| Literature DB >> 30150527 |
Abstract
In recent years, numerous studies have been carried out on new technologies allowing to reduce of mix asphalt production temperatures. One of the possibilities is to foam the asphalt with "water-containing" additives, which include zeolites. So far, mainly synthetic zeolites of the Linde A structure type, obtained from chemical reagents, and natural clinoptilolite have been used in WMA technology. In this studies, the synthetic zeolites produced from fly ashes with 4 different types of crystalline structure were analyzed. Zeolite materials were characterized by textural parameters and thermal analysis. The amount of zeolite added to asphalt was 0, 3, 5, 7 wt % in relation to the weight of asphalt. Determination of dynamic viscosity was performed at two temperatures: 135 and 160 and 4 time intervals. The tests were performed for two asphalt binders: 35/50 and 100/150 penetration grade. As a conclusion, it was found that the viscosity of asphalt pastes with zeolitic materials increases with the increase in the amount of zeolite added. The increase level depends mainly on the textural parameters. The potential usefulness of fly ash derived zeolites in the process of asphalt foaming, which depends mainly on the amount of water contained in the zeolite structure and the method of its release, has been proved.Entities:
Keywords: Warm-Mix Asphalt; dynamic viscosity; synthetic zeolite
Year: 2018 PMID: 30150527 PMCID: PMC6164109 DOI: 10.3390/ma11091542
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Zeolite Framework Types appearing in the zeolite materials used in the research.
| Framework Type | Chemical Composition | Channel System | Composite Building Units |
|---|---|---|---|
| NaA (LTA) | Na96[Si96Al96O384]·216H2O | 3-dimensional channel system Channel size: 4.1 × 4.1 Å |
|
| NaX (FAU) | Na2[Al2Si2O9] 6H2O | 3-dimensional channel system Channel size: 7.4 × 7.4 Å |
|
| NaP1 (GIS) | Na6[Si10Al6O32]·12H2O | 3-dimensional channel system Channel size: 4.5 × 3.1 Å, 4.8 × 2.8 Å |
|
| Sodalite (SOD) | Na8[Al6Si6O24]Cl2 | 3-dimensional channel system Channel size: 2.2 × 2.2 Å |
|
Synthesis parameters of zeolites materials used in research.
| Zeolite Materials | Substrates | Synthesis Conditions | ||||
|---|---|---|---|---|---|---|
| Fly Ash (kg) | NaOH (kg) | Aluminum Dust (kg) | H2O (dm3) | Temperature (°C) | Time (h) | |
| NaA | 15 | 10 | 0.2 | 90 | 90 | 16 |
| NaX | 10 | 3 | - | 25 | 80 | 48 |
| NaP1 | 20 | 12 | - | 90 | 80 | 36 |
| Sodalit | 20 | 18 | - | 90 | 95 | 24 |
Properties of the base bitumen.
| Test | Specification | Result | ||
|---|---|---|---|---|
| Asphalt 35/50 | Asphalt 100/150 | |||
| Penetration (25 °C; 0.1 mm) | European standard EN 1426:2009 | 38.2 | 100.8 | |
| Viscosity at (135 °C) (mPa s) | ASTM D 4402 | 755 | 265 | |
| Viscosity at (160 °C) (mPa s) | 241 | 100 | ||
| Fraction composition | Saturate (%) | TLC-FID-thin-layer chromatography with flame-ionization detection | 6.5 | 8.9 |
| Aromatic (%) | 41.1 | 43.2 | ||
| Resin (%) | 24.3 | 29.5 | ||
| Asphaltene (%) | 28.1 | 18.3 | ||
Analyses of the chemical compositions of the samples with their main zeolite components given in the header.
| Component | NaA | NaX | NaP1 | Sodalite |
|---|---|---|---|---|
| (% wt) | ||||
| SiO2 | 41.20 | 34.50 | 43.71 | 39.90 |
| Al2O3 | 29.00 | 19.75 | 21.69 | 33.80 |
| CaO | 6.78 | 11.69 | 16.61 | 4.62 |
| MgO | 0.55 | 0.47 | 1.32 | 0.75 |
| Fe2O3 | 8.67 | 6.62 | 5.87 | 9.95 |
| TiO2 | 0.64 | 1.63 | 1.03 | 0.89 |
| Na2O | 6.73 | 6.23 | 7.56 | 4.84 |
| K2O | 1.92 | 0.54 | 1.15 | 0.28 |
| LOI | 16.89 | 15.61 | 14.37 | 5.14 |
Figure 1Diffractograms of mineral composition for zeolite materials used in research: (a) NaA; (b) NaX; (c) NaP1; (d) sodalite.
Figure 2The thermogravimetric analysis (TG) and differential thermal analysis (DTA) graphs zeolite materials used in research: (a) NaA; (b) NaX; (c) NaP1; (d) sodalite.
Textural parameters of zeolite materials used in research.
| Textural Parameters | NaA | NaX | NaP1 | Sodalite |
|---|---|---|---|---|
| Specific surface area (m2/g) | 21 | 218 | 98 | 33 |
| Surface of microporous (m2/g) | 15 | 156 | 12 | 5 |
| Volume of microporous (cm3/g) | 0.02 | 0.64 | 0.01 | 0.02 |
| Surface of mesoporous (m2/g) | 5 | 61 | 88 | 31 |
| Volume of mesoporous (cm3/g) | 0.22 | 0.14 | 0.29 | 0.10 |
Figure 3The results of dynamic viscosity tests for 35/50 asphalt with the addition of zeolites measured at 135 °C.
Figure 4The results of dynamic viscosity tests for 100/150 asphalt with the addition of zeolites measured at 135 °C.
Figure 5The results of dynamic viscosity tests for 35/50 asphalt with the addition of zeolites measured at 160 °C.
Figure 6The results of dynamic viscosity tests for 100/150 asphalt with the addition of zeolites measured at 160 °C.