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Effects Of Coal Blending On The Reduction Of Pm10 During High-temperature Combustion 2. A Coalescence-fragmentation Model

机译:混煤对高温燃烧过程中Pm10还原的影响2.凝聚-破碎模型

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A coalescence-fragmentation model has been developed to predict the behaviors of coal mineral particles during the combustion of pulverized bituminous coals or coal blends. Based on the computer-controlled scanning electron microscope (CCSEM) characterization of coal minerals, the particle size distributions (PSDs) and mineral species of ash particles can be simulated. In particular, the interactions among excluded minerals (mainly referring to the excluded Ca-bearing-species and Fe-bearing-species) and included minerals are accounted for in this model. The PSDs and the mineral species of ash particles are derived from the coalescence and fragmentation of coal mineral particles. Based on this proposed model, both of the predicted PSDs and the mineral species of ash particles are in good agreement with their corresponding experimentally measured values. And the comparisons further demonstrate that the combined effects of coalescence of included minerals and fragmentation of excluded minerals have direct impacts on the ash-forming process. In addition, for the coals rich in excluded Ca- and/or Fe-bearing-species, the interactions among included minerals and excluded minerals are another important mechanism governing ash formation for high-rank coals.
机译:已经开发了聚结-破碎模型来预测煤粉颗粒在烟煤或煤混合物燃烧过程中的行为。基于煤矿物的计算机控制扫描电子显微镜(CCSEM)表征,可以模拟灰分颗粒的粒径分布(PSDs)和矿物种类。特别地,在该模型中考虑了被排除的矿物(主要是指被排除的含钙物种和含铁的物种)与被包括的矿物之间的相互作用。 PSD和灰烬颗粒的矿物种类来自煤矿物颗粒的聚结和破碎。基于该提出的模型,预测的PSD和灰烬颗粒的矿物种类均与它们相应的实验测量值良好吻合。比较结果进一步表明,所含矿物的聚结和所排除矿物的碎裂的综合作用对成灰过程具有直接影响。此外,对于富含排除钙和/或铁的物种而言,包含矿物与排除矿物之间的相互作用是控制高级煤灰分形成的另一重要机制。

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