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Giuseppe Barbieri

Researcher at National Research Council

Publications -  175
Citations -  5869

Giuseppe Barbieri is an academic researcher from National Research Council. The author has contributed to research in topics: Membrane & Membrane reactor. The author has an hindex of 37, co-authored 167 publications receiving 5018 citations. Previous affiliations of Giuseppe Barbieri include University of Calabria.

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Study of the separation properties of FAU membranes constituted by hierarchically assembled nanozeolites

TL;DR: In this article, a modified procedure allowing for an easy synthesis of FAU membranes constituted by closely packed nanocrystals and the study of their permeation properties are reported, which can be attributed to the wide pores of the FAU zeolite and, most likely, to the presence of a secondary mesopore network.
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Energy and mass intensities in hydrogen upgrading by a membrane reactor

TL;DR: In this article, two sustainability indexes, mass and energy intensities, were used in a non-conventional evaluation of the upgrading stage in hydrogen production, by means of membrane reactors.
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Integrated membrane system for pure hydrogen production: A Pd–Ag membrane reactor and a PEMFC

TL;DR: In this article, an integrated system consisting of single stage hydrogen production and a commercial PEMFC was investigated experimentally, where the performance of the Pd-Ag membrane reactor was evaluated in terms of CO conversion and H 2 recovery as a function of the feed pressure and space velocity.
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Support mass transfer resistance of Pd/ceramic composite membranes in the presence of sweep gas

TL;DR: In this article, the influence of N2 sweep gas was systematically studied over a wide permeate pressure range using a 5µm thick Pd-membrane supported on an asymmetric ceramic support tube.
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Membrane reactor in fatty acid production

TL;DR: In this article, a membrane reactor was used for triglyceride hydrolysis in low temperature and applied pressure, where the enzyme lipase was dynamically immobilized on the pressurized face of the ultrafiltration membranes.