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Size distributions of major elements in residual ash particles from coal combustion

机译:燃煤残余灰分中主要元素的尺寸分布

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Combustion experiments for three coals of different ranks were conducted in an electrically-heated drop tube furnace. The size distributions of major elements in the residual ash particles (> 0.4 mu m) such as Al, Si, S, P, Na, Mg, K, Ca and Fe were investigated. The experimental results showed that the concentrations of Al and Si in the residual ash particles decreased with decreasing particle size, while the concentrations of S and P increased with decreasing particle size. No consistent size distributions were obtained for Na, Mg, K, Ca and Fe. The established deposition model accounting for trace element distributions was demonstrated to be applicable to some major elements as well. The modeling results indicated that the size distributions of the refractory elements, Al and Si, were mainly influenced by the deposition of vaporized elements on particle surfaces. A dominant fraction of S and P vaporized during coal combustion. Their size distributions were determined by surface condensation, reaction or adsorption. The partitioning mechanisms of Na, Mg, K, Ca and Fe were more complex.
机译:在电加热的滴管炉中对三种不同等级的煤进行了燃烧实验。研究了残留灰分颗粒(> 0.4μm)中主要元素(如Al,Si,S,P,Na,Mg,K,Ca和Fe)的尺寸分布。实验结果表明,残留灰分颗粒中的Al和Si浓度随粒径减小而减小,而S和P浓度随粒径减小而增大。对于Na,Mg,K,Ca和Fe,未获得一致的尺寸分布。已证明建立的考虑微量元素分布的沉积模型也适用于一些主要元素。模拟结果表明,难熔元素Al和Si的尺寸分布主要受汽化元素在颗粒表面的沉积影响。 S和P的主要成分在煤燃烧过程中蒸发。它们的尺寸分布通过表面凝结,反应或吸附来确定。 Na,Mg,K,Ca和Fe的分配机理更为复杂。

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