The effect of sintering temperature on cavitation erosion in glass–ceramics based on coal fly ash

被引:0
作者
V. Savić
M. Dojčinović
V. Topalović
I. Cvijović-Alagić
J. Stojanović
S. Matijašević
S. Grujić
机构
[1] Institute for Technology of Nuclear and Other Mineral Raw Materials,Faculty of Technology and Metallurgy
[2] University of Belgrade,Vinca Institute of Nuclear Sciences
[3] University of Belgrade, National Institute of the Republic of Serbia
来源
International Journal of Environmental Science and Technology | 2024年 / 21卷
关键词
Cavitation; Coal fly ash; Glass; Glass–ceramics; Sintering;
D O I
暂无
中图分类号
学科分类号
摘要
The incombustible portion of coal that remains after burning is known as bottom or fly ash, and it has a detrimental influence on the environment. One of the possible alternatives for reducing the amount of ash deposited in landfills might be the production of useful glass–ceramic from vitrified fly ash. Glass–ceramic was synthesized using fly ash from the thermal power plant "Nikola Tesla" and fluxing additives. Sinter crystallization of the parent glass resulted in glass ceramics. The glass was created by melting a combination of coal fly ash (CFA), Na2CO3, and CaCO3 at T = 1500 °C and quenching the melt in the air. Glass powders were sintered at temperatures 850 and 900 °C. The resulting glass–ceramics were characterized microstructurally, physically, and mechanically. The cavitation erosion of samples was evaluated. The cavitation rate was 0.015 mg/min for the sample sintered at 850 °C and 0.0053 mg/min for the sample sintered at 900 °C. The leaching of heavy metals in glass–ceramic samples was determined using Toxicity Characteristic Leaching Procedure. A low concentration of heavy metals in the leaching solution showed that heavy metals were successfully incorporated in the glass matrix and that obtained glass–ceramics are ecologically safe for usage. Both samples exhibit good resistance to cavitation erosion, suggesting their potential as possible replacements for structural ceramics commonly employed components of hydraulic machinery.
引用
收藏
页码:6065 / 6074
页数:9
相关论文
共 103 条
  • [1] Alina B(2011)Influence of raw materials characteristics and processing parameters on the strength of geopolymer cements based on fly ashe Environ Eng Manag J 10 673-681
  • [2] Georgeta V(2023)Improvement of cavitation erosion resistance of structural metals by alternating magnetic field treatment Mater Des 226 16-26
  • [3] Babutskyi A(2014)Cavitation erosion resistance of diamond-like carbon coating on stainless steel Appl Surf Sci 292 779-783
  • [4] Akram S(2002)Production of glass-ceramic from incinerator fly ash Ceram Int 28 1-12
  • [5] Bevilacqua M(2022)Microstructure, mechanical properties, and cavitation erosion performances of cold sprayed CuZn35 coatings Surf Coatings Technol 451 642-655
  • [6] Cheng F(2022)The effects of ultrasonic cavitation on the dissolution of lithium disilicate glass Sci Rep 12 418-425
  • [7] Jiang S(2006)Development of a cavitation erosion model Wear 261 3301-3312
  • [8] Cheng TW(2008)Comparison of the properties of glass, glass-ceramic and ceramic materials produced from coal fly ash J Hazard Mater 153 1757-1766
  • [9] Ueng TH(2009)Early stage cavitation erosion within ceramics—an experimental investigation Ceram Int 35 1-9
  • [10] Chen YS(2018)Coal fly ash and steel slag valorisation throughout a vitrification process Int J Environ Sci Technol 15 467-476