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  5. Applications of Zeolites to C1 Chemistry: Recent Advances, Challenges, and Opportunities

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Article
English
2020

Applications of Zeolites to C1 Chemistry: Recent Advances, Challenges, and Opportunities

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English
2020
Advanced Materials
Vol 32 (44)
DOI: 10.1002/adma.202002927

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Avelino Avelino
Avelino Avelino

Instituto de Tecnología Química

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Qiang Zhang
Jihong Yu
Avelino Avelino

Abstract

C1 chemistry, which is the catalytic transformation of C1 molecules including CO, CO 2 , CH 4 , CH 3 OH, and HCOOH, plays an important role in providing energy and chemical supplies while meeting environmental requirements. Zeolites are highly efficient solid catalysts used in the chemical industry. The design and development of zeolite‐based mono‐, bi‐, and multifunctional catalysts has led to a booming application of zeolite‐based catalysts to C1 chemistry. Combining the advantages of zeolites and metallic catalytic species has promoted the catalytic production of various hydrocarbons (e.g., methane, light olefins, aromatics, and liquid fuels) and oxygenates (e.g., methanol, dimethyl ether, formic acid, and higher alcohols) from C1 molecules. The key zeolite descriptors that influence catalytic performance, such as framework topologies, nanoconfinement effects, Brønsted acidities, secondary‐pore systems, particle sizes, extraframework cations and atoms, hydrophobicity and hydrophilicity, and proximity between acid and metallic sites are discussed to provide a deep understanding of the significance of zeolites to C1 chemistry. An outlook regarding challenges and opportunities for the conversion of C1 resources using zeolite‐based catalysts to meet emerging energy and environmental demands is also presented.

How to cite this publication

Qiang Zhang, Jihong Yu, Avelino Avelino (2020). Applications of Zeolites to C1 Chemistry: Recent Advances, Challenges, and Opportunities. Advanced Materials, 32(44), DOI: 10.1002/adma.202002927.

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Publication Details

Type

Article

Year

2020

Authors

3

Datasets

0

Total Files

0

Language

English

Journal

Advanced Materials

DOI

10.1002/adma.202002927

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