首页> 外文会议>International Conference on Fluidized Bed Combustion; 20050522-25; Toronto(CA) >EFFECT OF MINERAL MATTERS IN COAL ON FORMATION BEHAVIORS OF PARTICULATE MATTER AND ALKALI METAL COMPOUNDS DURING COAL COMBUSTION
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EFFECT OF MINERAL MATTERS IN COAL ON FORMATION BEHAVIORS OF PARTICULATE MATTER AND ALKALI METAL COMPOUNDS DURING COAL COMBUSTION

机译:煤中矿物成分对煤燃烧过程中颗粒物和碱金属化合物形成行为的影响

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Combustion tests for 2 types of coal (SC and BT coals), which have similar combustion performance and main fraction in the ash compositions, were conducted, using an electrically heated drop tube furnace. The burning particles were sampled by the Low Pressure Impactor (LPI) and analyzed concentration of alkali metal in the collected particles. Furthermore, they were observed by a scanning electron microscope (SEM) to discuss formation behaviors of the fine particles during combustion. In order to elucidate the relationship between formation characteristics of fine particulates during combustion and coal types, analysis of included and excluded mineral particles in the raw coals was conducted by a Computer Controlled SEM (CCSEM). Additionally, the composition analysis of the mineral particles in the raw coal was also carried out, using an energy dispersive X-ray spectrometer (EDS). As a result, the particle size distribution of ash particulates formed was different each other for two types of coal. Especially for the fine particulates with the size of less than 1 μm, the result for SC coal showed much more fine particulates formation than those for BT coal. Sodium compounds were enriched in the fine particulates for both the coals. Shapes of the fine particles with the size less than 1 μm for both the coals were spherical. For the coarse particles, however, spherical particles were observed for only SC coal. This difference was due to difference of the characteristics of mineral particles in the raw coals. The CCSEM analysis indicated that the excluded mineral matters, which tended to fragment during combustion, were contained more in SC coal than those in BT coal. This is the reason why SC coal forms more fine particulates during combustion than BT coal. From the EDS analysis, moreover, content of sodium in the excluded minerals of SC coal was higher than that of BT coal. This result suggests that SC coal tends to form the spherical fine particulates, in which the sodium compounds are enriched, during combustion.
机译:使用电滴管炉对两种类型的煤(SC和BT煤)进行了燃烧测试,这两种煤具有相似的燃烧性能,并且在灰分成分中具有主要成分。通过低压冲击器(LPI)对燃烧的颗粒进行采样,并分析收集的颗粒中碱金属的浓度。此外,通过扫描电子显微镜(SEM)观察它们以讨论燃烧期间细颗粒的形成行为。为了阐明燃烧过程中细颗粒的形成特性与煤类型之间的关系,通过计算机控制SEM(CCSEM)对原煤中包含和排除的矿物颗粒进行了分析。此外,还使用能量色散X射线光谱仪(EDS)对原煤中的矿物颗粒进行了成分分析。结果,对于两种类型的煤,形成的灰分颗粒的粒径分布彼此不同。特别是对于尺寸小于1μm的细颗粒,SC煤的结果显示比BT煤的细颗粒形成更多。两种煤的细颗粒中都富含钠化合物。两种煤的尺寸均小于1μm的细颗粒的形状为球形。然而,对于粗颗粒,仅SC煤观察到球形颗粒。这种差异是由于原煤中矿物颗粒的特性差异所致。 CCSEM分析表明,在燃烧过程中趋于破碎的被排除的矿物质比BT煤含有更多的SC煤。这就是SC煤在燃烧过程中比BT煤形成更多细颗粒的原因。另外,通过EDS分析,SC煤的排除矿物中的钠含量高于BT煤。该结果表明,SC煤在燃烧过程中趋于形成球形细颗粒,其中钠化合物富集。

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