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Ash transformations in pulverised fuel co-combustion of straw and woody biomass

机译:秸秆和木质生物质粉化燃料混合燃烧中的灰分转化

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Ash transformation processes have been studied during co-firing of wheat straw and pine stem wood and softwood bark. Pilot-scale trials in a 150 kW pulverised-fuel-fired burner were performed. Thermodynamic equilibrium calculations were made to support the interpretation of the results. The results show that reactions involving condensed phases are kinetically limited compared to reactions between gaseous ash compounds. Accordingly, the conditions promote gas phase reactions resulting in the formation of chlorides, sulphates and carbonates whereas reactions involving condensed reactants are suppressed. Both the slagging and fouling propensities of all co-firing mixes were reduced compared to that for pure straw. For the wood/straw mixes this was mainly due to a dilution of the ash forming elements of straw whereas for straw/bark, an additional effect from interaction between the fuel ash components was observed to reduce slagging. In general it can be concluded that under powder combustion conditions equilibrium is approached selectively and that the ash matter is strongly fractionated. The general results in this paper are useful for straw-fired power stations looking for alternative co-firing fuels.
机译:在小麦秸秆,松木和软木树皮的共烧过程中,已经研究了灰分转化过程。在150 kW的粉状燃料燃烧器中进行了中试。进行热力学平衡计算以支持结果的解释。结果表明,与气态灰分化合物之间的反应相比,涉及缩合相的反应在动力学上受到限制。因此,该条件促进了气相反应,导致形成氯化物,硫酸盐和碳酸盐,而抑制了涉及缩合反应物的反应。与纯秸秆相比,所有同燃混合物的结渣倾向和结垢倾向均降低。对于木材/稻草混合物,这主要是由于稀释了稻草的灰分形成元素,而对于稻草/树皮,观察到来自燃料灰分成分之间相互作用的附加效果,可减少结渣。通常可以得出结论,在粉末燃烧条件下,选择性地达到平衡,并且灰分被强烈地分馏。本文的一般结果对于寻找替代混合燃料的秸秆火力发电厂很有用。

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