weakly caking coal

弱粘结煤

  • The results show the high-temperature coke from low metamorphic weakly caking coal has the most pore and the best activity ;

    结果表明,低变质 粘结 高温焦炭的孔隙最发育,活性最好;

  • Lignite long flame coal non-caking coal and weakly caking coal with higher ratio of atomic hydrogen to atomic carbon higher volatile matter lower inert component content and lower ash are suitable for direct liquefaction .

    H/C原子比较高、挥发份较高、惰性组分含量和灰分较低的褐煤、长焰煤、不粘煤、 等是适宜直接液化煤种。

  • Scientific basis for making metallurgical formed coke from weakly caking coal ( part 1 )

    粘结 生产冶金型焦的科学基础(连载1)

  • SiC was prepared with siliceous colliery waste quartzite anthracite coal and weakly caking coal by Acheson process . The microstructure of siliceous colliery waste was investigated by SEM .

    分别以硅质煤矸石、石英砂与 、无烟煤作原料用Acheson工艺合成了SiC,并研究了硅质煤矸石的微观结构。

  • A 40 kg small coking oven test was made for to find suitable substitute coal kind through the basic characters analysis of weakly caking coal .

    通过分析 的基本特性,找出其适合替代的煤种,并通过40kg小焦炉实验和工业实验,确定了配煤方案。

  • The high temperature activation character and application of weakly caking coal

    粘结 高温活化特性及其应用

  • With the raw material of gas coal and weakly caking coal-char a set of formed cokes were prepared by changing the size of gas coal and weakly caking coal-char .

    气煤和弱粘煤半焦为原料,通过改变气煤和 粘结 半焦的粒度制备出一系列的型焦。

  • Investigation on structure of weakly caking coal at high temperature and influence on synthesizing SiC

    粘结 的高温结构变化及其对合成SiC的影响