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An experimental study on the primary fragmentation and attrition of limestones in a fluidized bed

机译:流化床中石灰石主要破碎和磨损的实验研究

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In this paper, an experimental study on the primary fragmentation and attrition of 5 limestones in a fluidized bed was conducted. The intensity of fragmentation and attrition were measured in the same apparatus but at different fluidizing velocities. It was found that the averaged size of the particles decreased by about 10-20% during the fragmentation process. The important factors for particle comminution include limestone types, heating rate, calcination condition and ambient CO2 concentration. Fragmentation mainly occurred in the first a few minutes in the fluidized bed and it was more intense than that in the muffle furnace at the same temperature. The original size effect was ambiguous, depending on the limestone type. The comminution caused by attrition mainly occurred during calcination process rather than sulphation process. The sulphation process was fragmentation and attrition resisted. The attrition rate of sulphate was similar to that of lime in trend, decaying exponentially with time, but was one-magnitude-order smaller than that of lime. Present experimental results indicate that fragmentation mechanism of the limestone is dominated by CO2 release instead of thermal stress.
机译:本文对流化床中5个石灰石的主要破碎和磨损进行了实验研究。在相同的设备中以不同的流化速度测量碎裂和磨损的强度。发现在破碎过程中颗粒的平均尺寸降低了约10-20%。颗粒粉碎的重要因素包括石灰石类型,加热速率,煅烧条件和环境CO2浓度。破碎主要发生在流化床的前几分钟,并且在相同温度下比马弗炉中的破碎更强烈。取决于石灰石类型,原始尺寸效果不明确。磨损引起的粉碎主要发生在煅烧过程中,而不是硫酸化过程中。硫酸化过程是破碎和抗磨损的。硫酸盐的损耗率与石灰的趋势相似,随时间呈指数衰减,但比石灰的损耗小一个数量级。目前的实验结果表明,石灰石的碎裂机理主要是由CO2的释放而不是热应力引起的。

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