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Pollutant Formation in Furnaces: CO_x and Fine Particulates

机译:熔炉污染物形成:CO_X和细颗粒

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Two major environmental problems limiting combustion processes in furnaces are the emissions of nitrogen oxides and fine particles. Mechanisms of nitrogen oxide pollutant formation and destrucion has been researched for many decades, since the nineteen sixities. The chemical kinetics are nwo well understo9od, and this understanding has led to pollutant abatement measures such as staged combustion and reburning. Not currently available is a quantitiative understanding of the coupling between flame aerodynamics/mixing and NO_x formation/destruction kinetics. This paepr presents recent reseach results from the Universtiy of Arozona and the US EPA on how poor, non ideal mixing, such as are obtained in diffusion flaes, can be exploited to allow NO_x reduction by reburning under overall fuel lean conditions, where premixed kinetic mechanisms suggest reburning to be ineffective.One especially interesting results was how the transition from laminar to turbulent diffusion flames affected the order of NO reduction with respect to NO.
机译:限制熔炉中燃烧过程的两个主要环境问题是氮氧化物和细颗粒的排放。几十年来,研究了氮氧化物污染物形成和溶解的机制,自199年以来。化学动力学是NWO良好的遗憾,这种理解导致了污染物减排措施,如上演燃烧和燃烧。目前尚未获得的是对火焰空气动力学/混合和NO_X形成/破坏动力学耦合的量化了解。这种PAEPR展示了最近的arozona和美国EPA的研究结果,即在扩散脆弱中获得的非理想混合,例如在扩散脆弱中获得的差,以允许通过在整体燃料精益条件下重塑NO_X减少,其中预混动机机制建议拒绝效力。一个特别有趣的结果是从层流到湍流扩散火焰的过渡如何影响否则没有减少的顺序。

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