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Nb对MnTiO_(x)在烧结烟气的NH_(3)-SCR低温催化活性及抗钾毒化的促进作用 被引量:1
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作者 喻瑞 朱繁 +2 位作者 史光 崔俊明 张维萍 《分子催化(中英文)》 CAS CSCD 北大核心 2024年第5期427-436,I0002,共11页
钢铁行业的烧结烟气中存在大量的氮氧化物(NO_(x)),严重破坏环境,并威胁人类健康.目前NO_(x)脱除(DeNO_(x))最有效的方法是氨气选择性催化还原法(NH_(3)-SCR).在众多NH_(3)-SCR催化剂中,MnTiO_(x)催化剂表现出较好的低温活性,具有较好... 钢铁行业的烧结烟气中存在大量的氮氧化物(NO_(x)),严重破坏环境,并威胁人类健康.目前NO_(x)脱除(DeNO_(x))最有效的方法是氨气选择性催化还原法(NH_(3)-SCR).在众多NH_(3)-SCR催化剂中,MnTiO_(x)催化剂表现出较好的低温活性,具有较好的烧结烟气脱硝应用前景.但实际应用中,MnTiO_(x)容易受到以K为代表的碱金属物种的毒化.因此,采用Nb针对性地对MnTiO_(x)进行改性,以提高催化剂的抗碱金属中毒性能.我们考察了引入不同Nb含量对MnTiO_(x)NH_(3)-SCR反应性能和抗碱金属性能的影响.Nb改性后的MnTiO_(x)催化剂相较于原催化剂,其反应性能和抗碱金属K中毒的性能均具有显著提高.结果表明,当Nb含量较低时,K会在催化剂上形成较为明显的钾锰氧化物物种,减少催化剂上酸性位点的数量和强度,并降低Mn4+和活性氧物种的比例,这是催化剂K中毒后反应活性降低的原因.引入Nb后,增加了催化剂的酸性位点、Mn4+和活性氧物种的比例,并且K中毒之后,这些物种下降的幅度明显减少,因此引入Nb后使得催化剂的反应活性和抗碱金属中毒性能大幅提升. 展开更多
关键词 NH_(3)-SCR 低温活性 抗钾中毒 MnTiO_(x)氧化物 Nb改性
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Promotional effects of Zr on K^+-poisoning resistance of CeTiO_x catalyst for selective catalytic reductionof NO_x with NH_3 被引量:5
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作者 徐宝强 徐海迪 +6 位作者 林涛 曹毅 兰丽 李元山 冯锡 龚茂初 陈耀强 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第8期1354-1361,共8页
CeTiOx and CeZrTiOx catalysts were prepared by a coprecipitation method and used for selective catalytic reduction of NOx by NH3 (NH3‐SCR). Various amounts of KNO3 were impregnated on the catalyst surface to invest... CeTiOx and CeZrTiOx catalysts were prepared by a coprecipitation method and used for selective catalytic reduction of NOx by NH3 (NH3‐SCR). Various amounts of KNO3 were impregnated on the catalyst surface to investigate the effects of Zr addition on the K+‐poisoning resistance of the CeTiOx catalyst. The NH3‐SCR performance of the catalysts showed that the NOx removal activity of the Zr‐modified catalyst after poisoning was better than that of the CeTiOx catalyst. Brunau‐er‐Emmett‐Teller data indicated that the Zr‐containing catalyst had a larger specific surface area and pore volume both before and after K+poisoning. X‐ray diffraction, Raman spectroscopy, and transmission electron microscopy showed that Zr doping inhibited anatase TiO2 crystal grain growth, i.e., the molten salt flux effect caused by the loaded KNO3 was inhibited. The Ce 3d X‐ray photoelectron spectra showed that the Ce3+/Ce4+ratio of CeZrTiOx decreased more slowly than that of CeTiOx with increasing K+loading, indicating that Zr addition preserved more crystal defects and oxygen vacancies; this improved the catalytic performance. The acidity was a key factor in the NH3‐SCR performance; the temperature‐programmed desorption of NH3 results showed that Zr doping inhibited the decrease in the surface acidity. The results suggest that Zr improved the K+‐poisoning resistance of the CeTiOx catalyst. 展开更多
关键词 Cerium-titanium mixed oxide ZIRCONIUM Potassium-poisoning resistance Selective catalytic reduction Nitrogen oxides
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