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Bifunctional zeolites-silver catalyst enabled tandem oxidation of formaldehyde at low temperatures.


ABSTRACT: Bifunctional catalysts with tandem processes have achieved great success in a wide range of important catalytic processes, however, this concept has hardly been applied in the elimination of volatile organic compounds. Herein, we designed a tandem bifunctional Zeolites-Silver catalyst that enormously boosted formaldehyde oxidation at low temperatures, and formaldehyde conversion increased by 50 times (100% versus 2%) at 70 °C compared to that of monofunctional supported silver catalyst. This is enabled by designing a bifunctional catalyst composed of acidic ZSM-5 zeolite and silver component, which provides two types of active sites with complementary functions. Detached acidic ZSM-5 activates formaldehyde to generate gaseous intermediates of methyl formate, which is more easily oxidized by subsequent silver component. We anticipate that the findings here will open up a new avenue for the development of formaldehyde oxidation technologies, and also provide guidance for designing efficient catalysts in a series of oxidation reactions.

SUBMITTER: Li N 

PROVIDER: S-EPMC9033842 | biostudies-literature | 2022 Apr

REPOSITORIES: biostudies-literature

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Bifunctional zeolites-silver catalyst enabled tandem oxidation of formaldehyde at low temperatures.

Li Na N   Huang Bin B   Dong Xue X   Luo Jinsong J   Wang Yi Y   Wang Hui H   Miao Dengyun D   Pan Yang Y   Jiao Feng F   Xiao Jianping J   Qu Zhenping Z  

Nature communications 20220422 1


Bifunctional catalysts with tandem processes have achieved great success in a wide range of important catalytic processes, however, this concept has hardly been applied in the elimination of volatile organic compounds. Herein, we designed a tandem bifunctional Zeolites-Silver catalyst that enormously boosted formaldehyde oxidation at low temperatures, and formaldehyde conversion increased by 50 times (100% versus 2%) at 70 °C compared to that of monofunctional supported silver catalyst. This is  ...[more]

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