Extruded Catalysts with Magnetic Properties for Biodiesel Production

Author:

Silveira Junior Euripedes Garcia1ORCID,Justo Oselys Rodriguez2ORCID,Perez Victor Haber1ORCID,Reyero Inés3ORCID,Serrano-Lotina Ana4ORCID,Campos Ramirez Leonardo1ORCID,dos Santos Dias Dayana F.1ORCID

Affiliation:

1. Process Engineering Sector, Center of Science and Agropecuary Technology, State University of the Northern of Rio de Janeiro, Rio de Janeiro, Brazil

2. Environmental School, Estácio de Sá University, Campos dos Goytacazes, RJ, Brazil

3. Department of Science, Public University of Navarre, Campus of Arrosadía, Pamplona, Spain

4. Institute of Catalysis and Petrochemistry (CSIC), Campus Universidad Autónoma de Madrid, Madrid, Spain

Abstract

The aim of this work was to evaluate the performance of different extruded catalysts containing K2CO3as active phase and adding convenientlyγ-Al2O3and/or sepiolite and magnetic particles on the biodiesel production from sunflower oil by the ethanolic route. Firstly, the content of the Fe3O4on the catalyst (0.1, 0.2, 0.3, and 0.4 g Fe3O4/g of K2CO3/γ-Al2O3), after calcination step, was evaluated to verify the separation facility of the catalysts with magnetic properties from reactional medium, using an external magnetic field, at the end of biodiesel synthesis. After that, three different catalysts were considered for comparative purposes: (a) K2CO3/γ-Al2O3; (b) K2CO3/γ-Al2O3/Fe3O4; (c) K2CO3/γ-Al2O3/Sepiolite/Fe3O4and subsequently characterized by dynamometry, TGA, SEM, VSM, BET, and XRD to determine their mechanical, structural, magnetic, and textural properties. However, their catalytic activities were determined through biodiesel production that was carried out in a glass volumetric reactor during 4 h, under magnetic stirring with 5% wt. of the catalyst and oil : ethanol molar ratio (1 : 12) at 80°C reaction temperature. The best result, i.e., around 88% of biodiesel conversion, was obtained with catalyst K2CO3/γ-Al2O3/Sepiolite/Fe3O4which showed also satisfactory textural and mechanical strength properties comparatively with the other catalytic derivatives. In addition, no agglomeration of the particles was observed during the reaction, and the magnetic property of this catalytic system was satisfactory for adequate separation from reactional medium seeking further reuse. The attained results are attractive for possible implementation at industrial scale and can be considered to mitigate drawbacks which resulting by using of homogeneous catalysts in the conventional processes.

Funder

Madrid Community ALCCONES

Publisher

Hindawi Limited

Subject

General Engineering,General Materials Science

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