首页> 外文会议>2013 International conference on materials for renewable energy amp; environment >Particle Characteristics of Anthracite Powder Preheated Quickly in Circulating Fluidized Bed
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Particle Characteristics of Anthracite Powder Preheated Quickly in Circulating Fluidized Bed

机译:循环流化床中快速预热的无烟煤粉的颗粒特性

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Experimental studies were carried out on a bench-scale rig of pulverized anthracite combustion preheated by circulating fluidized bed (CFB).The preheated anthracites were sampled at the outlet of CFB and the effect of preheating temperature on particle characteristics was investigated.The particle size distribution of preheated anthracite powder was tested by a Malvern Mastersizer 2000 laser analyzer.The specific surface area,pore volume and pore diameter were analyzed by nitrogen absorption method.Scanning electron microscope (SEM) was used for a better observation on particle surface.It is found that when the preheat temperature is 900oC,the 50% cut size (d50) of the anthracite before and after being preheated decrease from 82 μm to 23 μm.For the preheated fuel,the pores in microsize with the diameter smaller than 2 nm and meso-size with the diameter ranging from 2 nm to 10 nm are major contributors for the overall specific surface area and pore volume.Furthermore,variations of specific surface area and pore volume versus preheating temperature can be divided into two regions: below 900oC and above 900oC.In the first region,the specific surface area and pore volume increase as the preheating temperature increases,while in the second region they decrease with the increase in the preheating temperature.Based on the SEM analysis,after being preheated,a lot of cracks and pores appear on the particle surface,and the pore structure is well developed.
机译:在循环流化床(CFB)预热的粉煤燃烧试验台架上进行实验研究,在CFB出口取样预热的无烟煤,研究预热温度对颗粒特性的影响,粒度分布用Malvern Mastersizer 2000激光分析仪测试无烟煤粉末的含量,用氮吸收法分析比表面积,孔体积和孔径,用扫描电子显微镜(SEM)更好地观察颗粒表面。当预热温度为900oC时,预热前后无烟煤的50%切割尺寸(d50)从82μm减小至23μm。对于预热燃料,微孔的直径小于2 nm,且介孔细小直径范围从2 nm到10 nm的大尺寸是总体比表面积和孔体积的主要贡献者。此外,比值的变化表面积和孔体积与预热温度的关系可分为两个区域:低于900oC和高于900oC。在第一个区域中,比表面积和孔体积随预热温度的升高而增加,而在第二个区域中,比表面积和孔体积随预热温度的升高而降低。根据SEM分析,预热后,颗粒表面出现许多裂纹和孔洞,孔结构发达。

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