American Journal of Analytical Chemistry

American Journal of Analytical Chemistry

ISSN Print: 2156-8251
ISSN Online: 2156-8278
www.scirp.org/journal/ajac
E-mail: ajac@scirp.org
"Adsorption Enthalpy Calculations of Hydrogen Adsorption at Ambient Temperature and Pressures Exceeding 300 bar"
written by Matthew Beckner, Anne Dailly,
published by American Journal of Analytical Chemistry, Vol.4 No.10C, 2013
has been cited by the following article(s):
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[2] Dynamic modeling and thermal management of a Power-to-Power system with hydrogen storage in microporous adsorbent materials
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[3] Advancing Gas Adsorption Characterization of Nanoporous Materials Using Molecular Simulations
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[4] Coupling Structural and Adsorption Properties of Metal–Organic Frameworks: From Pore Size Distribution to Pore Type Distribution
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[5] Determination of the enthalpy of adsorption of hydrogen in activated carbon at room temperature
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[6] Deciphering the Relations between Pore Structure and Adsorption Behavior in Metal-Organic Frameworks: Unexpected Lessons from Argon Adsorption on …
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[7] Deciphering the Relations between Pore Structure and Adsorption Behavior in MOFs: Unexpected Lessons from Argon Adsorption on Cu-BTC
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[9] Determination of Saturated Film Densities and Volumes for Adsorbed Hydrogen, and Application to the Calculation of the Enthalpy of Adsorption at Room …
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[10] Hydrogen storage potential in MIL-101 at 200 K
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[11] A simple flash carbonization route for conversion of biomass to porous carbons with high CO 2 storage capacity
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[12] Combination volumetric and gravimetric sorption instrument for high accuracy measurements of methane adsorption
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[13] Compactivation: a mechanochemical approach to carbons with superior porosity and exceptional performance for hydrogen and CO2 storage
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[14] Hydrogen and methane storage in adsorbent materials for automotive applications
International Journal of Energy Research, 2015
[15] Sorbent material property requirements for on-board hydrogen storage for automotive fuel cell systems
International Journal of Hydrogen Energy, 2015
[16] Compactivation: A mechanochemical approach to carbons with superior porosity and exceptional performance for Hydrogen and CO 2 storage
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[17] HYDROGEN AND NATURAL GAS STORAGE IN ADSORBENT MATERIALS FOR AUTOMOTIVE APPLICATIONS
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[18] Hydrogen cryo-adsorption by hexagonal prism monoliths of MIL-101
International Journal of Hydrogen Energy?, 2014
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