Carbothermal reduction of Si-Al-Fe-Ca quaternary system in a high-silica coal
- Corresponding author: ZHANG Jun-ying, jyzhang@hust.edu.cn
Citation:
YONG Qi-run, GONG Ben-gen, ZHAO Yong-chun, ZHANG Jun-ying. Carbothermal reduction of Si-Al-Fe-Ca quaternary system in a high-silica coal[J]. Journal of Fuel Chemistry and Technology,
;2017, 45(11): 1296-1302.
BAI J, LI W, LI C, BAI Z, LI B. Influences of minerals transformation on the reactivity of high temperature char gasification[J]. Fuel Process Technol, 2010,91(4SI):404-409.
BAI Jin, LI Wen, LI Bao-qing. Mineral behavior in coal under reducing atmosphere at high temperature[J]. J Fuel Chem Technol, 2006,34(3):292-297.
BAI Jin, LI Wen, BAI Zong-qing, LI Bao-qing. Influences of mineral matter on high temperature gasification of coal char[J]. J Fuel Chem Technol, 2009,37(2):134-138.
BAI Jin, LI Wen, BAI Zong-qing, LI Bao-qing. Transformation of mineral matters in Yanzhou coal ash at high temperature[J]. J China U Min Technol, 2008(3):369-372.
MA Z, BAI J, WEN X, LI X, SHI Y, BAI Z, KONG L, GUO Z, YAN J, LI W. Mineral transformation in char and its effect on coal char gasification reactivity at high temperatures Part 3:Carbon thermal reaction[J]. Energy Fuels, 2014,28(5):3066-3073. doi: 10.1021/ef5004792
MA Z, BAI J, LI W, BAI Z, KONG L. Mineral transformation in char and its effect on coal char gasification reactivity at high temperatures, Part 1:Mineral transformation in char[J]. Energy Fuels, 2013,27(8):4545-4554. doi: 10.1021/ef4010626
MA Z, BAI J, BAI Z, KONG L, GUO Z, YAN J, LI W. Mineral transformation in char and its effect on coal char gasification reactivity at high temperatures, Part 2:char gasification[J]. Energy Fuels, 2014,28(3):1846-1853. doi: 10.1021/ef402382m
WANG J, ISHIDA R, TAKARADA T. Carbothermal reactions of quartz and kaolinite with coal char[J]. Energy Fuel, 2000,14(5):1108-1114. doi: 10.1021/ef000084x
LI G, LIU Q, LIU Z. CaC2 Production from Pulverized Coke and CaO at Low Temperatures-Influence of Minerals in Coal-Derived Coke[J]. Ind Eng Chem Res, 2012,51(33):10748-10754. doi: 10.1021/ie3006726
WANG J, MORISHITA K, TAKARADA T. High-temperature interactions between coal char and mixtures of calcium oxide, quartz and kaolinite[J]. Energy Fuels, 2001,15(5):1145-1152. doi: 10.1021/ef0100092
WU S, ZHANG X, GU J, WU Y, GAO J. Interactions between carbon and metal oxides and their effects on the Carbon/CO2 reactivity at high temperatures[J]. Energy Fuels, 2007,21(4):1827-1831. doi: 10.1021/ef0605551
ZHANG Ming-liang. Influence of the SiC generation on the submerged arc furnace smelting process[D]. Baotou:Inner Mongolia University of Science and Technology, 2007.
WU X, ZHANG Z, CHEN Y, ZHOU T, FAN J, PIAO G, KOBAYASHI N, MORI S, ITAYA Y. Main mineral melting behavior and mineral reaction mechanism at molecular level of blended coal ash under gasification condition[J]. Fuel Process Technol, 2010,91(11):1591-1600. doi: 10.1016/j.fuproc.2010.06.007
MA Zhi-bin, BAI Zong-qing, BAI Jin, LI Wen, GUO Zhen-xing. Evolution of coal ash with high Si/Al ratio under reducing atmosphere at high temperature[J]. J Fuel Chem Technol, 2012,40(3):279-285.
WU Jun. The study on the characteristics of minerals in high silicon coal and the ash melting characteristics[D].Wuhan:Huazhong University of Science and Technology, 2012.
YAN T, BAI J, KONG L, BAI Z, LI W, XU J. Effect of SiO2/Al2O3 on fusion behavior of coal ash at high temperature[J]. Fuel, 2017,193:275-283. doi: 10.1016/j.fuel.2016.12.073
YIN Y, MA B, LI S, ZHANG B, YU J, ZHANG Z, LI G. Synthesis of Al2O3-SiC composite powders from coal ash in NaCl-KCl molten salts medium[J]. Ceram Int, 2016,42(16):19225-19230. doi: 10.1016/j.ceramint.2016.09.087
SUN Jun-min. A study of the mineral composition of coal combustion residues[J]. Acta Mineralogica Sini, 2001(1):14-18.
WANG Yang, LI Hui, WANG Dong-xu, DONG Zhang-qing, LU Qiang, LI Wen-yan. Relationship betweencoal ash fusibility and ash composition in terms of mineral changes[J]. J Fuel Chem Technol, 2016,44(9):1034-1042.
WU Xian-xi. Activity calculation of each component in Al-Si-Fe ternary system[J]. Chin J Nonferrous Met, 1999(3):627-630.
YE Da-lun, HU Jian-hua. Handbook of Thermodynamic Data of Inorganic[M]. 2nd ed. Beijing:Metallurgical Industry Press, 1981.
LI Da-zhen. The Basis of Chemical Thermodynamics[M]. Beijing:Beijing Normal University Pubulishing Group, 1982.
LI Zi-yong, WU Chun-han, YU Qing-chun, LU Yong, YANG Bin, KE Wei-guo, SHEN Ran. Phase transformation of carbothermal reduction coal fly ash[J]. J China Coal Soc, 2016,41(3):769-775.
Xingyang LI , Tianju LIU , Yang GAO , Dandan ZHANG , Yong ZHOU , Meng PAN . A superior methanol-to-propylene catalyst: Construction via synergistic regulation of pore structure and acidic property of high-silica ZSM-5 zeolite. Chinese Journal of Inorganic Chemistry, 2024, 40(7): 1279-1289. doi: 10.11862/CJIC.20240026
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Q: Quartz; Cr: Cristobalite; G: Graphite; C: Corundum; SC: Silicon Carbide
Q: Quartz; Cr: Cristobalite; G: Graphite; C: Corundum; A: Anorthite; H: Hematite; SC: Silicon Carbide; W: Wollastonite; P: Pseudowollastonite; Wu: Wustite; S: Silimanite; FS: Fe3Si; FS2: Fe1.34Si0.66; FS3: Fe5Si3; CA1: CaAl4O7; CA2: CaAl12O19; CS: Ca2SiO4; CF: CaFe3O5; He: CaFeSi2O6; AC: Al4Ca; FC: Fe3C; FA: FeAl3; FAS: Fe3Al2Si3; FSO: Fe2.56Si0.44O4
(a): the unreacted graphite; (b): the product of SiO2 at 1 600 ℃; (c): magnification of the product of SiO2 at 1 600 ℃; (d): the product of sample mixed with CaO at 1 600 ℃; (e): the product of sample mixed with Fe2O3 at 1 600 ℃; (f): magnification of the product of sample mixed with Fe2O3 at 1 600 ℃