Production of N-containing Chemicals and Materials from Biomass [E-Book] / edited by Zhen Fang, Richard Lee Smith Jr, Lujiang Xu.
This book is a collection of studies on state-of-art techniques developed for producing value-added N-containing chemicals and N-doped carbon materials from renewable sources via sustainable technologies. Aiming to improve conversion effectiveness and develop innovative techniques for new value-adde...
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Full text |
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Personal Name(s): | Fang, Zhen, editor |
Smith Jr, Richard Lee, editor / Xu, Lujiang, editor | |
Edition: |
1st edition 2023. |
Imprint: |
Singapore :
Springer,
2023
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Physical Description: |
XIX, 414 pages 1 illustration (online resource) |
Note: |
englisch |
ISBN: |
9789819945801 |
DOI: |
10.1007/978-981-99-4580-1 |
Series Title: |
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Biofuels and Biorefineries ;
12 |
Subject (LOC): |
- Chapter 1. Hydrolysis of nitrile compounds in near-critical water
- Chapter 2. Major advances in syntheses of biomass based amines and pyrrolidone products by reductive amination process of major bio-derived platform molecules
- Chapter 3. Producing N-heterocyclic compounds from lignocellulosic biomass feedstocks
- Chapter 4. Waste shell biorefinery: sustainable production of organonitrogen chemicals
- Chapter 5. Sustainable production of nitriles from biomass
- Chapter 6. Catalytic upgrading of bio-based ketonoc acids to pyrrolidones with hydrogen donor sources
- Chapter 7. Microbial production of amine chemicals from sustainable substrates
- Chapter 8. Engineering biochar-based materials for carbon dioxide adsorption and separation
- Chapter 9. Producing N-containing chemicals from biomass for high performance thermosets
- Chapter 10. Preparation of N-doped carbon materials from lignocellulosic biomass residues and their application to energy storage and conversion devices
- Chapter 11. Preparation of green N-doped biochar materials with biomass pyrolysis and their application to catalytic systems
- Chapter 12. Evaluating the role of gasification stages on evolution of fuel-N to deepen in sustainable production of NH3.