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Steam Reforming of Bioethanol Using Metallic Catalysts on Zeolitic Supports: An Overview

Authors :
Francesco Dalena
Emanuele Giglio
Alessia Marino
Alfredo Aloise
Gianfranco Giorgianni
Massimo Migliori
Girolamo Giordano
Source :
Catalysts. 12:617
Publication Year :
2022
Publisher :
MDPI AG, 2022.

Abstract

Hydrogen is considered one of the energy carriers of the future due to its high mass-based calorific value. Hydrogen combustion generates only water, and it can be used directly as a fuel for electricity/heat generation. Nowadays, about 95% of the hydrogen is produced via conversion of fossil fuels. One of the future challenges is to find processes based on a renewable source to produce hydrogen in a sustainable way. Bioethanol is a promising candidate, since it can be obtained from the fermentation of biomasses, and easily converted into hydrogen via steam catalytic reforming. The correct design of catalysts and catalytic supports plays a crucial role in the optimization of this reaction. The best results have to date been achieved by noble metals, but their high costs make them unsuitable for industrial application. Very satisfactory results have also been achieved by using nickel and cobalt as active metals. Furthermore, it has been found that the support physical and chemical properties strongly affect the catalytic performance. In this review, zeolitic materials used for the ethanol steam reforming reaction are overviewed. We discuss thermodynamics, reaction mechanisms and the role of active metal, as well as the main noble and non-noble active compounds involved in ethanol steam reforming reaction. Finally, an overview of the zeolitic supports reported in the literature that can be profitably used to produce hydrogen through ethanol steam reforming is presented.

Details

ISSN :
20734344
Volume :
12
Database :
OpenAIRE
Journal :
Catalysts
Accession number :
edsair.doi...........ef2ea890817f031fef0f8c8fb5e37f46
Full Text :
https://doi.org/10.3390/catal12060617