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Journal ArticleDOI

Dense perovskite membrane reactors for partial oxidation of methane to syngas

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TLDR
In this article, a mixed-conducting perovskite dense membrane reactor at 850°C was used for the partial oxidation of methane to synthesis gas (syngas, CO + H2).
Abstract
The partial oxidation of methane to synthesis gas (syngas, CO + H2) was performed in a mixed-conducting perovskite dense membrane reactor at 850°C, in which oxygen was separated from air and simultaneously fed into the methane stream. Steady-state oxygen permeation rates for La1-xA′xFe0.8 Co0.2O3-δ perovskite membranes in nonreacting air/helium experiments were in the order of A′x = Ba0.8 > Ba0.6 > Ca0.6 > Sr0.6. Deep oxidation products were obtained from a La0.2 Ba0.8 Fe0.8 Co0.2 O3–δ disk-shaped membrane reactor without catalyst, with a 4.6% CH4 inlet stream. These products were further reformed to syngas when a downstream catalytic bed was added. Packing the 5% Ni/Al2O3 catalyst directly on the membrane reaction-side surface resulted in a slow fivefold increase in O2 permeation, and a fourfold increase in CH4 conversion. XRD, EDS, and SEM analyses revealed structure and composition changes on the membrane surfaces. Oxygen continuously transported from the air side appeared to stabilize the membrane interior, and the reactor was operated for up to 850 h.

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Journal ArticleDOI

Chemical structures and performance of perovskite oxides.

TL;DR: A detailed study of the structure of Perovskites and their properties in the context of a reducing Atmosphere andHydrogenation and Hydrogenolysis Reactions 2006 shows that the structure and properties of these minerals have changed little in the intervening years.
Journal ArticleDOI

A review of catalytic partial oxidation of methane to synthesis gas with emphasis on reaction mechanisms over transition metal catalysts

TL;DR: In this article, an extensive table on contributions to catalytic partial oxidation of methane over transition metal catalysts in the literature is provided, and both theoretical and experimental evidence pointing to inherent differences in the reaction mechanism over transition metals.
Journal ArticleDOI

Dense ceramic membranes for methane conversion

TL;DR: In this paper, a survey of the material properties that govern the performance of mixed-conducting membranes in real operating conditions and highlights significant developments in the field is presented, where the authors mainly focus on material properties.
Journal ArticleDOI

Multiphase catalytic reactors: a perspective on current knowledge and future trends

TL;DR: In this paper, a review of the physical parameters for various multiphase reactors is presented, focusing on gas-phase catalyzed processes with an emphasis on unsteady state operation.
Book ChapterDOI

Catalytic Conversion of Methane to Synthesis Gas by Partial Oxidation and CO2 Reforming

TL;DR: In this paper, the history of the development of methane conversion to synthesis gas is summarized as an introduction to the partial oxidation of methane, which is reviewed with emphasis on hot spots in reactors, major developments in the reduction of O 2 separation costs, and reaction mechanisms.
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