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Cu SAPO 34 One Pot Hydrothermal Preparation Method for Particular Copper Configuration

机译:Cu Sapo 34一个罐热水制备方法,特别是铜结构

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Two different routes of synthesis were followed in order to compare the surface properties of two Cu-SAPO-34 catalysts. The direct copper incorporation during the hydrothermal synthesis, compared to the conventional impregnation method, allowed us to study the impact of active centers location on the catalytic activity during both the selective catalytic reduction of NOx by NH3 and the NH3 oxidation. X-ray diffraction, ex-situ diffuse reflectance infrared spectroscopy and X-ray photoelectron spectroscopy analysis were performed to know the copper location and its state for each catalysts. A unique location of the copper oxide at the surface of the synthesized catalyst was observed when the hydrothermal process was used. For similar Cu contents in the catalysts, different catalytic behaviors during the selective catalytic reduction of NOx by NH3 and during the NH3 oxidation were observed as a consequence of the specific activity of the copper clusters. Indeed, some cations in exchanged position were detected when the impregnation method was used, allowing high SCR performance at low temperature. On the other hand, the small copper clusters at the surface and the exchanged cations exhibited a certain NH3 oxidation at low temperature, hindering DeNO(x) activity. Catalyst with mainly large copper clusters and no appreciable occurrence of exchanged Cu2+ present in a range of temperatures, limited NH3 oxidation and high SCR performance.
机译:遵循两种不同的合成途径,以比较两个Cu-SAPO-34催化剂的表面性质。与常规浸渍方法相比,在水热合成期间的直接铜掺入使我们能够研究NH 3和NH 3氧化的选择性催化还原期间活性中心位置对催化活性的影响。进行X射线衍射,进行脱模漫反射红外光谱和X射线光电子能谱分析以了解每种催化剂的铜位置及其状态。当使用水热过程时,观察到合成催化剂表面的氧化铜处的独特位置。对于催化剂中的类似Cu含量,由于铜簇的比活性,观察到在NH 3和NH 3氧化期间在NH 3的选择性催化还原期间的不同催化行为。实际上,当使用浸渍方法时,检测到交换位置的一些阳离子,允许在低温下进行高SCR性能。另一方面,表面和交换阳离子的小铜簇在低温下表现出一定的NH 3氧化,阻碍丹诺(X)活性。催化剂主要具有大的铜簇,并且在一系列温度下,没有可明显发生的交换Cu2 +,Limited NH3氧化和高SCR性能。

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