Preparation of hydro-sodalite from fly ash using a hydrothermal method with a submolten salt system and study of the phase transition process

Yan-bing Zong , Cheng-yu Zhao , Wen-hui Chen , Zhao-bo Liu , Da-qiang Cang

International Journal of Minerals, Metallurgy, and Materials ›› 2020, Vol. 27 ›› Issue (1) : 55 -62.

PDF
International Journal of Minerals, Metallurgy, and Materials ›› 2020, Vol. 27 ›› Issue (1) : 55 -62. DOI: 10.1007/s12613-019-1904-8
Article

Preparation of hydro-sodalite from fly ash using a hydrothermal method with a submolten salt system and study of the phase transition process

Author information +
History +
PDF

Abstract

Hydro-sodalites are zeolitic materials with a wide variety of applications. Fly ash is an abundant industrial solid waste, rich in silicon and aluminum, from which hydro-sodalite can be synthesized. However, traditional hydrothermal synthesis methods are complex and cannot produce high-purity products. Therefore, there is a demand for processing routes to obtain high-purity hydro-sodalites. In the present study, high-purity hydro-sodalite (90.2wt%) was prepared from fly ash by applying a hydrothermal method to a submolten salt system. Samples were characterized by powder X-ray diffraction (XRD), scanning electron microscopy (SEM), thermogravimetry and differential thermal analysis (TG-DTA), and Fourier transform infrared spectroscopy (FUR) to confirm and quantify conversion of the raw material into the product phase. Purity of the samples prepared with an H2O/NaOH mass ratio of 1.5 and an H2O/fly ash mass ratio of 10 was calculated and the conversion process of the product phase was studied. Crystallinity of the product was influenced more by the NaOH concentration, less by the H2O/fly ash mass ratio. The main reaction process of the system is that the ${\rm{SiO}}_3^{2-}$ ions produced by dissolution of the vitreous body in the fly ash and Na+ ions in the solution reacted on the destroyed mullite skeleton to produce hydro-sodalite. This processing route could help mitigate processing difficulties, while producing high-purity hydro-sodalite from fly ash.

Keywords

fly ash / submolten salt system / hydrothermal method / hydro-sodalite

Cite this article

Download citation ▾
Yan-bing Zong, Cheng-yu Zhao, Wen-hui Chen, Zhao-bo Liu, Da-qiang Cang. Preparation of hydro-sodalite from fly ash using a hydrothermal method with a submolten salt system and study of the phase transition process. International Journal of Minerals, Metallurgy, and Materials, 2020, 27(1): 55-62 DOI:10.1007/s12613-019-1904-8

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Xu YT, Yang B, Liu XM, Li SGDS, Mukiza E, Li HJ. Investigation of the medium calcium based non-burnt brick made by red mud. Int. J. Miner. Metall. Mater., 2019, 26, 983.

[2]

Ding J, Ma SH, Shen S, Xie ZL, Zheng SL, Zhang Y. Research and industrialization progress of recovering alumina from fly ash: A concise review. Waste Manage., 2017, 60, 375.

[3]

Guo XL, G X, Xin SJ, Liu Y. Zeolite from coal fly ash by hydrothermal synthesis and characterization. Bull. Chin. Ceram. Soc, 2016, 35, 525

[4]

Liu XY, Liu YG, Zhang L. Progress in synthesis and application of zeolites from coal fly ash. Inorg. Chem. Ind, 2010, 42, 13

[5]

Shi DZ, Zhang JL, Zhang C, Li PF, Yuan RH. Research progress of hydrothermal synthesis of zeolite from fly ash. J. Saf. Environ., 2016, 16, 273

[6]

Wang HL, Xu ZH, Wu DD, Tan QW, Xie YJ, Li CL. Preparation of artificial zeolite from ash by two-step hydrothermal method. Environ. Prot. Chem. Ind., 2013, 33, 272

[7]

Wang L, Wang GD, Li XL, Liu Y. Synthesis and characterization of Y-type zeolite from coal fly ash by hydrothermal method. Chin. J. Environ. Eng, 2018, 12, 618

[8]

Benin J, Bukhair SS, Dehnavi V, Kazemian H, Rohani S. Using coal fly ash and wastewater for microwave synthesis of LTA zeolite. Chem. Eng. Technol, 2014, 37, 1532.

[9]

Zhao XS, Lu GQ, Zhu HY. Effects of ageing and seeding on the formation of zeolite Y from coal fly ash. J. Porous Mater, 1997, 4, 245.

[10]

Dai HY. Research of influential factor of utilizing flying ash to make molecular sieve. J. Taiyuan Uni., 2011, 12, 120

[11]

Murayama N, Yamamoto H, Shibata J. Mechanism of zeolite synthesis from coal fly ash by alkali hydrothermal reaction. Int. J. Miner. Process., 2002, 64, 1.

[12]

Wang L, Wang GD, Li XL, Liu Y. Synthesis and characterization of Y-type zeolite from coal fly ash by hydrothermal method. Chin. J. Environ. Eng., 2018, 37, 618

[13]

Choi CL, Park M, Lee DH, Kim IE, Park BY, Choi J. Salt-thermal zeolitization of fly ash. Environ. Sci. Technol., 2001, 35, 2812.

[14]

Zhao YB. Research on mineralogical properties of fly ash. Clean Coal Technol, 2015, 21, 112

[15]

Chindaprasit P, Rattanasak U. Characterization of the high-calcium fly ash geopolymer mortar with hot-weather curing systems for sustainable application. Adv. Powder Technol., 2017, 28, 2317.

[16]

Peng S, Wang ZH, Zheng Y, Shi LJ, Peng MJ. Quantitative determination of melamine of milk powder by infrared spectroscopy. Food Res. Dev., 2015, 36, 145

[17]

Yu LJ, Zheng JM, Zhu WL. Determination of eth-anol in alcohol by fourier transform infrared spectroscopy. Guangzhou Chem. bid., 2011, 39, 112

[18]

Zhang FL. Fast determination of dimethyl eEther content in liquefied petroleum gas by fourier transform infrared spectrometry method. Low Temp. Specialty Gases, 2011, 29, 26

[19]

Reheman A, He JY, Kaiheriman M, Maimaitinasir A, Sidike A. Structure characterization and luminescent properties of natural sodalite incorporated with albite. Mater. Prot, 2014, 47, 98

[20]

Chancey R, Stutzman P, Juenger MGG, Fowler DW. Comprehensive phase characterization of crystalline and amorphous phases of a Class F fly ash. Cem. Concr. Res., 2010, 40, 146.

[21]

Zhao PQ, Liu XP, de la Torre TL, Lu LC, Sobolev K. Assessment of the quantitative accuracy of Rietveld/XRD analysis of crystalline and amorphous phases in fly ash. Anal. Methods, 2017, 9, 2415.

[22]

Sun ZH, Bao WJ, Li HQ, Hui JB, Wang CH, Tang Q. Mineral phase change of high-alumina fly ash during desilication and extraction of A1203 by alkali dissolution process. Chin. J. ProcessEng., 2013, 13, 403

[23]

Monzon JD, Pereyra AM, Conconi MS, Bas-aldella EI. Phase transformations during the zeolitization of fly ashes. J. Environ. Chem. Eng., 2017, 5, 1548.

[24]

Bo CL, Zheng SL, Ma SH, Xie H. Leaching behaviors of aluminum and silicon compounds in aluminum-rich fly ash in dilute alkaline solution. Chin. J. Process Eng., 2012, 12, 613

[25]

Ma YC, Wang SJ, Song Y, Xu YP, Tian ZJ, Yu JY, Lin LW. Ionothermal synthesis of sodalite microspheres. Chin. J. Inorg. Chem., 2010, 26, 1923

[26]

H.Q. Li, D.H. Xu, C.H. Wang, J.B. Hui, W.J. Bao, and Z.H. Sun, Technical study of leaching alumina from high-alumina coal fly ash by pre-desilication two-step alkali hydro-thermal process, Light Met, (2016), No. 12, p. 5.

[27]

He SY, Li HQ, Li SP, Li YH, Xie Q. Kinetics of desilication process of fly ash with high aluminum from pulverized coal fired boiler in alkali solution. Chin. J. Non-ferrous Met, 2014, 24, 1888

AI Summary AI Mindmap
PDF

110

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/