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Hot-air drying behavior and fragmentation characteristic of single lignite particle

机译:褐煤颗粒的热风干燥行为及破碎特性

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摘要

The drying of lignite is a very significant topic due to its high economic value. However, fragmentation and pulverization of lignite during drying are also important factors because they affect the operation of the dryer. The aim of this study was to analyze the drying behavior of single lignite particle, as well as the development of both surface and internal cracks by image processing and micro-CT scanning. The results showed that the drying curve of single lignite particle can be divided into three stages, namely, a rapid drying stage (I), a transitional drying stage (II) and a drying equilibrium stage (III). The surface cracking rate increases with increasing drying temperature, and the number of surface cracks increases at the same time. Crack rate (CR) increases continuously in rapid drying stage (I) and transitional drying stage (II) when the drying temperature is 80 degrees C. For higher drying temperature (110, 140, and 170 degrees C), CR increases continuously in the rapid drying stage (I) and reaches the maximum near the end of the rapid drying stage (I). CR changes more smoothly in the transitional drying stage (II), and decreases slightly at the end of this stage. A small number of cracks appear near the surface at the beginning of drying. As the drying proceeds, the number of internal cracks increases and cracks develop towards the core. The crushing strength (CS) of single lignite particle, based on the definition in this paper, shows no clear dependence on drying temperature. The drying temperature might affect the moisture content in the sample, thus affecting the CS. Fragmentation is more likely to occur at high temperatures due to the rapid rate of water removal.
机译:褐煤的干燥由于其较高的经济价值而成为非常重要的课题。但是,褐煤在干燥过程中的破碎和粉碎也是重要的因素,因为它们会影响干燥机的运行。这项研究的目的是通过图像处理和微CT扫描分析褐煤颗粒的干燥行为,以及表面和内部裂纹的发展。结果表明,褐煤单颗粒的干燥曲线可分为三个阶段,即快速干燥阶段(I),过渡干燥阶段(II)和干燥平衡阶段(III)。随着干燥温度的升高,表面开裂率增加,同时表面开裂的数量增加。当干燥温度为80摄氏度时,裂纹率(CR)在快速干燥阶段(I)和过渡干燥阶段(II)中持续增加。对于较高的干燥温度(110、140和170摄氏度),CR在干燥温度中持续增加。快速干燥阶段(I),并在快速干燥阶段(I)结束时达到最大值。 CR在过渡干燥阶段(II)更加平稳地变化,在此阶段结束时略有下降。在干燥开始时,少量裂纹出现在表面附近。随着干燥的进行,内部裂纹的数量增加,并且裂纹向芯部发展。根据本文的定义,单一褐煤颗粒的抗碎强度(CS)并没有明显依赖于干燥温度。干燥温度可能会影响样品中的水分含量,从而影响CS。由于水的快速去除,在高温下更容易发生碎裂。

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