Simulating behavior of perfluorooctane sulfonate (PFOS) in the mainstream of a river system with sluice regulations

Han, G. and Song, S. and Lu, Y. and Zhang, M. and Du, D. and Wu, Q. and Yang, S. and Wang, R. and Cui, H. and Yang, L. and Mao, R. and Sun, B. and Sweetman, A.J. and Wu, Y. (2024) Simulating behavior of perfluorooctane sulfonate (PFOS) in the mainstream of a river system with sluice regulations. Chemosphere, 352: 141302. p. 141302. ISSN 0045-6535

[thumbnail of Simulating behavior of perfluorooctane sulfonate (PFOS) in the mainstream of a river system with sluice regulations]
Text (Simulating behavior of perfluorooctane sulfonate (PFOS) in the mainstream of a river system with sluice regulations)
Simulating_behavior_of_perfluorooctane_sulfonate_PFOS_in_the_mainstream_of_a_river_system_with_sluice_regulations.docx - Submitted Version

Download (5MB)
[thumbnail of Simulating behavior of perfluorooctane sulfonate (PFOS) in the mainstream of a river system with sluice regulations]
Text (Simulating behavior of perfluorooctane sulfonate (PFOS) in the mainstream of a river system with sluice regulations)
Simulating_behavior_of_perfluorooctane_sulfonate_PFOS_in_the_mainstream_of_a_river_system_with_sluice_regulations.docx - Submitted Version
Available under License Creative Commons Attribution.

Download (5MB)
[thumbnail of Simulating_behavior_of_perfluorooctane_sulfonate_PFOS_in_the_mainstream_of_a_river_system_with_sluice_regulations]
Text (Simulating_behavior_of_perfluorooctane_sulfonate_PFOS_in_the_mainstream_of_a_river_system_with_sluice_regulations)
Simulating_behavior_of_perfluorooctane_sulfonate_PFOS_in_the_mainstream_of_a_river_system_with_sluice_regulations.pdf - Accepted Version
Available under License Creative Commons Attribution.

Download (3MB)

Abstract

Perfluorooctane sulfonate (PFOS) is a persistent, anionic and ubiquitous contaminant that undergoes long-range transport within the environment. Its behavior has attracted wide-range academic and regulatory attention. In this article, a mass balance model was employed to simulate PFOS concentrations in the mainstream of Haihe River water system, encompassing sluices and artificial rivers. The dynamic simulation of PFOS concentrations in both sediment and freshwater took into account fluctuations in PFOS emissions, water levels and water discharge. Furthermore, the study delved into exploring the impacts of sluices and artificial rivers on the behavior of PFOS. The simulated concentrations of PFOS in steady state agreed with the measured concentrations in surveys carried out in Nov. 2019, July 2020, Oct. 2020, and June 2021. Every year, approximately 24 kg PFOS was discharged into the Bohai Sea with Chaobai New River being the largest contributor for 44 %. Moreover, the transport of PFOS in the original rivers is likely to be restricted by sluices and replaced by artificial rivers. Monte Carlo analysis showed that model predictions of PFOS concentrations in sediment were subject to greater uncertainty than those in freshwater as the former is impacted by more parameters, such as density of sediment. This study provides a scientific basis for the local government to manage and control PFOS.

Item Type:
Journal Article
Journal or Publication Title:
Chemosphere
Uncontrolled Keywords:
Research Output Funding/no_not_funded
Subjects:
?? no - not fundedenvironmental chemistrygeneral chemistrychemistry(all) ??
ID Code:
224733
Deposited By:
Deposited On:
09 Oct 2024 08:50
Refereed?:
Yes
Published?:
Published
Last Modified:
09 Oct 2024 08:50