Low temperature glycerol steam reforming over a Rh-based catalyst combined with oxidative regeneration

Author:

Silva Joel M.,Ribeiro Lucília S.,Órfão J.J.M.,Soria M.A.,Madeira Luis M.

Funder

Doctoral Program in Chemical and Biological Engineering from the Faculty of Engineering of University of Porto

Portuguese Foundation for Science and Technology (FCT)

European Regional Development Fund (ERDF)

FCT I.P

FCT

European Social Fund (ESF)

Human Potential Operational Program (POPH)

Norte Portugal Regional Operational Programme

ERDF

COMPETE2020–Programa Operacional Competitividade e Internacionalização (POCI)

Publisher

Elsevier BV

Subject

Energy Engineering and Power Technology,Condensed Matter Physics,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference43 articles.

1. Challenges and strategies for optimization of glycerol steam reforming process;Silva;Renew Sustain Energy Rev,2015

2. Understanding the glycerol market;Rosaria;Eur J Lipid Sci Technol,2014

3. U.S. Energy Information Administration. [cited 2018 23-06]; Available from: http://www.eia.gov/cfapps/ipdbproject/iedindex3.cfm?tid=79&pid=81&aid=1&cid=ww,r1,r2,r3,r4,r5,r6,r7,&syid=2001&eyid=2011&unit=TBPD.

4. Value-added uses for crude glycerol--a byproduct of biodiesel production;Yang;Biotechnol Biofuels,2012

5. Catalytic features of Rh and Ni supported catalysts in the steam reforming of glycerol to produce hydrogen;Chiodo;Appl Catal Gen,2010

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