scholarly journals About Possibility to Use Industrial Coal-Rank Classification to Reveal Coal Layers Hazardous Characteristics

2021 ◽  
Vol 9 (2) ◽  
pp. 507-511
Author(s):  
Antoshchenko Mykola ◽  
Tarasov Vadym ◽  
Liubymova-Zinchenko Olga ◽  
Halchenko Anatolii ◽  
Kononenko Andrii
Keyword(s):  
Energies ◽  
2021 ◽  
Vol 14 (9) ◽  
pp. 2361
Author(s):  
Yinjiao Su ◽  
Xuan Liu ◽  
Yang Teng ◽  
Kai Zhang

Coal combustion is an anthropogenic source of mercury (Hg) emissions to the atmosphere. The strong toxicity and bioaccumulation potential have prompted attention to the control of mercury emissions. Pyrolysis has been regarded as an efficient Hg removal technology before coal combustion and other utilization processes. In this work, the Hg speciation in coal and its thermal stability were investigated by combined sequential chemical extraction and temperature programmed decomposition methods; the effect of coal rank on Hg speciation distribution and Hg release characteristics were clarified based on the weight loss of coal; the amount of Hg released; and the emission of sulfur-containing gases during coal pyrolysis. Five species of mercury were determined in this study: exchangeable Hg (F1), carbonate + sulfate + oxide bound Hg (F2), silicate + aluminosilicate bound Hg (F3), sulfide bound Hg (F4), and residual Hg (F5), which are quite distinct in different rank coals. Generally, Hg enriched in carbonates, sulfates, and oxides might migrate to sulfides with the transformation of minerals during the coalification process. The order of thermal stability of different Hg speciation in coal is F1 < F5 < F2 < F4 < F3. Meanwhile, the release of Hg is accompanied with sulfur gases during coal pyrolysis, which is heavily dependent on the coal rank.


2021 ◽  
Vol 696 ◽  
pp. 178838
Author(s):  
Xing Liu ◽  
Houzhang Tan ◽  
Xuebin Wang ◽  
Zhao Wang ◽  
Jiaye Zhang ◽  
...  

2012 ◽  
Vol 195-196 ◽  
pp. 91-102 ◽  
Author(s):  
A. Cuadrat ◽  
A. Abad ◽  
F. García-Labiano ◽  
P. Gayán ◽  
L.F. de Diego ◽  
...  

2013 ◽  
Vol 27 (12) ◽  
pp. 7287-7293 ◽  
Author(s):  
Xuliang Jing ◽  
Zhiqing Wang ◽  
Qian Zhang ◽  
Zhongliang Yu ◽  
Chunyu Li ◽  
...  

2015 ◽  
Vol 1092-1093 ◽  
pp. 1620-1624
Author(s):  
Zhi Hao Yang ◽  
Zhi Ping Li ◽  
Feng Peng Lai ◽  
Jun Jie Yi

According to the problems that the coalbed methane resource was rich in deep seam in China, but the economic and technology conditions were limited, it would be hard to mine with a conventional method. The CO2 capture, utilization and storage technology was provided (CO2-ECBM). The application of the technology would not only improve the methane recovery ratio from deep and unminable layer, but also put CO2 effectively in the deep layer for storage to reach a target of reducing emission. The study showed that a coal rank, coal seam pressure, coal seam permeability, injection time, injected gas types and others would affect to the recovery ratio of methane in a production mine. Therefore, before we use this technology, a rational evaluation should be conducted on the place location. So the capture and storage technology of CO2 has an important significance in protecting the natural environment.


2013 ◽  
Vol 54 ◽  
pp. 129-135 ◽  
Author(s):  
Jienan Pan ◽  
Zhaoping Meng ◽  
Quanlin Hou ◽  
Yiwen Ju ◽  
Yunxing Cao

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