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  • 1
    Unknown
    Berlin : Edition Open Access
    Keywords: biomass ; sustainability ; catalysis ; biomass conversion ; energy challenge
    Description / Table of Contents: 1. Raw Material Change in the Chemical Industry and the Role of Biomass / Friedrich Seitz --- 2. The Role of Startup Companies in the Conversion of Biomass to Renewable Fuels and Chemicals / Leo E. Manzer --- 3. Nutrient Cycling in the Bioeconomy: A Life Cycle Perspective / Robert Anex --- 4. Plant Growth: Basic Principles and Issues Relating to the Optimization of Biomass Production and Composition as a Feedstock for Energy / Mark Stitt --- 5. Biomass Chemistry / Michael Ladisch, Eduardo Ximenes, Youngmi Kim, Nathan S. Mosier --- 6. Chemical and Biological Deconstruction of Aqueous Phase Processing / Charles E. Wyman, Carol J. Wyman --- 7. Analytical Approaches in the Catalytic Transformation of Biomass: What Needs to be Analyzed and Why? / Dmitry Murzin, Bjarne Holmbom --- 8. Methods for Biomass Compositional Analysis / Amie Sluiter, Justin Sluiter, Edward J. Wolfrum --- 9. Reaction Engineering Concepts for the Catalytic Conversion of Biorenewable Molecules / Robert J. Davis --- 10. Catalytic Strategies and Chemistries Involved in the Conversion of Sugars to Liquid Transportation Fuels / Elif I. Gürbüz, James A. Dumesic --- 11. Design of Heterogeneous Catalysts for the Conversion of Biorenewable Feedstocks / Brent H. Shanks --- 12. Tailor-Made Fuels and Chemicals from Biomass / Thorsten vom Stein, Jürgen Klankermayer, Walter Leitner --- 13. Solution-Based Deconstruction of (Ligno)-Cellulose / Roberto Rinaldi, Jennifer Reece
    Pages: Online-Ressource (XI, 462 Seiten)
    ISBN: 9783844242829
    Language: English
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  • 2
    Publication Date: 2018-06-10
    Description: Materials, Vol. 11, Pages 980: Protective Carbon Overlayers from 2,3-Naphthalenediol Pyrolysis on Mesoporous SiO2 and Al2O3 Analyzed by Solid-State NMR Materials doi: 10.3390/ma11060980 Authors: Pu Duan Xiaoyan Cao Hien Pham Abhaya Datye Klaus Schmidt-Rohr Hydrothermally stable carbon overlayers can protect mesoporous oxides (SiO2 and Al2O3) from hydrolysis during aqueous-phase catalysis. Overlayers made at 800 °C by pyrolysis of 2,3-naphthalenediol deposited out of acetone solution were analyzed by solid-state 13C nuclear magnetic resonance (NMR) spectroscopy. Power absorption due to sample conductivity was prevented by diluting the sample in nonconductive and background-free tricalcium phosphate. While pyrolysis on SiO2 produced a predominantly aromatic carbon film, at least 15% of nonaromatic carbon (sp3-hybridized C as well as C=O) was observed on γ-Al2O3. These species were not derived from residual solvent, according to spectra of the same material treated at 400 °C. The sp3-hybridized C exhibited weak couplings to hydrogen, short spin-lattice relaxation times, and unusually large shift anisotropies, which are characteristics of tetrahedral carbon with high concentrations of unpaired electrons. Moderate heat treatment at 400 °C on SiO2 and Al2O3 resulted in yellow-brown and nearly black samples, respectively, but the darker color on Al2O3 did not correspond to more extensive carbonization. Aromatic carbon bonded to hydrogen remained predominant and the peaks of naphthalenediol were still recognizable; however, some of the chemical shifts differed by up to 5 ppm, indicating significant differences in local structure. On SiO2, additional sharp peaks were detected and attributed to 1/3 of the 2,3-naphthalene molecules undergoing fast, nearly isotropic motions.
    Electronic ISSN: 1996-1944
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Published by MDPI Publishing
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