Nowadays, it is vital to find an alternative source of fuel to oil. This presentation deals with the development of an innovative catalytic system for biodiesel synthesis starting from waste biomass (waste cooking oil, WCO) in the presence of waste material (steel slags) as the catalyst. The importance of this issue is well documented by the presence of many reports on both the use of WCO as a feedstock1 and a waste as the catalyst2. Recently, the use of steel slags as active and selective catalyst for the synthesis of fatty acid methyl esters (FAMEs) by transesterification of soybean oil in methanol under conventional heating (120°C) has been reported to take several hours (12 h) to reach completion3. In this study, microwave (MW) irradiation protocols were developed for fast and low energy consuming biodiesel synthesis from WCO in the presence of steel slags. After some preliminary tests, the reaction conditions were investigated and optimized by setting a design of experiment. Time, temperature and catalyst weight were set as factors. The almost quantitative conversion of WCO could be achieved in only 18 min at 134°C. The recyclability of the catalyst and the variations of its structure during cycles were also investigated. Steel slags were characterised by Scanning Electron Microscopy (SEM), Total X-ray Florescence (TXRF), XRay Diffraction (XRD) and Thermogravimetric Analysis (TGA).

Microwave assisted biodiesel production from waste cooking oil using steel slags as catalyst / Derobertis, F., Leone, M.S., Mesto, E., Schingaro, E., Porfido, C., Ditaranto, N., Mastrorilli, P., Dell'Anna, M.M.. - 2:(2024), pp. 1637-1637.

Microwave assisted biodiesel production from waste cooking oil using steel slags as catalyst

F. Derobertis;Maria Stella Leone;Piero Mastrorilli;Maria Michela Dell’Anna
2024

Abstract

Nowadays, it is vital to find an alternative source of fuel to oil. This presentation deals with the development of an innovative catalytic system for biodiesel synthesis starting from waste biomass (waste cooking oil, WCO) in the presence of waste material (steel slags) as the catalyst. The importance of this issue is well documented by the presence of many reports on both the use of WCO as a feedstock1 and a waste as the catalyst2. Recently, the use of steel slags as active and selective catalyst for the synthesis of fatty acid methyl esters (FAMEs) by transesterification of soybean oil in methanol under conventional heating (120°C) has been reported to take several hours (12 h) to reach completion3. In this study, microwave (MW) irradiation protocols were developed for fast and low energy consuming biodiesel synthesis from WCO in the presence of steel slags. After some preliminary tests, the reaction conditions were investigated and optimized by setting a design of experiment. Time, temperature and catalyst weight were set as factors. The almost quantitative conversion of WCO could be achieved in only 18 min at 134°C. The recyclability of the catalyst and the variations of its structure during cycles were also investigated. Steel slags were characterised by Scanning Electron Microscopy (SEM), Total X-ray Florescence (TXRF), XRay Diffraction (XRD) and Thermogravimetric Analysis (TGA).
2024
9788894952476
Microwave assisted biodiesel production from waste cooking oil using steel slags as catalyst / Derobertis, F., Leone, M.S., Mesto, E., Schingaro, E., Porfido, C., Ditaranto, N., Mastrorilli, P., Dell'Anna, M.M.. - 2:(2024), pp. 1637-1637.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11589/305680
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