梁俊青, 苏亚欣, 周皞, 邓文义. 金属铁与丙烯共同还原NO的特性与机理[J]. 燃料化学学报(中英文), 2016, 44(8): 977-984.
引用本文: 梁俊青, 苏亚欣, 周皞, 邓文义. 金属铁与丙烯共同还原NO的特性与机理[J]. 燃料化学学报(中英文), 2016, 44(8): 977-984.
LIANG Jun-qing, SU Ya-xin, ZHOU Hao, DENG Wen-yi. Performance and mechanism of NO reduction by iron combined with propene[J]. Journal of Fuel Chemistry and Technology, 2016, 44(8): 977-984.
Citation: LIANG Jun-qing, SU Ya-xin, ZHOU Hao, DENG Wen-yi. Performance and mechanism of NO reduction by iron combined with propene[J]. Journal of Fuel Chemistry and Technology, 2016, 44(8): 977-984.

金属铁与丙烯共同还原NO的特性与机理

Performance and mechanism of NO reduction by iron combined with propene

  • 摘要: 研究了丙烯在金属铁作用下还原NO的特性。采用陶瓷管流动反应器在300-1100℃研究了不同条件下的NO还原效率,考察了SO2的影响,采用XRD、SEM和EDS分析了反应后金属铁表面的组分和微观结构特征。结果表明,丙烯在金属铁作用下具有良好的NO还原效果。在N2气氛,温度超过800℃后,金属铁作用下丙烯还原NO的效率达到了95%以上。在模拟烟气、富燃料条件下,温度高于900℃时,丙烯与金属铁还原NO的效率超过了90%。SO2对丙烯在金属铁作用下还原NO的效率影响很小。机理分析表明,当丙烯与金属铁共同还原NO时,一方面,NO被金属铁直接还原,同时丙烯还原氧化铁为金属铁;另一方面,丙烯通过再燃机理还原NO,同时再燃中间产物被氧化铁氧化为N2

     

    Abstract: NO reduction by propene with iron was experimentally studied. NO reduction efficiency at different conditions was tested in a flow-type ceramic tube reactor at 300-1100℃. The effect of SO2 was also investigated. XRD, SEM and EDS techniques were used to analyze the composition and surface microstructure of the iron sample after reaction. Results showed that propene was effective to reduce NO with iron. More than 95% of NO was reduced above 800℃ in N2 atmosphere and more than 90% of NO was reduced above 900℃ at fuel-rich conditions in simulated flue gas atmosphere by propene with iron respectively. SO2 had minor effect on NO reduction. The analysis on reaction mechanism showed that when propene was used to reduce NO with iron, on one hand, NO was directly reduced by iron while propene reduced the iron oxides to iron; on the other hand, propene reduced NO via reburning reaction while the re-burning intermediates were oxidized by iron.

     

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