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Original Articles

Hydrogen Storage in the Form of Methylcyclohexane

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Pages 149-156 | Published online: 14 Dec 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Muhammad R. Usman & David L. Cresswell. (2013) Options for on-Board Use of Hydrogen Based on the Methylcyclohexane–Toluene–Hydrogen System. International Journal of Green Energy 10:2, pages 177-189.
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M.R. Usman, R. Aslam & F. Alotaibi. (2011) Hydrogen Storage in a Recyclable Organic Hydride: Kinetic Modeling of Methylcyclohexane Dehydrogenation Over 1.0 wt% Pt/θ-Al2O3 . Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 33:24, pages 2264-2271.
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M.R. Usman. (2011) The Catalytic Dehydrogenation of Methylcyclohexane over Monometallic Catalysts for On-board Hydrogen Storage, Production, and Utilization. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 33:24, pages 2231-2238.
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M.R. Usman, D.L. Cresswell & A.A. Garforth. (2011) By-Products Formation in the Dehydrogenation of Methylcyclohexane. Petroleum Science and Technology 29:21, pages 2247-2257.
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Articles from other publishers (7)

Sergey P. Safronov, Sergey V. Vostrikov, Artemiy A. Samarov, Peter Wasserscheid, Karsten Müller & Sergey P. Verevkin. (2023) Comprehensive thermodynamic study of substituted indoles/perhydro indoles as potential liquid organic hydrogen carrier system. Fuel 331, pages 125764.
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Kingsley Onyebuchi Obodo, Cecil Naphtaly Moro Ouma & Dmitri Bessarabov. (2022) Low-Pt-Based Sn Alloy for the Dehydrogenation of Methylcyclohexane to Toluene: A Density Functional Theory Study. Catalysts 12:10, pages 1221.
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Kingsley Onyebuchi Obodo, Cecil Naphtaly Moro Ouma & Dmitri Bessarabov. (2022) Modified Pt (2 1 1) and (3 1 1) surfaces towards the dehydrogenation of methylcyclohexane to toluene: A density functional theory study. Applied Surface Science 584, pages 152590.
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Muhammad S. Akram & Muhammad R. Usman. (2021) Simulation and Optimization of Hydrogen Fueled Mobile Power Plant Based on Methylcyclohexane–Toluene–Hydrogen Cycle. Theoretical Foundations of Chemical Engineering 55:3, pages 545-561.
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Agung Tri Wijayanta, Takuya Oda, Chandra Wahyu Purnomo, Takao Kashiwagi & Muhammad Aziz. (2019) Liquid hydrogen, methylcyclohexane, and ammonia as potential hydrogen storage: Comparison review. International Journal of Hydrogen Energy 44:29, pages 15026-15044.
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Martin Cholewa, Bastian Zehner, Heike Kreuder & Peter Pfeifer. (2018) Optimization of membrane area to catalyst mass in a microstructured membrane reactor for dehydrogenation of methylcyclohexane. Chemical Engineering and Processing - Process Intensification 125, pages 325-333.
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Leonid M. Kustov, Andrew L. Tarasov & Boris P. Tarasov. (2013) Intermetallide catalysts for hydrogen storage on the basis of reversible aromatics hydrogenation/dehydrogenation reactions. International Journal of Hydrogen Energy 38:14, pages 5713-5716.
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