Synthesis
of a zeolite membrane as a protective layer on a metallic Pd
composite membrane for hydrogen purification
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Type
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Journal
Article
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Author
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Jiafeng
Yu
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|
Author
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Chenchen
Qi
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|
URL
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|
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Volume
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3
|
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Issue
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9
|
|
Pages
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5000-5006
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Publication
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Journal
of Materials Chemistry A
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Date
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2015-02-17
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Abstract
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Palladium
composite membranes are used widely in the hydrogen purification process
because of their excellent hydrogen permeability and selectivity.
Unfortunatelt, they can lose hydrogen permeability irreversibly when exposed
to small amounts of impurity gases, limiting their applications. Researchers
developed a seed-free hydrothermal method to synthesize a zeolite membrane on
the surface of an ultra-thin metallic Pd composite membrane to offer
protection from impurity gases.
The impurity gases with a kinetic diameter larger than the zeolite pore size were prevented from coming in direct contact with the Pd composite membrane. The presence of a protective zeolite membrane distinctly suppressed the hydrogen permeance decline in a 5% propylene/hydrogen mixture, which greatly enhanced the stability of the Pd membrane. SEM and XRD showed that the acid pretreatment before the secondary hydrothermal growth process and the rotary state were beneficial for synthesizing thin and uniform zeolite membranes. With increasing synthesis time, the protective effects of the zeolite membrane were enhanced significantly due to the reduction of defects. |
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