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Experimental study on pollutant emissions in the novel combined porous-free flame burner

机译:新型组合式无孔火焰燃烧器污染物排放的实验研究

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This study intends to measure the pollutant emissions in the novel combined porous-free flame burner and compare it with porous burner experimentally. In this regard, a comparison of the porous-free flame burner and porous burner is done and the effect of the diameter of the hole that is created at the center of the porous medium is studied. In the following, the effects of pore density of the porous medium, firing rate and porous medium material on pollutant emissions are analyzed. The results show that CO concentration in the porous-free flame burner is lower than that of the porous burner and that an increase in the central hole diameter leads to a decrease in CO emission. Furthermore, as the pore density of the porous medium increases, CO concentration increases and for a higher firing rate, CO emission decreases. Also, when the Al2O3 porous medium is used, CO concentration decreases compare to that of SiC porous medium. Measuring NOx emission shows that NOx concentration changes only with varying the equivalence ratio and other parameters have no significant effect on NOx emission. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本研究旨在测量新型组合式无孔火焰燃烧器中的污染物排放,并将其与多孔燃烧器进行实验比较。在这方面,对无孔火焰燃烧器和多孔燃烧器进行了比较,并研究了在多孔介质中心产生的孔的直径的影响。在下文中,分析了多孔介质的孔密度,燃烧速率和多孔介质材料对污染物排放的影响。结果表明,无孔火焰燃烧器中的CO浓度低于孔燃烧器,并且中心孔直径的增加导致CO排放的减少。此外,随着多孔介质的孔密度增加,CO浓度增加,并且对于更高的燃烧速率,CO排放减少。另外,当使用Al 2 O 3多孔介质时,与SiC多孔介质相比,CO浓度降低。测量NO x排放表明,NO x浓度仅随着当量比的变化而变化,并且其他参数对NO x排放没有显着影响。 (C)2018 Elsevier Ltd.保留所有权利。

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