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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Atmospheric deposition and air-sea gas exchange fluxes of DDT and HCH in the Yangtze River Estuary, East China Sea
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Atmospheric deposition and air-sea gas exchange fluxes of DDT and HCH in the Yangtze River Estuary, East China Sea

机译:大气沉积和海气气体交换通量的DDT和长江河口,东中国海

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The Yangtze River Estuary (YRE) is strongly influenced by the Yangtze River and lies on the pathway of the East Asian Monsoon. This study examined atmospheric deposition and air-sea gas exchange fluxes of dichlorodiphenyltrichloroethane (DDT) and hexachlorocyclohexane (HCH) to determine whether the YRE is a sink or source of selected pesticides at the air-water interface under the influences of river input and atmospheric transport. The air-sea gas exchange of DDT was characterized by net volatilization with a marked difference in its fluxes between summer (140 ng/m~2/d) and the other three seasons (12 ng/m~2/d), possibly due to the high surface seawater temperatures and larger riverine input in summer. However, there was no obvious seasonal variation in the atmospheric HCH deposition, and the air-sea gas exchange reached equilibrium because of low HCH levels in the air and seawater after the long-term banning of HCH and the degradation. The gas exchange flux of HCH was comparable to the dry and wet deposition fluxes at the air-water interface. This suggests that the influences from the Yangtze River input and East Asian continental outflow on the fate of HCH in the YRE were limited. The gas exchange flux of DDT was about fivefold higher than the total dry and wet deposition fluxes. DDT residues in agricultural soil transported by enhanced riverine runoff were responsible for sustaining such a high net volatilization in summer. Moreover, our results indicated that there were fresh sources of DDT from the local environment to sustain net volatilization throughout the year.
机译:长江河口(YRE)强烈受长江和谎言东亚季风的途径。研究大气沉积和海气气体交换通量的滴滴涕(DDT)和六氯环己烷(HCH)来确定YRE水槽或选定的来源杀虫剂在空气与接口河流的输入和大气的影响交通工具。标志以净蒸发之间的差异在其通量夏天(140ng / m ~ 2 / d(12)和其他三个季节ng / m ~ 2 / d),可能是由于高的表面海水温度和较大的河的输入在夏天。大气HCH沉积的变化,海气界面气体交换达到平衡由于低水平的空气和海水后的长期禁止的退化。与干、湿沉积通量在空气与接口。从长江输入和影响东亚大陆流出HCH的命运在YRE有限。滴滴涕是高出五倍总干和湿沉降通量。农业土壤经由增强河的径流量是负责维持在夏天如此高的净蒸发。此外,我们的结果表明,有新鲜的DDT来源从本地环境维持净中挥发的一年。

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