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Ultrasound-assistant preparation of Cu-SAPO-34 nanocatalyst for selective catalytic reduction of NO by NH3

机译:超声辅助制备NH 3选择性催化还原NO的Cu-SAPO-34纳米催化剂

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The influence of the various preparation methods of Cu-SAPO-34 nanocatalysts on the selective catalytic reduction of NO with NH3 under excess oxygen was studied. Cu-SAPO-34 nanocatalysts were prepared by using four techniques: conventional impregnation (IM), ultrasound-enhanced impregnation (UIM), conventional deposition precipitation (DP) using NaOH and homogeneous deposition precipitation (HDP) using urea. These catalysts were characterized in detail by various techniques such as N-2-sorption, XRD, TEM, H-2-TPR, NH3-TPD and XPS to understand the catalyst structure, the nature and the dispersed state of the copper species, and the acid sites for NH3 adsorption. All of the nanocatalysts showed high activities for NO removal. However, the activities were different and followed the sequence of Cu-SAPO-34 (UIM) > Cu-SAPO-34 (HDP) > Cu-SAPO-34 (IM) > Cu-SAPO-34 (DP). Based on the obtained results, it was concluded that the NO conversion on Cu-SAPO-34 nanocatalysts was mainly related to the high reducibility of the isolated Cu2+ ions and CuO species, the number of the acid sites and the dispersion of CuO species on SAPO-34. (C) 2015 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:研究了Cu-SAPO-34纳米催化剂的各种制备方法对过量氧气下NH 3选择性催化还原NO的影响。 Cu-SAPO-34纳米催化剂采用四种技术制备:常规浸渍(IM),超声增强浸渍(UIM),使用NaOH的常规沉积沉淀(DP)和使用尿素的均相沉积沉淀(HDP)。通过各种技术(例如N-2-吸附,XRD,TEM,H-2-TPR,NH3-TPD和XPS)详细表征这些催化剂,以了解催化剂的结构,铜种类的性质和分散状态,以及NH3吸附的酸性部位。所有的纳米催化剂都显示出高的NO去除活性。然而,活性是不同的,并且遵循Cu-SAPO-34(UIM)> Cu-SAPO-34(HDP)> Cu-SAPO-34(IM)> Cu-SAPO-34(DP)的顺序。根据获得的结果,可以得出结论,Cu-SAPO-34纳米催化剂上的NO转化主要与分离出的Cu2 +离子和CuO种类的高还原性,酸位数和CuO种类在SAPO上的分散有关。 -34。 (C)2015年中国科学院生态环境研究中心。由Elsevier B.V.发布

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