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Decoding long-term trends in the wet deposition of sulfate, nitrate, and ammonium after reducing the perturbation from climate anomalies

机译:减少气候异常扰动后湿沉积的湿沉积中的长期趋势

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Long-term trends of wet deposition of inorganic ions are affected by multiple factors, among which emission changes and climate conditions are dominant ones. To assess the effectiveness of emission reductions on the wet deposition of pollutants of interest, contributions from these factors to the long-term trends of wet deposition must be isolated. For this purpose, a two-step approach for preprocessing wet deposition data is presented herein. This new approach aims to reduce the impact of climate anomalies on the trend analysis so that the impact of emission reductions on the wet deposition can be revealed. This approach is applied to a 2-decade wet deposition dataset of sulfate (SO42-), nitrate (NO3-), and ammonium (NH4+) at rural Canadian sites. Analysis results show that the approach allows for statistically identifying inflection points on decreasing trends in the wet deposition fluxes of SO42- and NO3- in northern Ontario and Quebec. The inflection points match well with the three-phase mitigation of SO2 emissions and two-phase mitigation of NOx emissions in Ontario. Improved correlations between the wet deposition of ions and their precursors' emissions were obtained after reducing the impact from climate anomalies. Furthermore, decadal climate anomalies were identified as dominating the decreasing trends in the wet deposition fluxes of SO42- and NO3- at a western coastal site. Long-term variations in NH4+ wet deposition showed no clear trends due to the compensating effects between NH3 emissions, climate anomalies, and chemistry associated with the emission changes of sulfur and nitrogen.
机译:无机离子的湿沉积的长期趋势受到多种因素的影响,其中排放变化和气候条件是显性的。为了评估减少减排对感兴趣污染物的湿沉积的有效性,必须孤立这些因素对湿沉积的长期趋势的贡献。为此目的,本文提出了一种用于预处理湿沉积数据的两步方法。这种新方法旨在减少气候异常对趋势分析的影响,从而可以揭示减排对湿沉积的影响。该方法应用于农村加拿大地点的硫酸盐(SO42-),硝酸盐(NO 3-)和铵(NH4 +)的210次湿沉积数据集。分析结果表明,该方法允许统计识别Ontario和魁北克州SO42-和No3-湿沉积势率下降趋势的拐点。随着SO2排放的三相减轻和安大略省NOX排放的三相减轻,拐点与Ontario的两相缓解相匹配。在降低气候异常的影响之后,获得了离子的湿沉积与其前体排放之间的相关性。此外,截止了逾越节的气候异常,旨在占据西沿海地区SO42-和No3的湿沉积助液中的减少趋势。 NH4 +湿沉积中的长期变化显示,由于与硫和氮气的排放变化相关的NH 3排放,气候异常和化学之间的补偿效应,没有明显的趋势。

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