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PMID: 35207087 Published · epublish English Journal Article

Development of a Membrane Module Prototype for Oxygen Separation in Industrial Applications.

Membranes ·Vol. 12 ·No. 2 ·2022-01-30

Drago F, Fedeli P, Cavaliere A, Cammi A, Passoni S, Mereu R, De La Pierre S, Smeacetto F, Ferraris M

Abstract

The integration of oxygen transport membranes in industrial processes can lead to energy and economic advantages, but proof of concept membrane modules are highly necessary to demonstrate the feasibility of this technology. In this work, we describe the development of a lab-scale module through a comprehensive study that takes into consideration all the relevant technological aspects to achieve a prototype ready to be operated in industrial environment. We employed scalable techniques to manufacture planar La0.6Sr0.4Co0.2Fe0.8O3-δ membrane components suitable for the application in both 3- and 4-end mode, designed with a geometry that guarantees a failure probability under real operating conditions as low as 2.2 × 10-6. The asymmetric membranes that act as separation layers showed a permeation of approx. 3 NmL/min/cm2 at 900 °C in air/He gradient, with a remarkable stability up to 720 h, and we used permeation results to develop a CFD model that describes the influence of the working conditions on the module performance. The housing of the membrane component is an Inconel 625 case joined to the membrane component by means of a custom-developed glass-ceramic sealant that exhibited a remarkable thermo-chemical compatibility both with metal and ceramic, despite the appearance of chemical strain in LSCF at high temperature. The multi-disciplinary approach followed in this work is suitable to be adapted to other module concepts based on membrane components with different dimensions, layouts or materials.

Keywords
CFD model LSCF membrane module metal-ceramic joining oxygen transport membrane perovskite
作者与单位
共 9 位作者,点击展开单位 / ORCID
Drago Francesca ORCID
Materials and Generation Technologies Department (TGM), Ricerca sul Sistema Energetico S.p.A.-RSE, 20134 Milan, Italy.
Fedeli Paolo ORCID
Materials and Generation Technologies Department (TGM), Ricerca sul Sistema Energetico S.p.A.-RSE, 20134 Milan, Italy.
Cavaliere Angelo
Materials and Generation Technologies Department (TGM), Ricerca sul Sistema Energetico S.p.A.-RSE, 20134 Milan, Italy.
Cammi Andrea
Materials and Generation Technologies Department (TGM), Ricerca sul Sistema Energetico S.p.A.-RSE, 20134 Milan, Italy.
Passoni Stefano
Energy Department, Politecnico di Milano, 20156 Milan, Italy.
Mereu Riccardo ORCID
Energy Department, Politecnico di Milano, 20156 Milan, Italy.
De La Pierre Stefano
Department of Applied Science and Technology (DISAT), Politecnico di Torino, 10129 Turin, Italy.
Smeacetto Federico
Department of Applied Science and Technology (DISAT), Politecnico di Torino, 10129 Turin, Italy.
Ferraris Monica ORCID
Department of Applied Science and Technology (DISAT), Politecnico di Torino, 10129 Turin, Italy.
Article Info
Journal
Membranes
Abbr.
Membranes (Basel)
ISSN
2077-0375
Published
2022-01-30
电子出版
2022-00-30
Language
English
Country/Region
Switzerland
NLM ID
101577807
基金资助
Ministry of Economic Development · Decree of April 16th, 2018
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