首页> 外文OA文献 >Selective Catalytic Reduction (SCR) of nitric oxide with ammonia using Cu-ZSM-5 and Va-based honeycomb monolith catalysts: effect of H2 pretreatment, NH3-to-NO ratio, O2, and space velocity
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Selective Catalytic Reduction (SCR) of nitric oxide with ammonia using Cu-ZSM-5 and Va-based honeycomb monolith catalysts: effect of H2 pretreatment, NH3-to-NO ratio, O2, and space velocity

机译:使用Cu-ZSM-5和Va基蜂窝状整体催化剂选择性催化氨还原氮氧化物(SCR):H2预处理,NH3-NO比率,O2和空速的影响

摘要

In this work, the steady-state performance of zeolite-based (Cu-ZSM-5) and vanadium-based honeycomb monolith catalysts was investigated in the selective catalytic reduction process (SCR) for NO removal using NH3. The aim was to delineate the effect of various parameters including pretreatment of the catalyst sample with H2, NH3-to-NO ratio, inlet oxygen concentration, and space velocity. The concentrations of the species (e.g. NO, NH3, and others) were determined using a Fourier Transform Infrared (FTIR) spectrometer. The temperature was varied from ambient (25 C) to 500 C. The investigation showed that all of the above parameters (except pre-treatment with H2) significantly affected the peak NO reduction, the temperature at which peak NO reduction occurred, and residual ammonia left at higher temperatures (also known as 'NH3 slip'). Depending upon the particular values of the parameters, a peak NO reduction of around 90% was obtained for both the catalysts. However, an accompanied generation of N2O and NO2 species was observed as well, being much higher for the vanadium-based catalyst than for the Cu-ZSM-5 catalyst. For both catalysts, the peak NO reduction decreased with an increase in space velocity, and did not change significantly with an increase in oxygen concentration. The temperatures at which peak NO reduction and complete NH3 removal occurred increased with an increase in space velocity but decreased with an increase in oxygen concentration. The presence of more ammonia at the inlet (i.e. higher NH3-to-NO ratio) improved the peak NO reduction but simultaneously resulted in an increase in residual ammonia. Pretreatment of the catalyst sample with H2 (performed only for the Cu-ZSM-5 catalyst) did not produce any perceivable difference in any of the results for the conditions of these experiments.
机译:在这项工作中,在选择性催化还原工艺(SCR)中使用NH3去除NO的过程中,研究了沸石基(Cu-ZSM-5)和钒基蜂窝整体催化剂的稳态性能。目的是描述各种参数的影响,包括用H2预处理催化剂样品,NH3-NO比率,入口氧气浓度和空速。使用傅立叶变换红外(FTIR)光谱仪确定物种(例如NO,NH3等)的浓度。温度从环境温度(25°C)到500°C不等。研究表明,所有上述参数(用H2预处理除外)均会显着影响NO还原峰,NO还原峰的温度以及残留的氨置于较高温度下(也称为“ NH3泄漏”)。根据参数的特定值,两种催化剂均获得约90%的NO峰值降低。但是,也观察到伴随产生的N2O和NO2物种,钒基催化剂比Cu-ZSM-5催化剂要高得多。对于两种催化剂,NO还原峰均随空速的增加而降低,而随氧浓度的增加而没有明显变化。 NO还原峰和NH3完全去除峰的温度随空速的增加而增加,但随氧浓度的增加而降低。进口处存在更多的氨(即更高的NH3-NO比率)改善了峰值NO还原,但同时导致残留氨的增加。对于这些实验条件,用H2预处理催化剂样品(仅对Cu-ZSM-5催化剂执行)不会在任何结果中产生任何可察觉的差异。

著录项

  • 作者

    Gupta Saurabh;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类
  • 入库时间 2022-08-20 19:41:52

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