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Experimental investigation on oxygen diluted partially premixed and oxygen enriched supplemental combustion for low emission

机译:低氧预混和富氧辅助燃烧低排放实验研究

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As one of the main sources of the air pollution, the NOx emission from combustion is difficult to avoid. In this research, a combustion method, named as Oxygen Diluted Partially Premixed and Oxygen Enriched Supplemental Combustion (ODPP/OESC) was proposed to reduce the NOx generation by adjusting the oxygen concentration. The relationships between the operating parameters were deduced. The effects of the ODPP/OESC on the NOx and CO emission were evaluated experimentally. Design of Experiments (DoE) was conducted to obtain the optimal operating parameters through the Response Surface Methodology (RSM). Further statistical analysis indicated that as the dominant operating parameter, the lower oxygen mole fraction of oxygen diluted air (Y-od) resulted in lower NOx but higher CO emission. The Yod makes the most contribution to the NOx and CO emission, then the oxygen mole fraction of oxygen enriched air (Y-oe) does, and the equivalence ratio of premixed gas (ERp) does the least. The regression analysis yielded two relationships between the NOx(CO), Y-od, Y-oe, and ERp. The optimal operating parameters were obtained by the RSM and verified experimentally. NOx and CO emission were 22.6 mg/m(3) and 362 mg/m(3) under the optimal condition, respectively. So the ODPP/OESC was promising and feasible for the low emission of the CH4/air combustion and the RSM can be used to control the combustion emissions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:作为空气污染的主要来源之一,很难避免燃烧产生的NOx排放。在这项研究中,提出了一种燃烧方法,称为氧气稀释的部分预混和富氧的辅助燃烧(ODPP / OESC),以通过调节氧气浓度来减少NOx的产生。推导出运行参数之间的关系。通过实验评估了ODPP / OESC对NOx和CO排放的影响。进行了实验设计(DoE),以通过响应面方法(RSM)获得最佳操作参数。进一步的统计分析表明,作为主要操作参数,氧气稀释空气(Y-od)的较低的氧气摩尔分数导致较低的NOx但较高的CO排放量。 Yod对NOx和CO排放的贡献最大,其次是富氧空气的氧摩尔分数(Y-oe),而预混合气体的当量比(ERp)最小。回归分析得出了NOx(CO),Y-od,Y-oe和ERp之间的两种关系。最佳运行参数由RSM获得并通过实验验证。在最佳条件下,NOx和CO排放分别为22.6 mg / m(3)和362 mg / m(3)。因此,ODPP / OESC对于CH4 /空气燃烧的低排放具有广阔的前景和可行性,RSM可用于控制燃烧排放。 (C)2018 Elsevier Ltd.保留所有权利。

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