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首页> 外文期刊>Chemical Engineering Communications >Selective catalytic reduction of NOx by NH3 at low temperature over manganese oxide catalysts supported on titanate nanotubes
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Selective catalytic reduction of NOx by NH3 at low temperature over manganese oxide catalysts supported on titanate nanotubes

机译:NH3在低温下选择性催化还原NOx,在钛酸盐纳米管上负载的锰氧化物催化剂

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We report the NO conversion with NH3 at low temperature over MnOx-supported on titanate nanotubes. The effect of SO2 and water on catalytic activity was also analyzed. For the catalytic activity tests, three catalysts with 1, 3, and 5wt.% of MnOx were synthesized. A high NO conversion (92%) at 180 degrees C is reported for the 1Mn/NTiO2 catalyst. The further addition of MnOx to the support improves the catalytic activity but NO conversion (95%) was shifted to a higher temperature (from 180 to 220 degrees C). However, the presence of SO2 (50ppm) and water (5 vol.%) diminishes the NO conversion up to 60%, which remains after 300min. We found that addition of MnOx increases the Lewis acid sites concentration of the nanotubes. As the Lewis acid sites increase (from 1.86 to 3.56 mu mol m(-2)), the Mn4+/Mn3+ ratio on the surface of the nanotubes decreases (from 4 to 1.6), which indicates that the surface of the catalysts is deficient in electrons. We concluded that a high Lewis acid sites concentration and a low Mn4+/Mn3+ ratio, hence a surface deficient in electrons, improves the catalytic activity to remove NO on the Mn/NTiO2 catalysts.
机译:我们在低温下在低温下报告NH 3的转化率在钛酸盐纳米管上的MNOX中。还分析了SO2和水对催化活性的影响。对于催化活性试验,具有1,3和5wt的三种催化剂。合成汞烃。报告了1Mn / NtiO 2催化剂的180℃下的高不转化(92%)。进一步加入MNOX对载体改善了催化活性,但不转化(95%)偏移到较高温度(从180至220℃)。然而,SO2(50ppm)和水(5体积%)的存在减少了高达60%的不转化,其仍然在300分钟后。我们发现汞的添加增加了纳米管的路易斯酸性位点。随着路易斯酸部位的增加(从1.86至3.56μmmolm(-2)),纳米管表面上的Mn4 + / mn3 +比率(从4-1.1)降低,这表明催化剂的表面缺乏电子。我们得出结论,高路易斯酸性位点浓度和低Mn4 + / Mn3 +比,因此在电子中缺乏表面,改善了在Mn / NtiO 2催化剂上除去Not的催化活性。

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