Advanced Catalysis in Hydrogen Production from Formic Acid and Methanol
Advanced Catalysis in Hydrogen Production from Formic Acid and Methanol
The nature of the catalyst's support plays an important role for the reaction.
Advanced Catalysis in Hydrogen Production from Formic Acid and Methanol
Item #: 170196962

Advanced Catalysis in Hydrogen Production from Formic Acid and Methanol

Item #: 170196962

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The nature of the catalyst's support plays an important role for the reaction.
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What Stands Out

Innovative Catalytic Methods
This book explores cutting-edge catalytic techniques for efficient hydrogen generation, addressing sustainable energy needs with advanced approaches using formic acid and methanol.
Expert Author Insights
Authored by leading experts in the field, the text provides in-depth knowledge and unique perspectives that enhance understanding of complex catalytic processes for researchers and professionals.
Comprehensive Research Coverage
Covering a wide array of experiments and findings, this resource serves as a complete guide for both academic study and practical application in hydrogen production technologies.

Product Details

Shop Advanced Catalysis in Hydrogen Production from Formic Acid and Methanol online at a best price in Canada. 3039363808
  • This Special Issue is related to studies of the hydrogen production from formic acid decomposition. It is based on five research papers and two reviews. The reviews discuss the liquid phase formic acid decomposition over bimetallic (PdAg), molecular (Ru, Ir, Fe, Co), and heterogenized molecular catalysts. The gas-phase reaction is studied over highly dispersed Pd, Pt, Au, Cu, and Ni supported catalysts. It is shown that the nature of the catalyst's support plays an important role for the reaction. Thus, N-doping of the carbon support provides a significant promotional effect. One of the reasons for the high activity of the N-doped catalysts is the formation of single-atom active sites stabilized by pyridinic N species present in the support. It is demonstrated that carbon materials can be N-doped in different ways. It can be performed either directly from N-containing compounds during the carbon synthesis or by a post-synthetic deposition of N-containing compounds on the carbon support with known properties. The Issue could be useful for specialists in catalysis and nanomaterials as well as for graduate students studying chemistry and chemical engineering. The reported results can be applied for development of catalysts for the hydrogen production from different liquid organic hydrogen carriers.
Publisher Mdpi AG
Publication date June 18, 2020
Language English
Print length 122 pages
ISBN-10 3039363808
ISBN-13 978-3039363803
Item Weight 1.03 pounds (470 grams)
Dimensions 6.69 x 0.5 x 9.61 inches (17 x 1.3 x 24.4 cm)

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Who Should Buy?

Suitable For
  • Academic Researchers

    Ideal for researchers seeking detailed insights into advanced catalysis for hydrogen production from formic acid and methanol.

  • Energy Engineers

    Beneficial for engineers working on sustainable energy solutions and hydrogen production technologies.

  • Graduate Students

    Great resource for graduate students studying catalysis, energy conversion, or related fields, providing thorough academic content.

Not Suitable For
  • Casual Readers

    Not suitable for casual readers looking for light reading material, as it covers complex scientific topics.

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Dmitri A Bulushev (Editor) Format: Hardcover General & Reference Editorial Review

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