Steam reforming of dimethyl ether using a membrane-catalytic reactor


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Abstract

It has been found that during the steam reforming of dimethyl ether into synthesis gas using a porous ceramic Ni–Co-containing membrane catalytic converter, an increased hydrogen yield with H2/CO = 15–20 is reached at T = 450–500°C. Reforming in a hybrid membrane reactor with a Pd–Ru alloy membrane integrated into the reaction volume provides recovery of ultrapure hydrogen up to 50% at a temperature of 500–700°C.

About the authors

A. S. Fedotov

Topchiev Institute of Petrochemical Synthesis

Author for correspondence.
Email: alexey.fedotov@ips.ac.ru
Russian Federation, Moscow

D. O. Antonov

Topchiev Institute of Petrochemical Synthesis

Email: alexey.fedotov@ips.ac.ru
Russian Federation, Moscow

V. I. Uvarov

Institute of Structural Macrokinetics and Materials Science Problems

Email: alexey.fedotov@ips.ac.ru
Russian Federation, Chernogolovka, Moscow oblast

M. V. Tsodikov

Topchiev Institute of Petrochemical Synthesis

Email: alexey.fedotov@ips.ac.ru
Russian Federation, Moscow

S. N. Khadzhiev

Topchiev Institute of Petrochemical Synthesis

Email: alexey.fedotov@ips.ac.ru
Russian Federation, Moscow

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