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首页> 外文期刊>International journal of hydrogen energy >Effects of O_2 enrichment on NH_3/air flame propagation and emissions
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Effects of O_2 enrichment on NH_3/air flame propagation and emissions

机译:O_2富集对NH_3 /空气火焰繁殖和排放的影响

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摘要

The potential utilization of ammonia as a carbon-free fuel under oxygen (O2)-enriched condition is demonstrated, suggesting its practically appropriate burning conditions by measuring and predicting the combustion characteristics of outwardly-propagating spherical O2-enriched NH3/air premixed flames at normal temperature and pressure. Measured and computed laminar burning velocities and predicted flame structure exhibit that the O2-enriched ammonia/air flames become thinner and propagate faster with O2 enrichment. Observed flame morphologies and measured and computed Markstein numbers reveal that all the present O2-enriched flames are stable in terms of the flamefront cellular instability due to preferential diffusion and the effects of O2 enrichment on the instability are negligible. Volume-based 35-40% O2 in the nonfuel mixtures demonstrates the proper burning intensity for practical applications, comparable to the typical hydrocarbon/air flames. In the present flame configuration, however, local nitrogen oxides emissions are found to be high, which should be substantially reduced in the practical systems. (c) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:对氧气(O 2) - 成种条件下的氨作为无碳燃料的潜在利用,通过测量和预测正常的外侧繁殖球形O2富含NH3 /空气预混火焰的燃烧特性,提出了其实际适当的燃烧条件温度和压力。测量和计算的层状燃烧速度和预测的火焰结构表现出O2富含氨/空气火焰变薄并且通过O 2富集更快地传播。观察到的火焰形态和测量和计算的Markstein数字表明,由于优先扩散,因此燃烧细胞不稳定性的所有目前的O 2富集的火焰稳定,并且O2富集对不稳定性的影响可以忽略不计。非燃料混合物中基于体积的35-40%O2表明了实际应用的适当燃烧强度,与典型的碳氢化合物/空气火焰相当。然而,在本发明的火焰配置中,发现局部氮氧化物排放量高,在实际系统中应该显着降低。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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