VARIATION IN MACERAL CHEMISTRY WITHIN AND BETWEEN COALS OF VARYING RANK - AN ELECTRON-MICROPROBE AND MICRO-FOURIER TRANSFORM-INFRARED INVESTIGATION

被引:93
作者
MASTALERZ, M
BUSTIN, RM
机构
[1] University of British Columbia, Department of Geological Sciences, Vancouver, British Columbia, V6T 1Z4
来源
JOURNAL OF MICROSCOPY-OXFORD | 1993年 / 171卷
关键词
COAL; MACERAL CHEMISTRY; ELECTRON MICROPROBE; MICRO-FOURIER TRANSFORM INFRARED;
D O I
10.1111/j.1365-2818.1993.tb03369.x
中图分类号
TH742 [显微镜];
学科分类号
摘要
Electron microprobe and reflectance micro-Fourier infra-red techniques have been used to document the evolution of maceral chemistry from lignite to anthracite as well as to determine chemical variations between macerals and within macerals in iso-rank coals. This study shows that the evolution of elemental composition and functional groups in vitrinite differs from those of liptinite. In vitrinite, them is a decrease in the absorbance of both aliphatic stretching bands (2800-3000 cm-1) and the aromatic band (1600 cm-1) with an increase in rank from high-volatile bituminous to anthracitic coals. The change in functional groups is associated with an increase in C content from about 86 up to 94% and a decrease in 0 content from 7 to 1%. In sporinite, carboxyl/carbonyl bands (1710 cm-1), distinct in sub-bituminous and high-volatile bituminous ranks, disappear at higher rank. The 1600 cm-1 band is relatively weak in liptinite and increases dramatically when liptinite and vitrinite coalification paths merge. These changes in sporinite functional groups are accompanied by an increase in C content from 73 to 88-89%, decrease in 0 from 14 to 4% and decrease in H from more than 9 to less than 4%. Variations in chemistry between macerals and within macerals depend on coal rank. Up to high-volatile bituminous rank, liptinite macerals have higher absorbances of aliphatic stretching bands and lower absorbances of the aromatic 1600 cm-1 band than any other macerals. At medium-volatile bituminous rank, aliphatic stretching bands are distinct in vitrinite and semifusinite and very weak to absent in other inertinite macerals. At anthracitic rank, variations both in elemental composition and in functional groups between maceral groups are of the same magnitude as within maceral groups.
引用
收藏
页码:153 / 166
页数:14
相关论文
共 22 条
[1]  
BRENNER D, 1984, CHEM CHARACTERIZATIO, P48
[2]  
BROWN HR, 1963, FUEL, V43, P111
[3]   DIRECT DETERMINATION OF CARBON, OXYGEN AND NITROGEN-CONTENT IN COAL USING THE ELECTRON-MICROPROBE [J].
BUSTIN, RM ;
MASTALERZ, M ;
WILKS, KR .
FUEL, 1993, 72 (02) :181-185
[4]  
Bustin RM, 1985, COAL PETROLOGY ITS P
[5]  
CALEMMA V, 1988, FUEL, V67, P765
[6]  
DORMANS HNM, 1957, FUEL, V36, P321
[7]   AN INVESTIGATION OF THE VITRINITE MACERAL GROUP IN MICROLITHOTYPES USING DENSITY GRADIENT SEPARATION METHODS [J].
DYRKACZ, GR ;
BLOOMQUIST, CAA ;
RUSCIC, L ;
CRELLING, JC .
ENERGY & FUELS, 1991, 5 (01) :155-163
[8]   FOURIER-TRANSFORM INFRARED STUDY OF HIGH-PURITY MACERAL TYPES [J].
DYRKACZ, GR ;
BLOOMQUIST, CAA ;
SOLOMON, PR .
FUEL, 1984, 63 (04) :536-542
[9]   CHANGES IN THE CHEMICAL-STRUCTURE OF LOW RANK COAL AFTER LOW-TEMPERATURE OXIDATION OR DEMINERALIZATION BY ACID TREATMENT - ANALYSIS BY FT-IR AND UV FLUORESCENCE [J].
KISTER, J ;
GUILIANO, M ;
MILLE, G ;
DOU, H .
FUEL, 1988, 67 (08) :1076-1082
[10]   CHARACTERIZATION OF VITRINITE CONCENTRATES .1. FOURIER-TRANSFORM INFRARED STUDIES [J].
KUEHN, DW ;
SNYDER, RW ;
DAVIS, A ;
PAINTER, PC .
FUEL, 1982, 61 (08) :682-694