电力科技与环保2026,Vol.42Issue(2):256-265,10.DOI:10.19944/j.eptep.1674-8069.2026.02.008
350MW循环流化床锅炉氨煤混燃的NOx排放特性数值模拟研究
Numerical simulation of NOx emission characteristics of ammonia-coal co-combustion in 350 MW circulating fluidized bed boiler
摘要
Abstract
[Objective]To promote the low-carbon transformation of coal-fired power units,ammonia-coal co-firing technology has become an important research direction for emission reduction in coal-fired power generation.[Methods]Based on computational fluid dynamics(CFD),this study performed numerical simulations of the ammonia-coal co-combustion process and pollutant emission characteristics in a 350 MW circulating fluidized bed(CFB)boiler.First,the ammonia injection position was optimized by comparing the combustion and NOx emission characteristics at three different injection points:the upper secondary air port,lower secondary air port,and coal feeding port.Then,the effects of ammonia blending ratios(0%,10%,15%,and 20%)on furnace combustion and NOx emissions were analyzed.Finally,the influence of the excess air ratio on ammonia-coal co-combustion characteristics was examined.[Results]The results show that:(1)The best ammonia injection position is the coal inlet,and the NOx emission concentration is 12.5%and 9.4%lower than that of the upper and lower secondary air outlets,respectively,and the minimum ammonia escape concentration is 4.5 mg/m3;(2)The optimal blending ratio of ammonia coal is 15%.At this time,the NOx emission is about 3%higher than that of pure coal combustion,the furnace temperature decreases by about 30 K,and the ammonia escape concentration remains at a low level.(3)The optimum excess air coefficient is 1.25,and the co-combustion state of ammonia and coal is the best.[Conclusion]Through numerical simulations of the ammonia-coal co-combustion process and pollutant emissions in a 350 MW supercritical CFB boiler,this study determined the optimal ammonia injection position,blending ratio,and excess air ratio,providing a theoretical reference for the low-carbon retrofit of circulating fluidized bed boilers.关键词
循环流化床锅炉/氨煤混燃/数值模拟/掺烧优化Key words
circulating fluidized bed boiler/ammonia-coal co-firing/numerical simulation/co-firing optimization分类
能源科技引用本文复制引用
黄梦涛,闫高程..350MW循环流化床锅炉氨煤混燃的NOx排放特性数值模拟研究[J].电力科技与环保,2026,42(2):256-265,10.基金项目
国家自然科学基金项目(52406019) (52406019)
山西省基础研究计划资助项目(202403021212327) (202403021212327)
山西省基础研究计划资助项目(202403021221013) (202403021221013)