization of Parameters and Methodology for the Synthesis of LTA-Type Zeolite Using Light Coal Ash. Appl. Sci. 2020, 10, 7332. https://doi.org/10.3390/app10207332.
  • [14] Inada M., Tsujimoto H., Eguchi Y. et al., Microwave-assistedzeolite synthesis from coal fly ash in hydrothermal process, Fuel, 2005, vol. 84, no. 12, pp. 1482-1486.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e7c7f0b9-ef84-4fbd-a291-a5bec2a5d4b4
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