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Surfactant-Enhanced Solubilization of Chlorinated Organic Compounds Contained in DNAPL from Lindane Waste: Effect of Surfactant Type and pH

Author

Listed:
  • Raúl García-Cervilla

    (Chemical and Materials Engineering Department, University Complutense of Madrid, 28040 Madrid, Spain)

  • Arturo Romero

    (Chemical and Materials Engineering Department, University Complutense of Madrid, 28040 Madrid, Spain)

  • Aurora Santos

    (Chemical and Materials Engineering Department, University Complutense of Madrid, 28040 Madrid, Spain)

  • David Lorenzo

    (Chemical and Materials Engineering Department, University Complutense of Madrid, 28040 Madrid, Spain)

Abstract

Application of surfactants in the remediation of polluted sites with dense nonaqueous phase liquid (DNAPL) still requires knowledge of partitioning between surfactants and pollutants in the organic and aqueous phases and the time necessary to reach this balance. Two real DNAPLs, generated as wastes in the lindane production and taken from the polluted sites from Sabiñanigo (Spain), were used for investigating the solubilization of 28 chlorinated organic compounds (COCs) applying aqueous surfactant solutions of three nonionic surfactants (E-Mulse ® 3 (E3), Tween ® 80 (T80), and a mixture of Tween ® 80-Span ® 80 (TS80)) and an anionic surfactant (sodium dodecyl sulfate (SDS)). The initial concentrations of surfactants were tested within the range of 3–17 g·L −1 . The pH was also modified from 7 to >12. The uptake of nonionic surfactants into the organic phase was higher than the anionic surfactants. Solubilization of COCs with the nonionic surfactants showed similar molar solubilization ratios (MSR = 4.33 mmol COCs · g −1 surf ), higher than SDS (MSR = 0.70 mmol COCs · g −1 SDS ). Furthermore, under strong alkaline conditions, the MSR value of the nonionic surfactants was unchanged, and the MSR of SDS value increased (MSR = 1.32 mmol COCs · g −1 SDS ). The nonionic surfactants did not produce preferential solubilization of COCs; meanwhile, SDS preferentially dissolved the more polar compounds in DNAPL. The time required to reach phase equilibrium was between 24 and 48 h, and this contact time should be assured to optimize the effect of the surfactant injected on COC solubilization.

Suggested Citation

  • Raúl García-Cervilla & Arturo Romero & Aurora Santos & David Lorenzo, 2020. "Surfactant-Enhanced Solubilization of Chlorinated Organic Compounds Contained in DNAPL from Lindane Waste: Effect of Surfactant Type and pH," IJERPH, MDPI, vol. 17(12), pages 1-14, June.
  • Handle: RePEc:gam:jijerp:v:17:y:2020:i:12:p:4494-:d:375013
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    Citations

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    Cited by:

    1. Joaquín Guadaño & Jorge Gómez & Jesús Fernández & David Lorenzo & Carmen M. Domínguez & Salvador Cotillas & Raúl García-Cervilla & Aurora Santos, 2022. "Remediation of the Alluvial Aquifer of the Sardas Landfill (Sabiñánigo, Huesca) by Surfactant Application," Sustainability, MDPI, vol. 14(24), pages 1-19, December.
    2. Patricia Sáez & Aurora Santos & Raúl García-Cervilla & Arturo Romero & David Lorenzo, 2022. "Non-Ionic Surfactant Recovery in Surfactant Enhancement Aquifer Remediation Effluent with Chlorobenzenes by Semivolatile Chlorinated Organic Compounds Volatilization," IJERPH, MDPI, vol. 19(12), pages 1-12, June.

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