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不同煤阶煤炭化过程中挥发分组成及微孔变化的研究
引用本文:申峻,王志忠. 不同煤阶煤炭化过程中挥发分组成及微孔变化的研究[J]. 煤炭学报, 2007, 32(6): 626-629
作者姓名:申峻  王志忠
作者单位:太原理工大学,化学化工学院,山西,太原,030024;太原理工大学,化学化工学院,山西,太原,030024
摘    要:用SORPTOMATIC1990吸附仪研究了6种不同煤阶煤(包括无烟煤、贫瘦煤、焦煤、肥煤、弱黏煤、气煤)在3 ℃/min升温速率到1 000 ℃的炭化过程中孔容和孔径随温度的变化规律,并用Bio-rad FTS-165裂解红外测定了各种煤在10 ℃/min升温速率的炭化过程中挥发分的组成及各自的释放温度范围.结果表明:不同变质程度煤在裂解过程中,可挥发性芳香物生成量的大小排序为肥煤>焦煤>瘦煤>气煤,且肥煤芳环上的取代基最多,而弱黏煤和无烟煤生成可挥发性芳香物的量最少.煤阶越低,释放CO2的温度越低,生成的量越多.1 000 ℃生成焦炭的孔容大小排列为:肥煤C1>弱黏煤D1>焦煤B1>无烟煤YQ,比表面积大小排列为C1YQ,B1>D1,平均孔半径大小的排列为:D1B1>YQ>C1.在炭化过程中,C1肥煤的孔容和比表面积变化最剧烈,YQ煤变化最小.C1煤生成焦炭表面积最大为20 m2/g,其它煤成焦表面积3 m2/g.

关 键 词:  炭化  挥发分组成  微孔  裂解红外  比表面积
文章编号:0253-9993(2007)06-0626-04
收稿时间:2006-09-26
修稿时间:2006-09-26

Study on variation of micro-pores(<100 nm) and volatile components of different rank coals during carbonization
SHEN Jun,WANG Zhi-zhong. Study on variation of micro-pores(<100 nm) and volatile components of different rank coals during carbonization[J]. Journal of China Coal Society, 2007, 32(6): 626-629
Authors:SHEN Jun  WANG Zhi-zhong
Affiliation:Department of Chemical Engineering, Taiyuan University of Technology, Taiyuan 030024, China
Abstract:6 different rank coals (including anthracite, lean coal, coking coal,  fat coal,weakly caking coal and gas coal) were carbonized at 3 ℃/min in crucibles up to 1 000 ℃. The pore volume and pore diameter of chars and cokes produced at different final temperatures were analyzed by SORPTOMATIC1990 adsorber. Bio rad FTS-165 pyrolysis ir was used to measure six coals volatiles component and their releasing temperature domain at 10 ℃/min. It showed that during carbonization the quantity of produced volatile aromatics ranked by fat coal C1>coking coal B1>lean coal A5>gas coal Y1. The quantity of hydroxyl group and carbonyl group released by fat coal C1 is the most in the six coals. The yield of aliphatic hydrocarbon ranked by C1>B1>A5, Y1. Except for CO2, the quantity of all kinds of groups released by weak caking coal D1 is the least in the six coals. At 1 000 ℃, the rank of coke pore volume is C1>D1>B1>YQ, and coke average pore radius rank is D1B1>YQ>C1. C1 coal produced coke with the largest specific surface area, about 20 m2/g, and other three coals all produce coke with specific surface area about 3 m2/g.
Keywords:coal  carbonization  volatile component  micro-pores  pyrolysis-ir  specific surface area
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