| Literature DB >> 25426298 |
Saeid Gitipour1, Khadijeh Narenjkar1, Emad Sanati Farvash1, Hossein Asghari1.
Abstract
In this study, the viability of soil flushing on the removal of cresols (meta-, ortho-, and para-cresols) from contaminated soil has been investigated. High production and distribution of cresols in the environment indicate their potential for a widespread exposure to humans. The presence of these compounds in soil could cause a significant threat to environment, as they are toxic and refractory in nature. Cresols are persistent chemicals which are classified by the United State Environmental Protection Agency (U.S.EPA) as Group C, possible human carcinogens. Soil flushing is one of the soil remediation technologies which could by applied for treatment of hydrocarbon contaminated soil. Flushing of the contaminated soil samples was carried out by using sodium dodecyl sulfate (SDS) and Triton X-100 surfactant solutions at the concentrations of 0.1%, 0.2%, 0.3%, and 0.4% (W/W). Three acidic, neutral, and alkaline environments were utilized by adjusting pH of the washing solutions at 3, 7 and 12 to evaluate the effect of washing environment in removing cresols. The results of this research denote that the highest removal efficiencies of 79.6% and 83.51% were achieved for m-cresol and total o- and p-cresols, respectively, under the alkaline environment of pH12 at 0.4% (W/W) SDS concentration. Regarding performance of Triton X-100, the removal efficiencies of 80.26% and 80.14% for the above cresols were attained under similar conditions. Hence, illustrating the effectiveness of surfactants in soil flushing remediation of cresols contaminated soil.Entities:
Keywords: Contaminated soil; Cresols; SDS; Soil flushing; Surfactants; Triton X-100
Year: 2014 PMID: 25426298 PMCID: PMC4243191 DOI: 10.1186/s40201-014-0129-z
Source DB: PubMed Journal: J Environ Health Sci Eng
Soil characteristics
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| Water content | ASTM D 2216 | 1.83% |
| Specific gravity | ASTM D 854-92 | 2.67 |
| pH | ASTM D 4972 | 7.46 |
| Electrical conductivity | ASTM D 2974 | 213 (μs cm−1) |
| Organic content | ASTM D 2974 | 1.48% |
| USCS classification system | ASTM D 422-63 | poorly-graded sand |
| Porosity (n) | ― | 0.46 |
Selected physicochemical properties of surfactants in this study
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| Molecular formula | C12H25OSO3Na | C14H22O(C2H4O)10 |
| Chemical structure |
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| Molecular weight (g mol−1) | 288.38 | 625 |
| CMC (mM l−1) | 3.32-8.4 | 0.2-0.31 |
| Purity (%) | 90 ~ | 100-98 |
| specific gravity | 1.1 (20°C) | 1.064-1.067 (20°C) |
| pH | 6.0-9.0 (Water 1%) | 6.0-8.0 (Water 1%) |
Figure 1Soil flushing apparatus, (a) primary surfactant solution reservoirs, (b) secondary surfactant solution reservoirs, (c) glass cylindrical column (d) surfactant inflow valve, (e) leachate outflow valve, and (f) graduated cylinder.
Permissible cresols concentrations in soil based on various environmental departments
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| 310 | 3100 | Arizonaa |
| 310 | 3100 | Wyomingb |
| 300 | 2900 | Floridac |
| 393 | 2675 | EPAd |
aArizona Department of Environmental Quality [28].
bWyoming Department of Environmental Quality [29].
cFlorida Department of Environmental Protection [30].
dEPA Cleanup Criteria [31].
Figure 2Total ortha- and para-cresols removal efficiencies exposed to various washing solutions under different pH conditions and concentrations.
Figure 3Meta-cresol removal efficiencies exposed to various washing solutions under different pH conditions concentrations.
Removal efficiencies values according to regression analysis
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| Ortha and Para cresol | SDS | RE = −6.8 + 110.5 SDSC +3.9 pH |
| Ortha and Para cresol | Triton-X 100 | RE = 15.3 + 112.0 TXC +2.1 pH |
| Metha cresol | SDS | RE = 5.5 + 103.9 SDSC + 3.7 pH |
| Metha cresol | Triton-X 100 | RE = 13.8 + 110.7 TXC + 2.1 pH |
Abbreviation: RE = Removal Efficiency; SDSC = SDS Concentration; TXC = Triton-X 100 Concentration.
Figure 4Contour lines of cresols’ removal efficiencies versus pH and surfactants concentrations for (a) m-cresol using SDS, (b) m-cresol using Triton-x 100, (c) o and p-cresol using SDS, and (d) o and p-cresol using Triton-X 100.