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Crude bio-glycerol aqueous phase reforming and hydrogenolysis over commercial SiO2Al2O3 nickel catalyst

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Auteur
Seretis A., Tsiakaras P.
Date
2016
Language
en
DOI
10.1016/j.renene.2016.05.085
Sujet
Aluminum
Batch reactors
Biodiesel
Carbon dioxide
Catalysts
Ethylene
Ethylene glycol
Hydrogen
Hydrogenolysis
Hydrolysis
Liquids
Nickel
Polyols
Propylene
Aqueous-phase reforming
Crude glycerol
Gaseous products
Liquid products
Low concentrations
Nickel catalyst
Operating temperature
Propylene glycols
Glycerol
biofuel
catalysis
catalyst
chemical compound
ethanol
ethylene
hydrogen
methanol
nickel
silicon
Elsevier Ltd
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Résumé
In the present work, an one-pot Aqueous Phase Reforming (APR) and Aqueous Phase Hydrogenolysis (APH) of crude glycerol in a batch reactor containing commercial SiO2Al2O3 supported 65%Ni catalyst is performed. The effect of: i) the glycerol's impurities, ii) the operating temperature (200-240 °C) and iii) the crude glycerol concentration (10-40 wt%) is investigated.The main gaseous products are H2, CH4 and CO2, while the main liquid products are propylene glycol (PG), ethylene glycol (EG), ethanol and acetol. The selectivities of the gaseous and liquid products are not strongly affected by the addition of low concentration impurities of methanol and sodium chloride. Glycerol's conversion increases as temperature and glycerol's concentration increases. Total conversion for both pure and crude glycerol is >90%. The yield of the most useful liquid product (propylene glycol) is reaching up to 30% for a 40 wt% of crude glycerol solution at T = 240 °C and 4 h of reaction time. © 2016 Elsevier Ltd.
URI
http://hdl.handle.net/11615/78897
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