Decomposition of Acetylene into Hydrogen and Carbon: Experiments with Internal Combustion Engines and Experiments with a Flow Reactor

Author:

Vlaskin M. S.,Zaichenko V. M.,Belov P. V.,Grigorenko A. V.,Kurbatova A. I.,Eremin A. V.,Fortov V. E.

Publisher

Pleiades Publishing Ltd

Subject

General Chemical Engineering,General Chemistry

Reference18 articles.

1. IEA, World energy outlook. https://www.iea.org/weo. Accessed December 17, 2019.

2. Popel’, O.S. and Fortov, V.E., Vozobnovlyaemaya energetika v sovremennom mire (Renewable Energy in the Modern World), Moscow: Intellekt, 2015.

3. Dagle, R., Dagle, V., Bearden, M., Holladay, J., Krause, T., and Ahmed, S., R&D Opportunities for Development of Natural Gas Conversion Technologies for Co-Production of Hydrogen and Value-Added Solid Carbon Products, Oak Ridge, Tenn.: U.S. Department of Energy, Office of Scientific and Technical Information (OSTI), 2017.

4. Dintses, A.I. and Potolovskii, L.A., Osnovy tekhnologii neftekhimicheskogo sinteza (Fundamentals of Petrochemical Synthesis Technology), Moscow: Gostoptekhizdat, 1960.

5. Vyntu, V., Tekhnologiya neftekhimicheskikh proizvodstv (Petrochemical Production Technology), Isangulyants, V.I., Ed., Moscow: Khimiya, 1968.

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