Effect of Tetrahydrofuran Extraction on Surface Functional Groups of Coking Coal and Its Wettability

Coking coal was extracted with tetrahydrofuran solvent using ultrasonic and microwave-assisted method at 50°C and atmospheric pressure. Wettability of raw coal and its residue (residual coal) was tested with capillary penetration method. The raw and residual coals were studied by Fourier transform i...

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Main Authors: Jian Yao, Huaijun Ji, Huazhang Lu, Tongtong Gao
Format: Article
Language:English
Published: Wiley 2019-01-01
Series:Journal of Analytical Methods in Chemistry
Online Access:http://dx.doi.org/10.1155/2019/1285462
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author Jian Yao
Huaijun Ji
Huazhang Lu
Tongtong Gao
author_facet Jian Yao
Huaijun Ji
Huazhang Lu
Tongtong Gao
author_sort Jian Yao
collection DOAJ
description Coking coal was extracted with tetrahydrofuran solvent using ultrasonic and microwave-assisted method at 50°C and atmospheric pressure. Wettability of raw coal and its residue (residual coal) was tested with capillary penetration method. The raw and residual coals were studied by Fourier transform infrared spectroscopy (FTIR) with curve-fitting analysis. The variation of main surface functional groups of coking coal before and after extraction and its effect on wettability were analyzed. The results were obtained as the following: after extraction with tetrahydrofuran, hydroxyl, ether oxygen, and carbonyl in the coal structure were dissolved, the content of hydrophilic functional groups reduced, and then the hydrophobicity of coal enhanced. At the same time, part of aliphatic hydrocarbon dissolved, the length of aliphatic chains (I2) decreased from 3.961 of raw coal to 3.636 of residual coal, the length of aliphatic chains became shorter, aliphatic CH2 side-chains decreased and aliphatic CH3 side-chains increased, and hydrophobic functional groups content increased. In the aromatic structure, four hydrogens per ring increased and two, three, and five hydrogens per ring decreased. Reduction of substitution functional groups and aliphatic hydrocarbon decreased with the side-chains breakage produce more active sites, which increases the degree of condensation of the aromatic ring (I3). The combined action of the decrease of the hydrophilic functional groups and the increase of the hydrophobic functional groups made the wettability of the coking coal become weak.
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institution Kabale University
issn 2090-8865
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language English
publishDate 2019-01-01
publisher Wiley
record_format Article
series Journal of Analytical Methods in Chemistry
spelling doaj-art-3c64121eef1e4d3eb843586ae20b11232025-02-03T06:14:13ZengWileyJournal of Analytical Methods in Chemistry2090-88652090-88732019-01-01201910.1155/2019/12854621285462Effect of Tetrahydrofuran Extraction on Surface Functional Groups of Coking Coal and Its WettabilityJian Yao0Huaijun Ji1Huazhang Lu2Tongtong Gao3School of Engineering and Technology, China University of Geosciences (Beijing), Beijing, ChinaSchool of Engineering and Technology, China University of Geosciences (Beijing), Beijing, ChinaSchool of Engineering and Technology, China University of Geosciences (Beijing), Beijing, ChinaSchool of Engineering and Technology, China University of Geosciences (Beijing), Beijing, ChinaCoking coal was extracted with tetrahydrofuran solvent using ultrasonic and microwave-assisted method at 50°C and atmospheric pressure. Wettability of raw coal and its residue (residual coal) was tested with capillary penetration method. The raw and residual coals were studied by Fourier transform infrared spectroscopy (FTIR) with curve-fitting analysis. The variation of main surface functional groups of coking coal before and after extraction and its effect on wettability were analyzed. The results were obtained as the following: after extraction with tetrahydrofuran, hydroxyl, ether oxygen, and carbonyl in the coal structure were dissolved, the content of hydrophilic functional groups reduced, and then the hydrophobicity of coal enhanced. At the same time, part of aliphatic hydrocarbon dissolved, the length of aliphatic chains (I2) decreased from 3.961 of raw coal to 3.636 of residual coal, the length of aliphatic chains became shorter, aliphatic CH2 side-chains decreased and aliphatic CH3 side-chains increased, and hydrophobic functional groups content increased. In the aromatic structure, four hydrogens per ring increased and two, three, and five hydrogens per ring decreased. Reduction of substitution functional groups and aliphatic hydrocarbon decreased with the side-chains breakage produce more active sites, which increases the degree of condensation of the aromatic ring (I3). The combined action of the decrease of the hydrophilic functional groups and the increase of the hydrophobic functional groups made the wettability of the coking coal become weak.http://dx.doi.org/10.1155/2019/1285462
spellingShingle Jian Yao
Huaijun Ji
Huazhang Lu
Tongtong Gao
Effect of Tetrahydrofuran Extraction on Surface Functional Groups of Coking Coal and Its Wettability
Journal of Analytical Methods in Chemistry
title Effect of Tetrahydrofuran Extraction on Surface Functional Groups of Coking Coal and Its Wettability
title_full Effect of Tetrahydrofuran Extraction on Surface Functional Groups of Coking Coal and Its Wettability
title_fullStr Effect of Tetrahydrofuran Extraction on Surface Functional Groups of Coking Coal and Its Wettability
title_full_unstemmed Effect of Tetrahydrofuran Extraction on Surface Functional Groups of Coking Coal and Its Wettability
title_short Effect of Tetrahydrofuran Extraction on Surface Functional Groups of Coking Coal and Its Wettability
title_sort effect of tetrahydrofuran extraction on surface functional groups of coking coal and its wettability
url http://dx.doi.org/10.1155/2019/1285462
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AT huaijunji effectoftetrahydrofuranextractiononsurfacefunctionalgroupsofcokingcoalanditswettability
AT huazhanglu effectoftetrahydrofuranextractiononsurfacefunctionalgroupsofcokingcoalanditswettability
AT tongtonggao effectoftetrahydrofuranextractiononsurfacefunctionalgroupsofcokingcoalanditswettability