Thermodynamic analysis of H2production from CaO sorption-enhanced methane steam reforming thermally coupled with chemical looping combustion as a novel technology

Author:

Zhu Lin1,Fan Junming1

Affiliation:

1. Key Laboratory of Gas Process Engineering, School of Chemistry and Chemical Engineering; Southwest Petroleum University; Chengdu 610500 China

Publisher

Wiley

Subject

Energy Engineering and Power Technology,Fuel Technology,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment

Reference38 articles.

1. Simultaneous production of two types of synthesis gas by steam and tri-reforming of methane using an integrated thermally coupled reactor: mathematical modeling;Farniaei;International Journal of Energy Research

2. Computational fluid dynamics in chemical reactor analysis and design: application to the ZoneFlow™ reactor for methane steam reforming;De Wilde;Fuel,2012

3. Hydrogen production via steam reforming of methane with simultaneous CO2 capture over CaO − Ca12Al14O33;Martavaltzi;Energy & Fuels,2010

4. Methane steam reforming: kinetics and modeling over coating catalyst in micro-channel reactor;Wang;International Journal of Hydrogen Energy,2013

5. A new reactor concept for combining oxidative coupling and steam re-forming of methane: modeling and analysis;Farsi;International Journal of Energy Research,2013

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