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On the hydrothermal stability of CuAPSO-34 microporous catalysts for N2O decomposition: a comparison with CuZSM-5

机译:用于N2O分解的CuAPSO-34微孔催化剂的水热稳定性:与CuZSM-5的比较

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The hydrothermal stability of CuAPSO-34 microporous silicoaluminophosphates with chabasite structures has been investigated and compared to that of a copper-exchanged ZSM-5 zeolite by a combined XRD, FTIR, and catalytic study. CuAPSO-34 showed a higher hydrothermal structural stability (steaming 80 h at 600 degreesC), as found by XRD. Spectroscopic FTIR investigation of adsorbed CO revealed that upon this steaming procedure the concentration of monovalent copper ions in CuAPSO-34 was not significantly affected, whereas, even after a less severe steaming (60 h at 550 degreesC), these species dramatically decreased in CuZSM-5, and extraframework Al3+ ions were simultaneously formed. Consequently, the high activity in N2O decomposition shown by fresh CuZSM-5 was essentially lost after steaming, while CuAPSO-34 exhibited a significantly milder deactivation. (C) 2003 Elsevier Science (USA). All rights reserved. [References: 52]
机译:通过结合XRD,FTIR和催化研究,研究了具有菱铁矿结构的CuAPSO-34微孔硅铝磷酸盐的水热稳定性,并将其与铜交换的ZSM-5沸石的水热稳定性进行了比较。 X射线衍射表明,CuAPSO-34具有较高的水热结构稳定性(在600℃下蒸80小时)。 FTIR光谱对吸附的CO的研究表明,在蒸煮过程中,CuAPSO-34中单价铜离子的浓度并未受到显着影响,而即使经过较低强度的蒸煮(在550摄氏度下60 h),CuZSM-如图5所示,同时形成骨架外的Al 3+离子。因此,蒸煮后,新鲜的CuZSM-5所显示的N2O分解中的高活性基本上消失了,而CuAPSO-34表现出明显更缓和的失活。 (C)2003 Elsevier Science(美国)。版权所有。 [参考:52]

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