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Groups of paramagnetic centres in coal samples with different carbon contents

机译:碳含量不同的煤样品中的顺磁中心群

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Complex systems of paramagnetic centres existing in demineralised flame coal (71.4 wt% C), medium-rank coal (85.6 wt% C) and anthracite (94.9 wt% C) were analysed by electron paramagnetic resonance spectroscopy (EPR). Different groups of paramagnetic centres were searched in macerals (exinite, vitrinite, inertinite) of coals with carbon contents of 73.8 wt% C and 85.6 wt% C. Experimental EPR spectra were fitted by different superposition of theoretical lines. Total concentration of paramagnetic centres both in coal and macerals increases with carbon content in the sample. Total concentration of paramagnetic centres in macerals increases from exinite to inertinite. Four groups of paramagnetic centres were found in medium-rank coal, and only two groups exist in flame coal and anthracite. The EPR spectrum of medium-rank coal is a superposition of two broad and two narrow lines. Both broad and narrow, and two narrow lines were measured in EPR spectra of flame coal and anthracite, respectively. Two types of paramagnetic centres with broad lines and one group with narrow lines exist in exinite and vitrinite from medium-rank coal. Two narrow components were observed in EPR spectra of its inertinite. Two different broad electron paramagnetic resonance signals were detected for macerals from low-coalificated coal. Paramagnetic centres systems of medium-rank coal samples reveal the most complex character. Broad EPR lines were not observed for the higher coalificated samples, i.e., anthracite and inertinite from medium-rank coal. Narrow lines do not occur in EPR spectra of low-coalificated macerals. Strong dipolar interactions and fast spin-lattice relaxation processes are characteristic for paramagnetic centres with broad lines. Strong exchange interactions and short spin-lattice relaxation time were measured for paramagnetic centres with the narrowest EPR signals.
机译:通过电子顺磁共振波谱(EPR)分析了软化火焰煤(71.4 wt%C),中等级煤(85.6 wt%C)和无烟煤(94.9 wt%C)中存在的顺磁中心的复杂系统。在碳含量分别为73.8 wt%C和85.6 wt%C的煤的矿物(异质体,镜质体,惰质体)中搜索了不同组的顺磁中心。实验EPR谱通过理论线的不同叠加进行拟合。煤和矿物中顺磁性中心的总浓度随样品中碳含量的增加而增加。黄铁矿中顺磁性中心的总浓度从萤石到惰铁逐渐增加。在中等煤级煤中发现了四组顺磁中心,在火焰煤和无烟煤中仅存在两组。中阶煤的EPR谱是两条宽线和两条窄线的叠加。在火焰煤和无烟煤的EPR谱中分别测量了宽和窄以及两条窄线。中品位煤的斑岩和镜质岩中存在两种类型的宽线顺磁中心和一组窄线顺磁中心。在其惰质的EPR光谱中观察到两个狭窄的成分。从低煤化煤中检测出两个不同的宽电子顺磁共振信号。中品位煤样品的顺磁中心系统显示出最复杂的特征。对于较高煤化样品,即中阶煤的无烟煤和惰质岩,未观察到宽的EPR谱线。低煤化的微晶石的EPR谱图中不会出现细线。强的偶极相互作用和快速的自旋晶格弛豫过程是具有宽线的顺磁中心的特征。对于具有最窄EPR信号的顺磁中心,可以测量到强的交换相互作用和短的自旋晶格弛豫时间。

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