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Evidence for dynamic air-water exchange of PCDD/Fs : a study in the Raritan Bay/Hudson River Estuary.

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Evidence for dynamic air-water exchange of PCDD/Fs : a study in the Raritan Bay/Hudson River Estuary. / Lohmann, Rainer; Nelson, Eric; Eisenreich, Steven J. et al.
In: Environmental Science and Technology, Vol. 34, No. 15, 01.08.2000, p. 3086-3093.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Lohmann, R, Nelson, E, Eisenreich, SJ & Jones, KC 2000, 'Evidence for dynamic air-water exchange of PCDD/Fs : a study in the Raritan Bay/Hudson River Estuary.', Environmental Science and Technology, vol. 34, no. 15, pp. 3086-3093. https://doi.org/10.1021/es990934r

APA

Lohmann, R., Nelson, E., Eisenreich, S. J., & Jones, K. C. (2000). Evidence for dynamic air-water exchange of PCDD/Fs : a study in the Raritan Bay/Hudson River Estuary. Environmental Science and Technology, 34(15), 3086-3093. https://doi.org/10.1021/es990934r

Vancouver

Lohmann R, Nelson E, Eisenreich SJ, Jones KC. Evidence for dynamic air-water exchange of PCDD/Fs : a study in the Raritan Bay/Hudson River Estuary. Environmental Science and Technology. 2000 Aug 1;34(15):3086-3093. doi: 10.1021/es990934r

Author

Lohmann, Rainer ; Nelson, Eric ; Eisenreich, Steven J. et al. / Evidence for dynamic air-water exchange of PCDD/Fs : a study in the Raritan Bay/Hudson River Estuary. In: Environmental Science and Technology. 2000 ; Vol. 34, No. 15. pp. 3086-3093.

Bibtex

@article{884a8f2d75c147208fa32a2ad16dae2a,
title = "Evidence for dynamic air-water exchange of PCDD/Fs : a study in the Raritan Bay/Hudson River Estuary.",
abstract = "The first detailed evidence for dynamic air−water exchange of polychlorinated dibenzo-p-dioxins and furans (PCDD/Fs) is presented. Samples of air (340−380 m3) and water (33−60 L) were taken simultaneously during July 1998 at two sites in the lower Hudson River Estuary, NY. The atmospheric gas and particulate phases and the aqueous dissolved and particulate phases were analyzed for di- to octa-CDD/Fs. All the homologue groups were routinely detected by HRGC-HRMS, with detection limits for the homologue groups 1 pg/sample. Cl2DDs, OCDD, and Cl2DFs were the most abundant homologues in the water, and the Cl2DDs were the most abundant in the air (4.3−7.6 pg/m3). The Cl2DD/Fs and Cl7/8DD/Fs were 25−53% and 78−99% associated with the water particulate phase, respectively. The likelihood of sampling artifacts influencing the apparent dissolved/particulate partitioning of the higher chlorinated congeners is discussed. Water concentrations were constant over the sampling period, while atmospheric concentrations varied with air mass origin. The fugacity ratios between the dissolved phase in water and the gas phase in air were usually >1, implying a net volatilization flux. Evidence for outgassing of the lower chlorinated homologues, obtained by the simultaneous measurement of air over adjacent land and water, provided further support for the outgassing of the lower chlorinated homologues from the water body.",
author = "Rainer Lohmann and Eric Nelson and Eisenreich, {Steven J.} and Jones, {Kevin C.}",
year = "2000",
month = aug,
day = "1",
doi = "10.1021/es990934r",
language = "English",
volume = "34",
pages = "3086--3093",
journal = "Environmental Science and Technology",
issn = "0013-936X",
publisher = "American Chemical Society",
number = "15",

}

RIS

TY - JOUR

T1 - Evidence for dynamic air-water exchange of PCDD/Fs : a study in the Raritan Bay/Hudson River Estuary.

AU - Lohmann, Rainer

AU - Nelson, Eric

AU - Eisenreich, Steven J.

AU - Jones, Kevin C.

PY - 2000/8/1

Y1 - 2000/8/1

N2 - The first detailed evidence for dynamic air−water exchange of polychlorinated dibenzo-p-dioxins and furans (PCDD/Fs) is presented. Samples of air (340−380 m3) and water (33−60 L) were taken simultaneously during July 1998 at two sites in the lower Hudson River Estuary, NY. The atmospheric gas and particulate phases and the aqueous dissolved and particulate phases were analyzed for di- to octa-CDD/Fs. All the homologue groups were routinely detected by HRGC-HRMS, with detection limits for the homologue groups 1 pg/sample. Cl2DDs, OCDD, and Cl2DFs were the most abundant homologues in the water, and the Cl2DDs were the most abundant in the air (4.3−7.6 pg/m3). The Cl2DD/Fs and Cl7/8DD/Fs were 25−53% and 78−99% associated with the water particulate phase, respectively. The likelihood of sampling artifacts influencing the apparent dissolved/particulate partitioning of the higher chlorinated congeners is discussed. Water concentrations were constant over the sampling period, while atmospheric concentrations varied with air mass origin. The fugacity ratios between the dissolved phase in water and the gas phase in air were usually >1, implying a net volatilization flux. Evidence for outgassing of the lower chlorinated homologues, obtained by the simultaneous measurement of air over adjacent land and water, provided further support for the outgassing of the lower chlorinated homologues from the water body.

AB - The first detailed evidence for dynamic air−water exchange of polychlorinated dibenzo-p-dioxins and furans (PCDD/Fs) is presented. Samples of air (340−380 m3) and water (33−60 L) were taken simultaneously during July 1998 at two sites in the lower Hudson River Estuary, NY. The atmospheric gas and particulate phases and the aqueous dissolved and particulate phases were analyzed for di- to octa-CDD/Fs. All the homologue groups were routinely detected by HRGC-HRMS, with detection limits for the homologue groups 1 pg/sample. Cl2DDs, OCDD, and Cl2DFs were the most abundant homologues in the water, and the Cl2DDs were the most abundant in the air (4.3−7.6 pg/m3). The Cl2DD/Fs and Cl7/8DD/Fs were 25−53% and 78−99% associated with the water particulate phase, respectively. The likelihood of sampling artifacts influencing the apparent dissolved/particulate partitioning of the higher chlorinated congeners is discussed. Water concentrations were constant over the sampling period, while atmospheric concentrations varied with air mass origin. The fugacity ratios between the dissolved phase in water and the gas phase in air were usually >1, implying a net volatilization flux. Evidence for outgassing of the lower chlorinated homologues, obtained by the simultaneous measurement of air over adjacent land and water, provided further support for the outgassing of the lower chlorinated homologues from the water body.

U2 - 10.1021/es990934r

DO - 10.1021/es990934r

M3 - Journal article

VL - 34

SP - 3086

EP - 3093

JO - Environmental Science and Technology

JF - Environmental Science and Technology

SN - 0013-936X

IS - 15

ER -