Ignition temperature and surface emissivity of heterogeneous loosely packed materials from pyrometric measurements

B. Dlugogorski, S. Hirunpraditkoon, E. Kennedy
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引用次数: 4

Abstract

This paper reports the ignition temperature and emissivity of heterogeneous materials characterised by high void fraction of between 0.92 and 0.94 and composed of loose particles of shredded grass and paper, planed wood, shredded plastic bags, as well as sugar and bread, with about 95 % of the particles (by mass) of less than 50 mm in size. These materials reflect a typical composition and void fraction of so-called refusederived fuels (RDF), which are obtained from municipal solid waste, then densified and combusted for energy recovery. An infrared pyrometer, with a spectral response range of 8 to 14 µm, recorded the surface temperature of the surrogate RDF, prior to the onset of the flaming combustion, in a stand alone mass loss calorimeter operated at 20 and 45 kW m -2 . The overlapping spectral ranges of the pyrometer and the radiator heater necessitated the development of a practical methodology to obtain the actual surface temperature from the apparent measurements, which included the effect of the reflected radiation. In addition to surface temperatures (292 ‐ 325 °C for 20 kW m -2 and 250 ‐ 294 °C for 45 kW m -2 ), in this contribution, we estimate the actual emissivities (0.95 ‐ 0.98) of the materials from the intensity of the reflected radiation.
热法测量非均质松散堆积材料的点火温度和表面发射率
本文报道了一种非均相材料的点火温度和发射率,其特点是孔隙率高,介于0.92和0.94之间,由碎草和纸、刨花、碎塑料袋、糖和面包等松散颗粒组成,其中约95%的颗粒(按质量计)尺寸小于50mm。这些材料反映了所谓的垃圾衍生燃料(RDF)的典型组成和空隙部分,这些燃料是从城市固体废物中获得的,然后致密化和燃烧以回收能量。红外高温计,光谱响应范围为8到14µm,记录了在火焰燃烧开始之前,替代RDF的表面温度,在一个独立的质量损失量热计中工作在20和45 kW m -2。高温计和辐射加热器的光谱范围重叠,需要开发一种实用的方法,从表观测量中获得实际表面温度,其中包括反射辐射的影响。除了表面温度(20 kW m -2时292 ~ 325°C, 45 kW m -2时250 ~ 294°C)外,我们还通过反射辐射强度估算了材料的实际发射率(0.95 ~ 0.98)。
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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