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Porous medium based burner for efficient and clean combustion of ammonia-hydrogen-air systems

机译:基于多孔介质的燃烧器,用于氨-氢-空气系统的高效清洁燃烧

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摘要

Due to its high hydrogen density and extensive experience base, ammonia (NH3) has been gaining special attention as a potential green energy carrier. This study focuses on premixed ammonia hydrogen air flames under standard temperature and pressure conditions using an inert silicon-carbide (SiC) porous block as a practical and effective medium for flame stabilization. Combustion experiments conducted using a lab scale burner resulted in stable combustion and high combustion efficiencies at very high ammonia concentration levels over a wide range of equivalence ratios. Noticeable power output densities have also been achieved. Preliminary results of NO,, emission measurements indicate NO. concentrations as low as 35 ppm under rich conditions. The remarkable capability of this specific burner to operate efficiently and cleanly at high ammonia concentration levels, which can easily be achieved by partial cracking of NH3, is believed to be a key accomplishment in the development of ammonia fired power generation systems. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:由于其高的氢密度和丰富的经验基础,作为潜在的绿色能源载体,氨(NH3)受到了特别关注。这项研究的重点是在标准温度和压力条件下使用惰性碳化硅(SiC)多孔块作为实用且有效的火焰稳定介质,在预混合的氨氢空气火焰下进行燃烧。使用实验室规模的燃烧器进行的燃烧实验在很宽的当量比范围内以非常高的氨浓度水平产生了稳定的燃烧和较高的燃烧效率。还实现了显着的功率输出密度。 NO的初步结果,排放测量表明NO。在富裕条件下的浓度低至35 ppm。据信,这种特殊燃烧器的显着能力是在高氨浓度下高效,清洁地运行,这很容易通过NH3的部分裂化来实现,这是开发氨燃烧发电系统的关键成就。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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