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Premixed LPG + Air Combustion in a Bubbling FBC with Variable Content of Solid Particles in the Bubbles

机译:气泡中FBC中预混合的LPG +空气燃烧气泡中的固体颗粒含量可变

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摘要

This paper presents the results of studies on the combustion of gaseous LPG in a bubbling fluidized bed. Relationships between the temperature, the bed mass and the location of the combustion zone and the NOx and CO concentrations in exhaust gases are described. The concentrations of both gases increase with rising temperature and then quickly decline. It has been shown that despite the increase in average bed temperature the drop in the emission of nitrogen oxides is connected with lower temperatures inside the exploding bubbles. These temperatures strongly depend on the quantity of solid contained in them. The paper also presents the results of modeling the combustion process in a fuel-air bubble. The modeling carried out has shown that above the temperature at which bubble self-ignition becomes possible inside the bed, with further bed temperature rise there is an increase in the solids content inside the bubbles at the moment of explosion. As a result, the maximum temperature inside the bubbles falls and the emission of nitrogen oxides is reduced. In turn, the emission of CO is linked to the propagation of combustion between bubbles when self-ignition cannot take place inside them. >Graphical AbstractComparison of experimental and calculated NOx concentration, as a function of the fluidised bed temperature
机译:本文介绍了在鼓泡流化床中燃烧气态LPG的研究结果。描述了温度,床层质量和燃烧区位置与废气中NOx和CO浓度之间的关系。两种气体的浓度均随温度升高而增加,然后迅速下降。已经表明,尽管平均床温增加了,但是氮氧化物排放的下降与爆炸气泡内部的较低温度有关。这些温度强烈取决于其中所含的固体量。本文还介绍了在气泡中燃烧过程建模的结果。进行的建模表明,在床层内部气泡自燃成为可能的温度以上,随着床层温度的进一步升高,爆炸时气泡内部的固体含量也会增加。结果,气泡内部的最高温度下降并且氮氧化物的排放减少。反过来,当气泡内部无法发生自燃时,CO的排放与气泡之间的燃烧传播有关。 <!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> >图形摘要<!-图/图形|无花果/替代品/图形模式=“锚定” m1-> <!-标题a7->根据流化床温度对实验和计算出的NOx浓度进行比较

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