| Literature DB >> 35207993 |
Jian Wei1, Pinghua Zhu2, Hao Sun2.
Abstract
In this paper, we report a new and convenient method for the synthesis of insulating aerogel by recycling solid waste coal gangue, which can reduce the industrial production cost of silica aerogels and realize high value-added utilization of solid waste. Sodium silicate was prepared from a cheap industrial waste coal gangue as the precursor for silica aerogels, which was used for silica wet gel preparation by a one pot method; this method of solvent exchange/surface modification was carried out quickly by mechanical stirring process, and the wet gels derived from coal gangue were dried under ambient pressure condition. A high surface area (~748 m2/g) nanostructured aerogel with a 3D open porous microstructure was synthesized, which exhibits a low density (~0.18 g/cm3) and a superior thermal insulation performance (~0.033 W·m-1·K-1). More significantly, the synthetic yield of silica aerogel powder by recycling coal gangue can reach 92%.Entities:
Keywords: ambient pressure drying; coal gangue; one-pot; silica aerogel powder
Year: 2022 PMID: 35207993 PMCID: PMC8877026 DOI: 10.3390/ma15041454
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Chemical composition analysis of the raw coal gangue (wt%).
| SiO2 | Al2O3 | CaO | SO3 | Fe2O3 | K2O | MgO | Na2O | TiO2 | P2O5 | V2O5 | Total |
|---|---|---|---|---|---|---|---|---|---|---|---|
| 44.93 | 17.84 | 14.04 | 11.43 | 4.24 | 2.62 | 2.03 | 1.99 | 0.46 | 0.28 | 0.14 | 100 |
Figure 1XRD pattern of coal gangue materials.
Figure 2The specific preparation procedure of SiO2 aerogel powders by recycling coal gangue.
Figure 3Sodium silicate was used as silicon precursor to synthesis SiO2 aerogel powder by means of the one pot method.
Chemical composition analysis of the acid-leached residue (wt%).
| SiO2 | Na2O | Al2O3 | SO3 | Fe2O3 | TiO2 | CaO | K2O | MoO3 | Total |
|---|---|---|---|---|---|---|---|---|---|
| 95.9 | 1.2 | 1.01 | 0.73 | 0.38 | 0.29 | 0.2 | 0.19 | 0.1 | 100 |
Figure 4XRD pattern of acid-leached residue.
The physical properties of several aerogel products.
| Sample Identification | Density | BET Surface Area (m2/g) | Thermal Conductivity | Porosity |
|---|---|---|---|---|
| Aerogel powders | 0.18 | above 700 | 0.033 | above 90 |
| Aerogel particles | 0.19 | above 650 | 0.031 | above 90 |
| Commercial aerogels | 0.018 | 500–650 | 0.013 | 95–98 |
Figure 5FT-IR spectra of SiO2 aerogel powders.
Figure 6N2 adsorption-desorption of the silica aerogel powders: (a) BET isotherm; (b) BJH pore size distribution (PSD) derived from desorption branch.
Figure 7SEM image of silica aerogel powders at (a) 50.00 KX and (b) 100.00 KX magnification.
Figure 8Evaluation of thermal conductivities of aerogel powder by transient hot-wire method.