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Titlebook: Nanoporous Materials for Gas Storage; Katsumi Kaneko,Francisco Rodríguez-Reinoso Book 2019 Springer Nature Singapore Pte Ltd. 2019 Gas sto

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Fundamental Science of Gas Storage,are promising for gas storage. Molecular simulation of methane in the graphitic pore over the wide temperature range from 120 to 300 K indicates an upward shift of the critical temperature of methane adsorbed in the graphitic pore. The heat of adsorption of methane in the graphitic pore without the
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CO2 Storage on Nanoporous Carbons,rials produced. More recent developments in carbon synthesis will also be discussed, such as nanocasting approaches, carbide-derived carbons, MOF-/COF-derived carbons, and novel polymerization approaches such as the use of deep eutectic solvents (DES).
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