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Residue level, occurrence characteristics and ecological risk of pesticides in typical farmland-river interlaced area of Baiyang Lake upstream, China
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AbstractBaiyang Lake is the largest freshwater lake in North China, playing an important role in aquatic products production and eco-environment improvement. Traditional organochlorine pesticides were not enough to reflect ecological risk. We performed the high-throughput and non-targeted screening to identify the high-residue and wide-distribution pesticides at farmland-river interlaced area. We firstly reported the residue level and spatio-temporal distribution of typical pesticides in soils and waters (SP1–SP13) near Fuhe river in 2020–2021. The mean recoveries of eight pesticides ranged from 79.4 to 129%. The residues were 0.250–3530 ng/L (water) and 2.79 × 10−3–647 μg/kg dw (soil), respectively. Thiamethoxam was dominant with the high-residue proportion (HRP) of 53–95% (water, HRP > 50%) and 63–97% (soil, HRP > 60%), respectively. Most of pesticides almost have no significant season-change. The risk quotient (RQ) model results showed that although most pesticides have no aquatic risk (RQ < 0.01), carbendazim and propionazole deserved attention. The individual thiamethoxam at nearly half of the sites exhibited high terrestrial risk (RQ, 1.070–1.682), while propiconazole was at medium risk (SP1, SP2, SP8, and SP9) and high risk (SP12). The RQall were in the range of 0.4541–3.327 (earthworm), 0.0239–0.4552 (algae), 0.1094–1.103 (aquatic invertabrates), and 0.1657–1.923 (fish), respectively, so co-residue caused joint toxic effect to aquatic invertebrates.
Springer Science and Business Media LLC
Title: Residue level, occurrence characteristics and ecological risk of pesticides in typical farmland-river interlaced area of Baiyang Lake upstream, China
Description:
AbstractBaiyang Lake is the largest freshwater lake in North China, playing an important role in aquatic products production and eco-environment improvement.
Traditional organochlorine pesticides were not enough to reflect ecological risk.
We performed the high-throughput and non-targeted screening to identify the high-residue and wide-distribution pesticides at farmland-river interlaced area.
We firstly reported the residue level and spatio-temporal distribution of typical pesticides in soils and waters (SP1–SP13) near Fuhe river in 2020–2021.
The mean recoveries of eight pesticides ranged from 79.
4 to 129%.
The residues were 0.
250–3530 ng/L (water) and 2.
79 × 10−3–647 μg/kg dw (soil), respectively.
Thiamethoxam was dominant with the high-residue proportion (HRP) of 53–95% (water, HRP > 50%) and 63–97% (soil, HRP > 60%), respectively.
Most of pesticides almost have no significant season-change.
The risk quotient (RQ) model results showed that although most pesticides have no aquatic risk (RQ < 0.
01), carbendazim and propionazole deserved attention.
The individual thiamethoxam at nearly half of the sites exhibited high terrestrial risk (RQ, 1.
070–1.
682), while propiconazole was at medium risk (SP1, SP2, SP8, and SP9) and high risk (SP12).
The RQall were in the range of 0.
4541–3.
327 (earthworm), 0.
0239–0.
4552 (algae), 0.
1094–1.
103 (aquatic invertabrates), and 0.
1657–1.
923 (fish), respectively, so co-residue caused joint toxic effect to aquatic invertebrates.
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