scholarly journals Solidification of Municipal Solid Waste Incineration Fly Ash through Co-Mechanical Treatment with Circulation Fluidized Bed Combustion Fly Ash

Materials ◽  
2019 ◽  
Vol 13 (1) ◽  
pp. 141
Author(s):  
Zhengzhen Yao ◽  
Zhonghui Xu ◽  
Qin Shuai ◽  
Xiaoyue Chen ◽  
Zao Jiang ◽  
...  

This study aims to explore the solidification performance of municipal solid waste incineration fly ash (MSWIFA) through co-mechanical treatment with circulation fluidized bed combustion fly ash (CFBCFA). The mineral characterization, physical properties, and leaching resistance of the solidified bodies are investigated by X-ray diffraction spectroscopy (XRD), Fourier transform infrared spectroscopy (FT-IR), Thermogravimetry-differential thermal analysis (TG-DTA), compressive strength, porosity, and leaching test, respectively. C–S–H, ettringite (AFt), and Friedel’s salt (FS) are the predominant hydrate products in the CFBCFA based solidified bodies, which are similar to the cement based solidified bodies. However, CFBCFA based solidified bodies exhibit higher compressive strength (36.7 MPa) than cement based solidified bodies (11.28 MPa), attributing to the three reasons: lower porosity and more compact internal structure of CFBCFA based solidified bodies; large amounts of Ca(OH)2 originating from MSWIFA are conducive to promoting the hydration reaction extent and compressive strength of the CFBCFA based solidified bodies; excessive Ca(OH)2 would cause compressive strength deterioration for the cement based solidified bodies. The heavy metals (Zn, Cu, Cr, Cd, and Pb) concentrations in the extraction solution of the CFBCFA based solidified bodies are far below the requirements of Chinese National Standard GB 5085.3-2007. The solidification of MSWIFA through co-mechanical treatment could be an ideal substitute for cement solidification technology.

2013 ◽  
Vol 849 ◽  
pp. 279-282
Author(s):  
Hai Ying Zhang

In this work, MSWI (municipal solid waste incineration) fly ash is used as a blending in production of ceramic brick by taking advantage of its high contents of SiO2, Al2O3 and CaO. Besides, macro-performance of the product was studied. It is found that when 20% fly ash is added, the product registers a high compressive strength of 18.9 MPa and a low water absorption of 8.9 % after being sintered at 1000°C. These results as a whole suggest that the use of MSWI fly ash in ceramic brick constitutes a potential means of adding value.


2020 ◽  
Vol 118 ◽  
pp. 281-290
Author(s):  
Mitali Nag ◽  
Amirhomayoun Saffarzadeh ◽  
Takeshi Nomichi ◽  
Takayuki Shimaoka ◽  
Hirofumi Nakayama

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