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Co-liquefaction behavior of a sub-bituminous coal and sawdust

机译:亚烟煤与木屑的共液化行为

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摘要

The co-thermolysis and co-liquefaction properties of Shenhua coal and sawdust were investigated in this study. The synergistic effect between Shenhua coal and sawdust in co-liquefaction was probed. TG/DTG analysis suggests that the sawdust, which has lower pyrolysis temperature, can promote the thermolysis of Shenhua coal, resulting in more volatile matter to be released from coal molecular structure during the co-thermolysis process. This will result in the larger weight losses of their mixture compared to the corresponding weighted mean values of individual pyrolysis. The individual liquefaction of Shenhua coal and sawdust shows that sawdust has higher liquefaction activity compared to Shenhua coal. It gives much higher liquefaction conversion and oil yield than Shenhua coal at the same liquefaction conditions. Co-liquefactions of Shenhua coal and sawdust at different conditions were carried out. The results suggest that there exists an obviously synergistic effect during the co-liquefaction, and this synergistic effect is the function of liquefaction conditions. At high liquefaction temperatures and long reaction times, the synergistic effect decreases because of the increase of liquefaction activity of coal and lack of hydrogen donating ability of the system at the conditions, resulting in the increase of the rate of retrogressive condensed reactions. The largest enhancements in conversion of 16.8% and oil yield of 11.4% comparing with corresponding calculated weighted mean values of the individual liquefaction of Shenhua coal and sawdust were obtained at 400 and 380 "C, respectively in the co-liquefaction with 1/1 blending ratio of coal/sawdust.
机译:研究了神华煤和木屑的共热解和液化性能。探讨了神华煤与木屑共液化的协同作用。 TG / DTG分析表明,具有较低热解温度的木屑可以促进神华煤的热分解,从而在共热解过程中从煤分子结构中释放出更多的挥发性物质。与单独热解的相应加权平均值相比,这将导致其混合物的重量损失更大。神华煤和木屑的单独液化表明,与神华煤相比,木屑的液化活性更高。在相同的液化条件下,它比神华煤具有更高的液化转化率和石油产率。进行了神华煤和木屑在不同条件下的共液化。结果表明,在共液化过程中存在明显的协同作用,这种协同作用是液化条件的作用。在较高的液化温度和较长的反应时间下,由于煤的液化活性增加和在该条件下体系的氢供体能力不足,因此协同作用降低,导致逆向缩合反应速率增加。与分别以1/1混合共液化的神华煤和锯末液化的相应液化加权平均值相比,分别在400和380“ C下获得了最大的转化率提高16.8%和产油率11.4%煤/木屑比。

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  • 来源
    《Energy》 |2011年第11期|p.6645-6650|共6页
  • 作者单位

    School of Chemistry & Chemical Engineering, Anhui Key laboratory of Coal Clean Conversion & Utilization, Anhui University of Technology, Ma'anshan 243002,Anhui Province, PR China;

    School of Chemistry & Chemical Engineering, Anhui Key laboratory of Coal Clean Conversion & Utilization, Anhui University of Technology, Ma'anshan 243002,Anhui Province, PR China;

    School of Chemistry & Chemical Engineering, Anhui Key laboratory of Coal Clean Conversion & Utilization, Anhui University of Technology, Ma'anshan 243002,Anhui Province, PR China;

    School of Chemistry & Chemical Engineering, Anhui Key laboratory of Coal Clean Conversion & Utilization, Anhui University of Technology, Ma'anshan 243002,Anhui Province, PR China;

    School of Chemistry & Chemical Engineering, Anhui Key laboratory of Coal Clean Conversion & Utilization, Anhui University of Technology, Ma'anshan 243002,Anhui Province, PR China;

    School of Chemistry & Chemical Engineering, Anhui Key laboratory of Coal Clean Conversion & Utilization, Anhui University of Technology, Ma'anshan 243002,Anhui Province, PR China;

    School of Chemistry & Chemical Engineering, Anhui Key laboratory of Coal Clean Conversion & Utilization, Anhui University of Technology, Ma'anshan 243002,Anhui Province, PR China;

    School of Chemistry & Chemical Engineering, Anhui Key laboratory of Coal Clean Conversion & Utilization, Anhui University of Technology, Ma'anshan 243002,Anhui Province, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    co-thermolysis; co-liquefaction; biomass; coal;

    机译:共热解共液化生物质煤;

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