| Literature DB >> 28788472 |
Gloria Lourdes Dimas-Rivera1, Javier Rivera de la Rosa2,3, Carlos J Lucio-Ortiz4, José Antonio De Los Reyes Heredia5, Virgilio González González6, Tomás Hernández7.
Abstract
In this work, the desorption of furfural, which is a competitive intermediate during the production of biofuel and valuable aromatic compounds, was studied using pure alumina, as well as alumina impregnated with iron and platinum oxides both individually and in combination, using thermogravimetric analysis (TGA). The bimetallic sample exhibited the lowest desorption percentage for furfural. High-resolution transmission electron microscopy (HRTEM) imaging revealed the intimate connection between the iron and platinum oxide species on the alumina support. The mechanism of furfural desorption from the Pt-Fe/Al₂O₃ 0.5%-0.5% sample was determined using physisorbed furfural instead of chemisorbed furfural; this mechanism involved the oxidation of the C=O group on furfural by the catalyst. The oxide nanoparticles on γ-Al₂O₃ support helped to stabilize the furfural molecule on the surface.Entities:
Keywords: Pt-Fe; bimetallic; desorption; furfural; impregnation; γ-Al2O3
Year: 2014 PMID: 28788472 PMCID: PMC5453137 DOI: 10.3390/ma7010527
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Textural properties and weight percent of metals in the catalysts.
| Sample | (%)
| Surface area (m2/g) | Average pore diameter (nm) | Average pore volume (cc/g) | |
|---|---|---|---|---|---|
| Fe | Pt | ||||
| Alumina | – | – | 196 | 8.83 | 0.43 |
| Fe/Al2O3 0.5% | 0.44 | – | 218 | 8.40 | 0.46 |
| Pt/Al2O3 0.5% | – | 0.60 | 177 | 9.31 | 0.41 |
| Pt-Fe/Al2O3 0.5%-0.5% | 0.43 | 0.47 | 169 | 9.56 | 0.40 |
Calcination at 600 °C
Figure 1.SEM image of Pt-Fe/Al2O3 0.5%-0.5%.
Figure 2.(a) STEM image of a grain of Al2O3 with Pt-Fe oxide nanoparticle; (b) high-resolution transmission electron microscopy (HRTEM) image and its Fourier transformed micrograph and (c) select area diffraction pattern (SADP) of the same sample.
Figure 3.FT-IR spectra in the (a) 2300–3900 cm−1; (b) 2050–2150 cm−1 and (c) 350–1750 cm−1: regions for the alumina (—), Fe/Al2O3 0.5% (—), Pt/Al2O3 0.5% (—) and Pt-Fe/Al2O3 0.5%-0.5% (—) samples.
Figure 4.Temperature-programmed reduction (TPR) of alumina (—); Fe/Al2O3 0.5% (—); Pt/Al2O3 0.5% (—) and Pt-Fe/Al2O3 0.5%-0.5% (—) substrates.
Figure 5.(a) Thermogravimetric analysis (TGA) and (b) DTA of furfural on different substrates: alumina (—), Fe/Al2O3 0.5% (—), Pt/Al2O3 0.5% (—) and Pt-Fe/Al2O3 0.5%-0.5% (—).
Thermogravimetric data at collected at 10 °C/min under N2 (15 mL/min) and the activation energy according to Equation (6).
| Sample | Step | Range of Temperature (°C) | WLP (%) | ||
|---|---|---|---|---|---|
| Alumina | 1st | 26–113 | 13.0 | 39.10 | 2.74 × 105 |
| 2nd | 113–376 | 18.0 | 6.11 | 6.14 | |
| 3rd | 376–495 | 20.3 | 34.30 | 1.11 × 103 | |
|
| |||||
| Fe/Al2O3 0.5% | 1st | 26–121 | 10.0 | 21.90 | 7.69 × 102 |
| 2nd | 121–372 | 15.5 | 7.06 | 7.07 | |
| 3rd | 372–496 | 17.7 | 31.87 | 5.77 | |
|
| |||||
| Pt/Al2O3 0.5% | 1st | 27–113 | 6.7 | 24.72 | 2.92 × 105 |
| 2nd | 113–365 | 12.0 | 7.28 | 6.02 | |
| 3rd | 365–496 | 14.8 | 36.65 | 1.58 × 103 | |
|
| |||||
| Pt-Fe/Al2O3 0.5%-0.5% | 1st | 29–114 | 5.0 | 17.00 | 12.0 |
| 2nd | 114–370 | 10.8 | 5.63 | 0.357 | |
| 3rd | 370–495 | 13.7 | 8.20 | 0.543 | |
= Accumulated
Figure 6.Experimental data for alumina (—), Fe/Al2O3 0.5% (—), Pt/Al2O3 0.5% (—) and Pt-Fe/Al2O3 0.5%-0.5% (—) samples treated according Equation (6).
Figure 7.FT-IR spectra furfural desorption at different temperatures in the Pt-Fe/Al2O3 0.5-0.5% sample.