煤炭工程 ›› 2014, Vol. 46 ›› Issue (1): 115-117.doi: 10.11799/ce201401036

• 研究探讨 • 上一篇    下一篇

细粒褐煤干燥的影响因素研究

张振华   

  1. 中国矿业大学
  • 收稿日期:2013-07-09 修回日期:2013-04-08 出版日期:2014-01-10 发布日期:2014-01-10
  • 通讯作者: 张振华 E-mail:836111380@qq.com

Studies on influence factors of fine lignite drying

  • Received:2013-07-09 Revised:2013-04-08 Online:2014-01-10 Published:2014-01-10

摘要:

褐煤是低变质程度的煤,难于有效利用,干燥是褐煤有效利用的关键过程,因此研究褐煤干燥性能的影响因素是十分必要的。在红外水分仪上,对细粒褐煤进行干燥实验,研究了粒径、温度、灰分和重介质对干燥效果的影响,然后使用有效水分扩散系数对干燥效果进行了分析。结果表明:温度和粒径对细粒褐煤干燥效果有重要影响,随着粒径的减小,干燥速率增大,有效水分扩散系数减小,随着温度的升高,干燥速率增大,有效水分扩散系数增大;灰分含量的提高,使干燥速率降低,有效水分扩散系数减小;添加重介质(磁铁矿粉和磁珠)对干燥效果有显著的影响,添加重介质后,干燥性能会变强,其中加磁珠时干燥效果最好,在磁珠含量占50%时可以达到最好的干燥效果。

关键词: 细粒褐煤, 干燥性能, 重介质, 有效水分扩散系数

Abstract:

The lignite is low metamorphic grade coal, but hard to use effectively, Drying is the key process to the effective utilization of lignite , It is necessary to study the influence factors of lignite drying performance. Effects of particle size, temperature, ash content and dense medium on drying efficiency of fine lignite in an infrared moisture meter are investigated by drying experiment, This was followed by the analysis of the drying results by utilizing effective moisture diffusivity. The results show that particle size and temperature have important influence on drying efficiency, with the decrease of particle size, the drying rate increases and the effective moisture diffusivity drops.The drying rate and the effective moisture diffusivity exhibit an increasing trend with increasing temperature. Both the lignite drying rate and the effective moisture diffusivity decrease with the decrease in ash content. Interfusing dense medium (magnetite powder and magnetic pearls) has significant influence on drying efficiency, the drying performance gets stronger on adding dense medium. Amongst all, the magnetic pearls work best during the process of drying, and it can achieve the best drying performance when the content of magnetic pearls reaches 50%.

Key words: fine lignite, drying performance, dense medium, effective moisture diffusivity