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[磁性铁基催化剂上低温选择性催化还原NO的实验研究]

[Experimental studies on low-temperature selective catalytic reduction of NO on magnetic iron-based catalysts].

作者信息

Yao Gui-huan, Zhang Qi, Qin Ye, Wang Fang, Lu Fang, Gui Ke-ting

机构信息

School of Energy and Environment, Southeast University, Nanjing 210096, China.

出版信息

Huan Jing Ke Xue. 2009 Oct 15;30(10):2852-7.

Abstract

Low-temperature selective catalytic reduction (SCR) of NO is a new technique needing urgent development in flue gas cleaning. Elementary studies were done about selective catalytic reduction of NO from flue gas on magnetic iron oxides with ammonia at low and medium temperatures in a fluidized bed, such as Fe3O4 and gamma-Fe2O3. Magnetic field effects for NO removal on gamma-Fe2O3 were also researched with low assisted magnetic fileds. X-ray diffraction spectroscopy was used to identify and characterize the iron oxides catalysts. Results show that gamma-Fe2O3 is active in SCR at low temperatures, and Fe3O4 is apparently less active in SCR than gamma-Fe2O3, but Fe2O3 is also active in ammonia oxidation by O2 above 25 degrees C. Therefore, the optimal catalytic temperature zone in SCR on gamma-Fe2O3 includes 250 degrees C and adjacent temperature zone below it. Furthermore, a better NO conversion, which is 90%, is obtained at 250 degrees C on the gamma-Fe2O3 particle catalyst. In addition, chemisorption of NO on gamma-Fe2O3 is accelerated by assisted magnetic fields at 150-290 degrees C, thus the NO conversion is improved and higher NO removal efficiency of 95% is obtained at 250 degrees C. But the efficiency of NO removal decreases above 290 degrees C with the magnetic field. It is concluded that gamma-FeO3 catalyst is fit to be used in low-temperature SCR of NO with ammonia at 200-250 degrees C, which may suppress oxidation of ammonia and take advantage of positive effects by external magnetic fields.

摘要

低温选择性催化还原(SCR)脱除NO是烟气净化领域亟待发展的一项新技术。已针对流化床中磁性氧化铁(如Fe3O4和γ-Fe2O3)在中低温下用氨选择性催化还原烟气中的NO开展了基础研究。还研究了低强度辅助磁场对γ-Fe2O3脱除NO的影响。采用X射线衍射光谱对氧化铁催化剂进行了鉴定和表征。结果表明,γ-Fe2O3在低温SCR中具有活性,Fe3O4在SCR中的活性明显低于γ-Fe2O3,但Fe2O3在25℃以上可被O2氧化氨。因此,γ-Fe2O3上SCR的最佳催化温度范围包括250℃及其以下的相邻温度区间。此外,在γ-Fe2O3颗粒催化剂上于250℃可获得90%的较高NO转化率。另外,在150 - 290℃下,辅助磁场可加速NO在γ-Fe2O3上的化学吸附,从而提高NO转化率,并在250℃下获得95%的更高NO脱除效率。但在290℃以上,磁场作用下NO脱除效率降低。研究得出结论,γ-Fe2O3催化剂适用于200 - 250℃下用氨低温SCR脱除NO,该条件可抑制氨的氧化并利用外部磁场的积极作用。

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