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机构地区:[1]安徽理工大学化学工程学院,安徽淮南232001
出 处:《应用化工》2014年第2期288-291,共4页Applied Chemical Industry
摘 要:选取HGI相差较大的两种高硫石油焦B、C和一种淮北煤A按不同比例进行配煤,测定煤样、高硫石油焦样和配煤样品的HGI,采用行星式球磨机将样品(0.63 ~ 1.25 mm)磨制5min,并分析粒度分布.结果表明,在难磨的石油焦中配人一定比例的易磨煤可以提高配煤的HGI;难磨石油焦B与A煤混配后的HGI与配煤比例能够很好地遵循线性可加原则,易磨石油焦C与A煤混配后的HGI与配煤比例线性关系很差;随着配煤中石油焦的比例增加,大颗粒所占的比例增多.Two high-sulfur petroleum coke ( B, C) which HGI existed larger difference and a Huaibei coal (A) and their blendings. The particle size distribution of pulverized coal was analyzed by Laser Particle Size Analyzer on HGI experimental samples (0.63 - 1.25 mm) after the planet type ball mill grinding 5 min. The results showed that blending with a certain proportion of coal grindability of coal can improve the HGI of blended coals. The HGI of hard grind petroleum coke B blended with coal A can well follow a linear additive principle with blending ratio,but grindability petroleum coke C blended with coal A have poor linear relationship with the blending ratio;with the increase in the proportion of petroleum coke in the blending proportion larger particles increase.
分 类 号:TQ52[化学工程—煤化学工程] TQ53
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