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煤在合成气、氢气和氮气气氛下的热解研究
引用本文:ARIUNAA A,李保庆,李文,PUREVSUREN B,MUNKHJARGAL Sh,刘粉荣,白宗庆,王刚.煤在合成气、氢气和氮气气氛下的热解研究[J].燃料化学学报,2007,35(1):1-4.
作者姓名:ARIUNAA A  李保庆  李文  PUREVSUREN B  MUNKHJARGAL Sh  刘粉荣  白宗庆  王刚
作者单位:1.State Key Laboratory of Coal Conversion, Institute of Coal Chemistry,
摘    要:采用固定床反应器,在合成气气氛下对中国寻甸褐煤、蒙古Shiveeovoo褐煤和Khoot油页岩进行了热解研究。升温速率10 ℃/min,褐煤热解温度400 ℃~800 ℃,油页岩热解温度300 ℃~600 ℃,研究结果与氢气和氮气气氛下的热解进行了比较。结果表明,与加压热解不同,褐煤在不同气氛下常压热解半焦和焦油收率差别不大,但对油页岩,合成气和氢气气氛下热解焦油收率高于氮气,气体收率低于氮气。黄铁矿硫在不同气氛下热解均极易脱除,并部分转化为有机硫。油页岩的总硫脱除率远低于褐煤,与油页岩的高灰分含量有关。与氮气甚至氢气相比,合成气下寻甸褐煤的高总硫脱除率和低有机硫含量与合成气中的CO有关。但CO在油页岩热解脱硫中不起作用,也与油页岩高灰分含量有关。研究结果也表明合成气可代替氢气进行加氢热解。

关 键 词:热解  合成气  脱硫  
文章编号:0253-2409(2007)01-0001-04
收稿时间:2006-06-13
修稿时间:2006年6月13日

Coal pyrolysis under synthesis gas, hydrogen and nitrogen
ARIUNAA A,LI Bao-Qing,LI Wen,PUREVSUREN B,MUNKHJARGAL Sh,LIU Fen-rong,BAI Zong-qing,WANG Gang.Coal pyrolysis under synthesis gas, hydrogen and nitrogen[J].Journal of Fuel Chemistry and Technology,2007,35(1):1-4.
Authors:ARIUNAA A  LI Bao-Qing  LI Wen  PUREVSUREN B  MUNKHJARGAL Sh  LIU Fen-rong  BAI Zong-qing  WANG Gang
Abstract:Chinese Xundian, Mongolian Shiveeovoo lignites and Khoot oil shale are pyrolyzed under synthesis gas (SG) at temperature range from 400 ℃ to 800 ℃ for lignite and from 300 ℃ to 600 ℃ for oil shale with heating rate of 10 ℃/min in a fixed bed reactor. The results were compared with those obtained by pyrolysis under hydrogen and nitrogen.The results showed that unlike pyrolysis at high pressure, there are only slight different in the yields of char and tar among pyrolyses under various gases at room pressure for lignite, while higher liquid yield with lower yields of char and gas was obtained in pyrolysis of oil shale under SG and H2 than under N2. It is found that the pyrite S can be easily removed to partially convert to organic S under various gaseous atmosphere and the total sulfur removal for oil shale is much less than lignite, which might be related to its high ash content. The higher total sulfur removal and less organic S content in the presence of SG in comparison with those under N2 and even under H2 in pyrolysis of Xundian lignite might result from the action of CO in SG. However, CO does not show its function in pyrolysis of Khoot oil shale, which might also be related to the high ash content. The results reported show the possibility of using synthesis gas instead of pure hydrogen as the reactive gas for coal hydropyrolysis.
Keywords:pyrolysis  synthesis gas  desulfurization
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