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Sensitivity Analyses for the Atmospheric Dry Deposition of Total PCDD/Fs-TEQ for Handan and Kaifeng Cities, China

机译:邯郸市和开封市PCDD / Fs-TEQ总量在大气干沉降下的敏感性分析

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During the period 2016–2017, the atmospheric wet, dry, and total deposition fluxes and scavenging ratios of the total PCDD/Fs-WHO2005-TEQ in Handan and Kaifeng were investigated. In addition, a sensitivity analysis for the dry deposition fluxes of the total PCDD/Fs-WHO2005-TEQ was conducted. The annual wet deposition fluxes of total PCDD/Fs-WHO2005-TEQ in Handan ranged between 51.1 and 83.5 and averaged 72.3 pg WHO2005-TEQ m–2 year–1, which was approximately 1.04 times of magnitude higher than that in Kaifeng (69.3 pg WHO2005-TEQ m–2 year–1). From 2016–2017, the contribution fraction of dry deposition to the total PCDD/Fs-WHO2005-TEQ deposition flux ranged between 60.8% and 100% and averaged 80.4%. Dry deposition fluxes were more dominant than wet deposition fluxes. In terms of the seasonal variations in total PCDD/Fs-WHO2005-TEQ dry deposition fluxes (the mean values for 2016 and 2017) in Handan, those in spring, summer, fall, and winter were 1084, 563, 964, and 1325 pg WHO2005-TEQ m–2 month–1, respectively, while in Kaifeng, they were 963, 428, 715, and 1016 pg WHO2005-TEQ m–2 month–1, respectively. The total PCDD/Fs-WHO2005-TEQ deposition fluxes in winter was approximately 2.0 times of magnitude higher than that in summer. The sensitivity analysis of total PCDD/FsWHO2005-TEQ dry deposition fluxes in Handan and Kaifeng showed that the PM10 concentration was the most positively correlated sensitive factor. When ΔP/P was changed from 0% to +50%, ΔS/S responded from 0% to +46.1% and +46.3%, respectively. The second positively correlated sensitive factor was the PM2.5 concentration, where when ΔP/P was changed from 0% to +50%, ΔS/S responded from 0% to +47.8% and +40.8%, respectively. For PCDD/Fs mass concentration, when ΔP/P was changed from 0% to +50%, ΔS/S responded from 0% to +32.2% and +28.1%, respectively. This was followed by the atmospheric temperature, and its effect was negatively correlated. When ΔP/P was changed from –50% to +50%, ΔS/S responded from +46.4% to –26.9% and +57.0% to –30.5%, respectively. The results of this study provide useful information that can be used to achieve more insights into both atmospheric deposition of total PCDD/Fs-WHO2005-TEQ and the sensitive factors for dry deposition fluxes.
机译:在2016-2017年期间,调查了邯郸和开封市大气湿,干和总沉积通量以及总PCDD / Fs-WHO2005-TEQ的清除率。另外,对全部PCDD / Fs-WHO2005-TEQ的干沉积通量进行了敏感性分析。邯郸的PCDD / Fs-WHO2005-TEQ的年湿沉降通量在51.1至83.5之间,平均为22.3 pg WHO2005-TEQ m-1第1年,比开封(69.3 pg)高1.04倍。 WHO2005-TEQ m–2年–1)。从2016年至2017年,干法沉积对PCDD / Fs-WHO2005-TEQ总沉积通量的贡献率在60.8%至100%之间,平均为80.4%。干沉积通量比湿沉积通量更占优势。就邯郸的PCDD / Fs-WHO2005-TEQ总干沉降通量(2016年和2017年平均值)的季节性变化而言,春季,夏季,秋季和冬季分别为1084、563、964和1325 pg WHO2005-TEQ m–2月–1分别为WHO2005-TEQ m-2月-1,而在开封,分别为963、428、715和1016 pg WHO2005-TEQ m–2月-1。冬季的总PCDD / Fs-WHO2005-TEQ沉积通量约为夏季的2.0倍。邯郸和开封地区总PCDD / FsWHO2005-TEQ干沉降通量的敏感性分析表明,PM10浓度是最正相关的敏感因子。当ΔP/ P从0%变为+ 50%时,ΔS/ S分别从0%变为+ 46.1%和+ 46.3%。第二个正相关的敏感因子是PM2.5浓度,其中当ΔP/ P从0%变为+ 50%时,ΔS/ S分别从0%变为+ 47.8%和+ 40.8%。对于PCDD / Fs质量浓度,当ΔP/ P从0%变为+ 50%时,ΔS/ S分别从0%变为+ 32.2%和+ 28.1%。其次是大气温度,其影响呈负相关。当ΔP/ P从–50%更改为+ 50%时,ΔS/ S分别从+ 46.4%更改为–26.9%和+ 57.0%更改为–30.5%。这项研究的结果提供了有用的信息,可用于对总PCDD / Fs-WHO2005-TEQ的大气沉积以及干沉积通量的敏感因素有更多的了解。

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