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Significant Roles of Inherent Fine Included Mineral Particles in the Emission of PM1-10 during Pulverised Coal Combustion

机译:固有精细的显着作用包括在粉煤燃烧期间PM1-10发射中的矿物颗粒

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This study investigates the roles of inherent fine included mineral particles in coal in the formation of inorganic particulate matter (PM) during pulverized coal combustion at 140°C.A Western Australia sub-bituminous coal (Collie Coal) was used to prepare a raw coal sample of density-separated fraction (1.4—1.6 g/cm3) that is narrow-sized (63 90μm). The raw coal was also washed using dilute acid to prepare an acid washed coal sample that is free of organically-bound inorganic species.Computer-controlled scanning electron microscopy (CCSEM) analysis shows that mineral matter in the raw coal is of included nature,of which ~90% are fine mineral particles <10m.Combustion of the coal samples produces substantial PM1-10 that accounts for 20.3 - 24.8% of total ash collected. The PM1-10 samples contain abundant fine ash particles that are clearly originated from fine included mineral particles (e.g.quartz) inherent in the coal. The results suggest that liberation and transformation of fine included mineral particles in coal during combustion is a key mechanism responsible for PM1-10 formation under the combustion conditions.Experimental evidence further suggests that significant coalescence of fine included minerals within a burning coal particle can clearly take place to form large ash particles in the form of agglomerates.
机译:本研究调查了固有的细矿物矿物在煤中形成的矿物颗粒在140°Ca澳大利亚亚烟煤(Collie Coal)的煤燃烧期间形成无机颗粒物质(PM),用于制备原料煤样品密度分离的馏分(1.4-1.6g / cm 3)窄尺寸(6390μm)。还使用稀酸洗涤原煤以制备不含有机结合的无机物质的酸洗煤样..计算机控制扫描电子显微镜(CCSEM)分析表明,原煤中的矿物质是包括自然的矿物质哪个〜90%是细矿物颗粒<10m。燃烧的煤样品产生的大量PM1-10,占收集的总灰分的20.3-24.8%。 PM1-10样品含有丰富的细灰分颗粒,清楚起源于煤中固有的含有矿物颗粒(例如Quartz)。结果表明,燃烧过程中煤中精细的矿物颗粒的解放和转化是负责燃烧条件下PM1-10形成的关键机制。实验证据进一步表明,燃烧煤粒子内的精细矿物质的显着聚结可以清楚地提出以附聚物形式形成大灰分颗粒。

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