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Total oxidation of naphthalene at low temperatures using palladium nanoparticles supported on inorganic oxide-coated cordierite honeycomb monoliths

机译:使用负载在无机氧化物涂层堇青石蜂窝整体料上的钯纳米粒子在低温下萘的全氧化

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摘要

A study on the preparation of thin films of ZSM-5 and BETA zeolites, and a SAPO-5 silicoaluminophosphate, supported on cordierite honeycomb monoliths by in situ synthesis was carried out for their use as catalyst supports. Furthermore γ-Al2O3 was also coated onto a cordierite honeycomb monolith by a dip-coating method for use as a standard support. Structured monolithic catalysts were prepared by impregnation of the aforementioned coated monoliths with polymer-protected Pd nanoparticles. The monolithic catalysts have been tested for the total oxidation of naphthalene (100 ppm, GHSV 1220 h−1). From the combined use of the zeolite with polymer-protected nanoparticles, enhanced catalytic properties have been found for the total abatement of naphthalene. The Pd/MBETA and Pd/MZSM-5 catalytic monoliths have shown excellent activity with a high degree of stability, even after undergoing accelerated ageing experiments.
机译:对原位合成负载在堇青石蜂窝状整料上的ZSM-5和BETA沸石以及SAPO-5硅铝磷酸盐的薄膜进行了研究,以用作催化剂载体。此外,还通过浸涂法将γ-Al2 O 3涂布在堇青石蜂窝整料上,以用作标准载体。通过用聚合物保护的Pd纳米颗粒浸渍上述涂覆的整料来制备结构化的整料催化剂。测试了整体催化剂对萘的总氧化(100 ppm,GHSV 1220 h-1)。通过将沸石与聚合物保护的纳米颗粒组合使用,已发现增强的催化性能可完全消除萘。即使经过加速老化实验,Pd / MBETA和Pd / MZSM-5催化整体材料仍具有出色的活性和高度的稳定性。

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