Estimation of the Average Aromatic Cluster Size Based on Solid-State Nmr Measurement of Coal
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Yes
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Abstract
Measurements of solid-state NMR of eight Argonne Premium Coal Samples were conducted to estimate the average aromatic cluster size in these coals. Firstly, the carbon distribution was obtained from SPE/MAS 13C-NMR. Secondary, 1H-CRAMPS NMR spectra gave the hydrogen aromaticity of coal. Combination use of the hydrogen aromaticity and elemental analysis data could afford the amount of tertiary aromatic carbon. The parameter of χ b, the mole fraction of aromatic bridgehead carbons in all aromatic carbons, could be derived from above NMR data and elemental analysis of coal. χ b is directly correlated to the number of aromatic carbon atoms per aromatic cluster, C. In this study, the value of C varied from 10 (corresponding to the size of naphthalene) for Beulah-Zap and Wyodak coals to 23 (corresponding to the size of coronene) for Pocahontas No. 3 coal.
Description
This article is the original language of Japanese.
Keywords
Carbon, Hydrogen, Nuclear magnetic resonance spectroscopy, Average aromatic cluster size, Coal, Coal, Average aromatic cluster size, Carbon, Nuclear magnetic resonance spectroscopy, Hydrogen
Fields of Science
0211 other engineering and technologies, 02 engineering and technology, 01 natural sciences, 0105 earth and related environmental sciences
Citation
Kidena, K., Murata, S., Artok, L., and Nomura, M. (1999). Estimation of the average aromatic cluster size based on solid-state NMR measurement of coal. Nihon Enerugi Gakkaishi/Journal of the Japan Institute of Energy, 78(10), 874-876. doi:10.3775/jie.78.869
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OpenCitations Citation Count
12
Volume
78
Issue
10
Start Page
874
End Page
876
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