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Seasonal variations of organophosphate esters (OPEs) in atmospheric deposition, and their contribution to soil loading.

Authors :
Gong, Shuai
Huang, Jianan
Wang, Jun
Lv, Mingchao
Deng, Yirong
Su, Guanyong
Source :
Journal of Hazardous Materials. Aug2024, Vol. 475, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Organophosphate esters (OPEs) are ubiquitous in surface soil, and atmospheric deposition is considered to be the major pollution source. However, the research on the environmental transport behaviors of OPEs between atmospheric deposition and soil is very limited. In this study, we investigated the contamination levels and seasonal variations of OPEs in atmospheric deposition samples (n = 33) collected from an area of South China every month between February 2021 and January 2022, and evaluated the contribution of OPEs in atmospheric deposition to soil. The concentrations of ∑ 21 target-OPEs ranged from 3670 to 18,600 ng/g dry weight (dw), with a mean of 8200 ng/g dw (median: 7600 ng/g dw). ∑ 21 target-OPEs concentrations in all atmospheric deposition samples exhibited significant seasonal differences (p < 0.05) with higher concentrations observed in winter and lower concentrations in summer. Tris(2,4-di-tert-butylphenyl) phosphate (TDTBPP) was the most dominant target OPE in atmospheric deposition (4870 ng/g dw), and its seasonal variation trend was consistent with ∑ 21 OPEs (p < 0.05). Simultaneously, in order to further explore the effect of atmospheric deposition on the levels of OPEs in soil of the study region, input fluxes and accumulation increments were estimated. Ten OPEs (including seven target OPEs and three suspect OPEs) exhibited high input flux means and accumulation increments, indicating that these compounds are prone to accumulate in soil via atmospheric deposition. It is noteworthy that the non-target phosphonate analyte bis(2,4-di-tert-butylphenyl) dibutyl ethane-1,2-diylbis(phosphonate) (BDTBPDEDBP) was detected at highest median concentration (8960 ng/g dw) in atmospheric deposition. Correspondingly, the average input flux and accumulation increment of BDTBPDEDBP were higher than those of all target and suspect OPEs. Collectively, this study quantifies the environmental transport behavior of OPEs between atmospheric deposition and soil, and provides new evidences for the fact that atmospheric deposition is the important pollution source of OPEs in soil. [Display omitted] • Atmospheric deposition and soil samples were analyzed for OPEs via a holistic screening strategy. • OPEs levels in all atmospheric deposition samples showed significant seasonal differences. • Compositions of target OPEs exhibited a clearly correlation between the two media. • Concentrations of non-target phosphonate compound were higher than those of all detected OPEs. • Ten OPEs were evaluated to be prone to accumulate in soil via atmospheric deposition. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03043894
Volume :
475
Database :
Academic Search Index
Journal :
Journal of Hazardous Materials
Publication Type :
Academic Journal
Accession number :
178021972
Full Text :
https://doi.org/10.1016/j.jhazmat.2024.134845