Combustion of Coal Volatiles in the Freeboard of a Fluidized Bed Combustor: an Experimental Approach

R. Bautista-Margulis, J. Hernandez-barajas, R. Saucedo-Terán
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Abstract

Previous attempts to determine the amount of volatile material transferred into and burnt in the freeboard region (FBR) of fluidized bed coal combustors have been few and/or ambiguous. A major reason for this is the difficulty of separating the two combustion processes (volatiles and char) occurring simultaneously within both bed and freeboard sections, and because the instrumentation for measuring these separate phenomena directly is non-existent. Therefore, a calorimetric technique is reported here to produce quantitative information on the fraction of heat released by the volatile component in the FBR. The calorimetric experiments revealed that over one third of the original volatiles may be released and burnt above the bed at low excess air levels ( 850°C) and high excess air levels (up to 40 %). The transfer of coal volatiles in the FBR was found to be influenced by the in-bed operating and fluidizing conditions in the following order: bed temperature (Tb), excess air (XSA), fluidizing velocity (Uo) and coal particle size (dc).
煤挥发物在流化床燃烧器干舷燃烧的实验研究
以前试图确定转移到干舷区(FBR)的挥发性物质的量,并在流化床煤燃烧器燃烧,很少和/或含糊不清。造成这种情况的一个主要原因是很难将床层和干舷段同时发生的两种燃烧过程(挥发物和焦炭)分离出来,而且直接测量这些分离现象的仪器也不存在。因此,本文报道了一种量热法技术,以产生FBR中挥发性组分释放的热量的定量信息。量热实验表明,在低过量空气水平(850°C)和高过量空气水平(高达40%)下,超过三分之一的原始挥发物可能被释放并在床上燃烧。研究发现,流化床运行条件和流化条件对快堆内煤挥发分转移的影响依次为:床温(Tb)、过量空气(XSA)、流化速度(Uo)和煤粒度(dc)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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