Additively manufactured geopolymer structured heterogeneous catalysts for biodiesel production

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作者
Botti, R.F. [1 ]
Innocentini, M.D.M. [2 ]
Faleiros, T.A. [2 ]
Mello, M.F. [2 ]
Flumignan, D.L. [3 ]
Santos, L.K. [4 ]
Franchin, G. [1 ]
Colombo, P. [1 ,5 ]
机构
[1] Department of Industrial Engineering, University of Padova, via Marzolo 9, Padova,35131, Italy
[2] Course of Chemical Engineering, University of Ribeirão Preto, Ribeirão Preto,SP,14096-900, Brazil
[3] Mato Grosso Federal Institute of Education, Science and Technology - Campus Cuiabá, Cuiabá,MT,78005-200, Brazil
[4] Institute of Chemistry, Center for Monitoring and Research of the Quality of Fuels, Biofuels, Crude Oil and Derivatives – CEMPEQC, São Paulo State University (UNESP), Araraquara,SP,14800-900, Brazil
[5] Department of Materials Science and Engineering, The Pennsylvania State University, University Park, PA,16802, United States
来源
Applied Materials Today | 2021年 / 23卷
关键词
Inorganic polymers - Soybean oil - Biodiesel - Mechanical permeability - Catalyst activity - Compressive strength - Substrates - Fatty acids - Binary alloys - Geopolymers;
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摘要
The manufacturing of non-stochastic (lattice) scaffolds by Direct Ink Writing is attractive for catalytic fluid flow applications, as it enables the optimization of not only the desired chemically active formulation but also of porosity, pore size, mechanical strength and permeability of the substrate. In this work, three types of geopolymer compositions containing sodium, potassium or a mixture of both were tested for the printing of lattices used as heterogeneous alkaline catalysts in the processing of fatty acid methyl esters (biodiesel). The rheology of the inks was studied and optimized before the printing process. The geometry chosen was a circular lattice with 24 mm diameter and 9.6 mm height, with shifted layers and 840 μm thick struts. The fabricated Na, K and Na+K bodies possessed open porosity values of 58.3 ± 0.02, 63.6 ± 0.02 and 63.5 ± 0.01 vol% and compressive strength of 4.1 ± 1.2, 2.2 ± 0.6 and 2.6 ± 0.4 MPa, respectively. The catalytic activity for the transesterification of soybean oil was assessed and the biodiesel yield was quantified by GC-FID. High FAME contents (73.5, 85.3 and 71.3%) were achieved for the Na, K and Na-K lattices, respectively. © 2021 Elsevier Ltd
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