| Literature DB >> 25614826 |
Reza Khalighi Sheshdeh1, Saeed Abbasizadeh2, Mohammad Reza Khosravi Nikou3, Khashayar Badii4, Mohammad Sadegh Sharafi3.
Abstract
The adsorption equilibria of toluene from aqueous solutions on natural and modified diatomite were examined at different operation parameters such as pH, contact time, initial toluene concentration was evaluated and optimum experimental conditions were identified. The surface area and morphology of the nanoparticles were characterized by SEM, BET, XRD, FTIR and EDX analysis. It was found that in order to obtain the highest possible removal of toluene, the experiments can be carried out at pH 6, temperature 25°C, an agitation speed of 200 rpm, an initial toluene concentration of 150 mg/L, a centrifugal rate of 4000 rpm, adsorbent dosage = 0.1 g and a process time of 90 min. The results of this work show that the maximum percentage removal of toluene from aqueous solution in the optimum conditions for NONMD was 96.91% (145.36 mg/g). Furthermore, under same conditions, the maximum adsorption of natural diatomite was 71.45% (107.18 mg/g). Both adsorption kinetic and isotherm experiments were carried out. The experimental data showed that the adsorption follows the Langmuir model and Freundlich model on natural and modified diatomite respectively. The kinetics results were found to conform well to pseudo-second order kinetics model with good correlation. Thus, this study demonstrated that the modified diatomite could be used as potential adsorbent for removal of toluene from aqueous solution.Entities:
Keywords: Adsorption; Diatomite; Isotherm; Kinetics; Toluene
Year: 2014 PMID: 25614826 PMCID: PMC4280003 DOI: 10.1186/s40201-014-0148-9
Source DB: PubMed Journal: J Environ Health Sci Eng
Figure 1FT-IR spectra of adsorbents before adsorption (a) natural and (b) NONMD.
Figure 2FT-IR spectra of adsorbents after adsorption (a) natural and (b) NONMD.
FTIR spectroscopy of spectra of natural and modified diatomite before and after the adsorption process
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| Before the adsorption process | Natural diatomite | 470, 522, 596, 627, 671, 692 | Si-O-Si bending vibration |
| 794, 915 | SiO-H vibration | ||
| 1038 | Siloxane group stretching (-Si-O-Si-) | ||
| 1636 | Bending vibration of water (H-O-H) | ||
| 2506 | Silanol group (Si-O-H) | ||
| 3421, 3622 | Si-H | ||
| Before the adsorption process | Modified diatomite (NONMD) | 470, 526, 598, 626, 660, 693 | Si-O-Si bending vibration |
| 779, 795 | SiO-H vibration | ||
| 1047 | Siloxane group stretching (-Si-O-Si-) | ||
| 1636 | Bending vibration of water (H-O-H) | ||
| 2506 | Silanol group (Si-O-H) | ||
| 3421, 3622 | Si-H | ||
| After the adsorption process | Natural diatomite | 470, 523, 628, 693 | Si-O-Si bending vibration |
| 796, 915 | SiO-H vibration | ||
| 1042 | Siloxane group stretching (-Si-O-Si-) | ||
| 1633 | Bending vibration of water (H-O-H) | ||
| 1871 | Combi group of aromatic rings | ||
| 2506 | Silanol group (Si-O-H) | ||
| 3421, 3622 | Si-H | ||
| After the adsorption process | Modified diatomite (NONMD) | 475, 527, 593, 615, 692 | Si-O-Si bending vibration |
| 797 | SiO-H vibration | ||
| 1051 | Siloxane group stretching (-Si-O-Si-) | ||
| 1634 | Bending vibration of water (H-O-H) | ||
| 1871 | Combi group of aromatic rings | ||
| 2506 | Silanol group (Si-O-H) | ||
| 3418, 3626 | Si-H |
Figure 3Scanning electron micrographs before adsorption (a) natural and (b) NONMD, after adsorption (c) natural and (d) NONMD.
Figure 4XRD patterns of (a) natural and (b) modified diatomite.
Figure 5EDX patterns of (a) natural and (b) modified diatomite.
Figure 6Effect of adsorbent dosage on the removal percentage of toluene by natural and modified diatomite, Temperature = , initial toluene concentration = , , agitation speed = .
Figure 7Effect of initial toluene concentration on adsorption of toluene by natural and modified diatomite, Contact time = , Temperature = , , agitation speed = .
Figure 8Effect of contact time on adsorption of toluene on (a) natural and (b) modified diatomite, Equilibrium time = , , agitation speed = , adsorbent dosage = .
Figure 9Adsorption isotherms of toluene onto natural and modified diatomite.
Parameters of various isotherms for adsorption of toluene onto natural diatomite and NONMD
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| 263.150 | 0.008 | 0.997 | 0.250 | 7.760 | 0.697 | 0.970 | 0.410 | 0.873 | 1.922 | 0.819 | 0.490 |
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| 400.000 | 0.256 | 0.976 | 0.320 | 78.144 | 0.336 | 0.998 | 0.210 | 11.520 | 0.128 | 0.886 | 0.310 |
Kinetics constants for toluene adsorption by natural diatomite and NONMD
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| 49.653 | 0.654 | 0.875 | 0.121 | 123.451 | 0.018 | 0.991 | 0.114 |
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| 73.345 | 0.873 | 0.888 | 0.117 | 193.431 | 0.053 | 0.993 | 0.111 |