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Study on Mercury in PM10 at an Urban Site in the Central Indo-Gangetic Plain Seasonal Variability and Influencing Factors

机译:中国中部城市地区PM10汞研究的研究

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Mercury (Hg) is among the most toxic metals possessing a major threat to human health and aquatic ecosystems over the globe. However, measurement of Hg concentrations and seasonal variability remain poorly understood over the Indo-Gangetic Plain (IGP) in northern India. In this study, we present one-year data of particulate-bound mercury (HgP) in aerosol samples (PM10) collected from Kanpur to understand seasonal variability and factors influencing concentration, as well as dry deposition flux. The HgP concentration exhibit a large temporal variability and ranged between 100 (on 14 June 2007) to 4340 pg m–3 (on 4 March 2007) with an annual average concentration of HgP is 776 ± 846 pg m–3. The HgP concentrations and HgP/PM10 ratios showed a marked seasonality with the highest in winter (Dec-Feb) followed by post-monsoon (Oct–Nov) and summer (April–June) seasons. HgP and HgP/PM10 were positively correlated (r2 = 0.77, p N = 58) during the sampling period and the estimated dry deposition flux of HgP was 104.7 μg m–2 y–1. Although this study provides a comprehensive data set on HgP in an urban atmosphere of the IGP revealing high levels of HgP, measurement of gaseous Hg is needed for estimation of the total Hg budget. Therefore, future studies should focus on identification of different sources as well as emission characteristics of all forms of Hg (organic and inorganic forms) for better mitigation strategy to prevent health risks associated with toxic Hg in the region.
机译:汞(HG)是对全球人类健康和水生生态系统具有重大威胁的最有毒的金属之一。然而,在印度北部的印度印度平原(IGP)上,HG浓度和季节变异的测量仍然很差。在这项研究中,我们呈现了从坎普尔收集的气溶胶样品(PM10)中的颗粒状汞(HGP)的一年数据,以了解影响浓度的季节性变异性和因子,以及干沉沉通量。 HGP浓度表现出大的时间变异性,并且在100(2007年6月14日)至4340pg M-3(2007年3月4日)之间的范围,年平均浓度为HGP为776±846pg M-3。 HGP浓度和HGP / PM10比率显示出明显的季节性,冬季最高(12月),其次是季风(十月至11月)和夏季(4月至6月)季节。 HGP和HGP / PM10在采样期间呈正相关(R2 = 0.77,P n = 58),HGP的估计干沉积通量为104.7μgm-2 y-1。尽管本研究提供了在揭示高水平HGP的IGP城市气氛中的HGP综合数据,但需要测量气态HG,以估计总HG预算。因此,未来的研究应专注于鉴定不同来源的所有形式的HG(有机和无机形式)的排放特征,以便更好地缓解策略,以防止该地区毒性汞相关的健康风险。

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