Literature DB >> 19245010

Attenuation of polychlorinated biphenyl sorption to charcoal by humic acids.

Albert A Koelmans1, Brendo Meulman, Thijs Meijer, Michiel T O Jonker.   

Abstract

Strong sorption to black carbon may limit the environmental risks of organic pollutants, but interactions with cosorbing humic acid (HA) may interfere. We studied the attenuative effect of HA additions on the sorption of polychlorinated biphenyls (PCBs) to a charcoal. "Intrinsic" sorption to HA-amended charcoal was calculated by subtracting the sorption contribution of HA from the total sorption to charcoal and HA. Association of PCBs with HA was proportional to hydrophobicity. However, the planar PCBs 77 and 126 had an additional 2-4 times stronger association than expected from hydrophobicity alone. Sorption isotherms for the raw charcoal fitted slightly better to a three-parameter Polanyi-Dubinin-Manes model than to a two-parameter Langmuir model. Preloading the charcoal with 1-75 mg of HA/g of charcoal increasingly attenuated sorption to charcoal with up to a factor of 10. The resultant isotherms could be described adequately with the Freundlich model. Isotherm nonlinearity increased with HA loading, suggesting increased sorption competition between HA and PCBs. Attenuation was negligible in the PCB picogram per liter to nanogram per liter range and increased at higher PCB concentrations, which points to saturation of binding sites on the charcoal. Attenuation was highest for planar congeners, which suggests an additional site blockage mechanism. These variations due to HA loading and PCB concentration can explain the variability in attenuation reported in earlier work and imply that the use of constant "attenuation factors" to adjust sorption coefficients determined for pure carbonaceous materials in order to apply them to field situations may not be warranted.

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Year:  2009        PMID: 19245010     DOI: 10.1021/es802862b

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  7 in total

1.  Contrasting dynamics of polychlorinated biphenyl dissipation and fungal community composition in low and high organic carbon soils with biochar amendment.

Authors:  Shengyan Huang; Mingjuan Shan; Junhui Chen; Petri Penttinen; Hua Qin
Journal:  Environ Sci Pollut Res Int       Date:  2018-09-28       Impact factor: 4.223

2.  Synthesis of magnetic nanocomposite microparticles for binding of chlorinated organics in contaminated water sources.

Authors:  Angela M Gutierrez; Rohit Bhandari; Jiaying Weng; Arnold Stromberg; Thomas D Dziubla; J Zach Hilt
Journal:  J Appl Polym Sci       Date:  2020-02-22       Impact factor: 3.125

3.  Effect of Atom Transfer Radical Polymerization Reaction Time on PCB Binding Capacities of Styrene-CMA/QMA Core-Shell Iron Oxide Nanoparticles.

Authors:  Angela M Gutierrez; Francisco C Leniz; Xinya Wang; Thomas D Dziubla; J Zach Hilt
Journal:  Mater Sci Eng B Solid State Mater Adv Technol       Date:  2021-12-24

4.  DEVELOPMENT OF BIPHENYL MONOMERS AND ASSOCIATED CROSSLINKED POLYMERS WITH INTRAMOLECULAR PI-PI INTERACTIONS.

Authors:  Rishabh A Shah; Thomas W Ostertag; Shuo Tang; Thomas D Dziubla; J Zach Hilt
Journal:  J Appl Polym Sci       Date:  2020-11-06       Impact factor: 3.057

5.  Effect of sulfonated graphene on uptake, translocation, and metabolism of 2,4,4'-trichlorobiphenyl in maize seedlings.

Authors:  Wenjie Ren; Haiwei Chang; Yuting Wang; Ying Teng; Wenting Ma; Yongming Luo
Journal:  Environ Sci Pollut Res Int       Date:  2018-05-10       Impact factor: 4.223

6.  Mercury Removal from Contaminated Water by Wood-Based Biochar Depends on Natural Organic Matter and Ionic Composition.

Authors:  Sampriti Chaudhuri; Gabriel Sigmund; Sharon E Bone; Naresh Kumar; Thilo Hofmann
Journal:  Environ Sci Technol       Date:  2022-08-04       Impact factor: 11.357

Review 7.  Polychlorinated biphenyl sorption and availability in field-contaminated sediments.

Authors:  David Werner; Sarah E Hale; Upal Ghosh; Richard G Luthy
Journal:  Environ Sci Technol       Date:  2010-04-15       Impact factor: 9.028

  7 in total

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