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首页> 外文期刊>Atmospheric environment >Endosulfan in the atmosphere of South Florida: Transport to Everglades and Biscayne National Parks
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Endosulfan in the atmosphere of South Florida: Transport to Everglades and Biscayne National Parks

机译:南佛罗里达州大气中的硫丹:运输到大沼泽地和比斯坎国家公园

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摘要

Nutrient inputs from urban encroachment and agricultural activities have been implicated in contributing to the environmental health decline and loss of organism diversity of South Florida ecosystems. Intensive agricultural pesticide use may also challenge these ecosystems. One possible mechanism is pesticide release to the atmosphere after application. The process is enhanced in this region due to the calcareous soils, frequent rainfall, and high humidity and temperatures. This study examined the atmospheric fate of the widely-used insecticide endosulfan. Air samples were collected over a five-year period (2001-2006) at a site within the agricultural community of Homestead, Florida and at sites located in nearby Biscayne and Everglades National Parks (NPs). Mean gas phase air concentrations of α-endosulfan were 17 ± 19 ng m~(-3) at Homestead, 2.3 ± 3.6 ng m~(-3) at Everglades NP, and 0.52 ± 0.69 ng m~(-3) at Biscayne NP. Endosulfan emissions from agricultural areas around Homestead appeared to influence air concentration observations at the NP sites. During an intensive sampling campaign, the highest total endosulfan concentrations at the NP sites were observed on days when air parcels were predicted to move from Homestead towards the sampling locations. The a-endosulfan fraction (α/(α + β)) was used to examine the contribution of pesticide drift versus volatilization to the overall residue level. The formulated product has an a fraction of approximately 0.7, whereas volatilization is predicted to have an a fraction of ≥0.9. The median a- fraction observed during periods of high agricultural activity at Homestead and Everglades NP was 0.84 and 0.88, respectively, and during periods of low agricultural activity the median at Homestead was 0.86, indicating contributions from drift. The median α fraction at Everglades NP was 1.0 during periods of low agricultural activity, while Biscayne NP was 1.0 year round indicating air concentrations are primarily influenced by regional volatilization.
机译:来自城市侵占和农业活动的营养投入与南佛罗里达生态系统的环境健康下降和生物多样性丧失有关。大量使用农业农药也可能挑战这些生态系统。一种可能的机制是农药在施用后释放到大气中。由于钙质土壤,频繁的降雨以及高湿度和高温,该过程得到了加强。这项研究检查了广泛使用的杀虫剂硫丹的大气命运。在五年(2001年至2006年)期间,在佛罗里达州霍姆斯特德市农业社区内以及比斯坎湾和大沼泽国家公园(NPs)附近的场所收集了空气样本。在Homestead,α-硫丹的气相平均空气浓度为17±19 ng m〜(-3),在Everglades NP为2.3±3.6 ng m〜(-3),在Biscayne为0.52±0.69 ng m〜(-3)。 NP。来自霍姆斯特德(Homestead)附近农业地区的硫丹排放似乎影响了NP站点的空气浓度观测值。在一次密集的采样活动中,在预测有航空包裹从霍姆斯特德移向采样地点的那几天,观察到了NP位点最高的总硫丹浓度。使用α-硫丹馏分(α/(α+β))检查农药漂移与挥发对总残留量的影响。配制产品的分数约为0.7,而挥发份的预测分数则≥0.9。在Homestead和Everglades NP的农业活动活跃期间,观察到的中位数a-分数分别为0.84和0.88,而在农业活动低迷的时期中,Homestead的中位数为0.86,表明了漂移的影响。在农业活动较少的时期,大沼泽地国家公园的NP中位数为1.0,而Biscayne NP全年为1.0,这表明空气浓度主要受区域挥发的影响。

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