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Effects of secondary air velocity on NO emission with coal preheating technology

机译:二次风速对煤预热技术对NO排放的影响

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摘要

This study investigated experimentally the effects of the injection velocity of the secondary air on combustion and NO emissions of Shenmu semi-coke in a 30 kW coal preheating combustion test rig. Results showed that the self-preheating burner could provide with the high temperature preheated fuel (coal gas and coal char) stably and continuously without extra heat input. Most of volatile-N was released following with the release of volatiles during the preheating process, which was conductive to inhibit NO formation. The combustion temperatures were uniform in the down-fire-combustor and flame images were all dark red with no obvious flame fronts. The coal gas was rapidly consumed in the upper part while the coal char was burnt out in the lower part of the downfire-chamber. The presence of two combustion zones would contribute to leading to more uniform temperatures. Char-N was the main source of NO in the research, and NO was reduced by the coal gas (CO, CHi, NHi and other species) and char simultaneously above 1000 mm. While below 1000 mm, char was dominating for NO reduction. In the paper, the relationship of injection velocity of secondary air and exit NOx emissions was not clearly revealed. It was believed that the effects of secondary air velocity were multifactorial. Mean temperature and root mean square temperature were associated with the exit NOx emissions. When mean temperature and root mean square temperature are low, the exit NOx emissions are low correspondingly.
机译:本研究通过实验研究了二次空气的注入速度对30 kW煤预热燃烧试验台中神木半焦燃烧和NO排放的影响。结果表明,自热燃烧器可以稳定,连续地提供高温预热燃料(煤气和煤焦),而无需额外输入热量。在预热过程中,大部分挥发物-N随挥发物的释放而释放,这有利于抑制NO的形成。向下燃烧器的燃烧温度均匀,火焰图像均为深红色,没有明显的火焰锋。煤在上部迅速消耗掉,而煤炭在降火室的下部燃烧掉。两个燃烧区的存在将有助于导致更均匀的温度。碳氮是研究中NO的主要来源,NO随煤气(CO,CHi,NHi和其他物种)和焦炭在1000 mm以上的同时还原。当低于1000毫米时,炭是主要的NO还原剂。在本文中,二次空气的喷射速度与出口NOx排放之间的关系并不清楚。相信二次空气速度的影响是多因素的。平均温度和均方根温度与出口NOx排放有关。当平均温度和均方根温度较低时,出口NOx排放量相应较低。

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