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Aerosol Liquid Water Promotes the Formation of Water-Soluble Organic Nitrogen in Submicrometer Aerosols in a Suburban Forest

机译:气溶胶液态水促进郊区森林亚微米气溶胶中水溶性有机氮的形成

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Water-soluble organic nitrogen (WSON) affects the formation,chemical transformations,hygroscopicity,and acidity of organic aerosols as well as biogeochemical cycles of nitrogen.However,large uncertainties exist in the origins and formation processes of WSON.Submicrometer aerosol particles were collected at a suburban forest site in Tokyo in summer 2015 to investigate the relative impacts of anthropogenic and biogenic sources on WSON formations and their linkages with aerosol liquid water (ALW).The concentrations of WSON (ave.225±100 ngN m~(-3) and ALW exhibited peaks during nighttime,which showed a significant positive correlation,suggesting that ALW significantly contributed to WSON formation.Further,the thermodynamic predictions by ISORROPIA-Ⅱ suggest that ALW was primarily driven by anthropogenic sulfate.Our analysis,including positive matrix factorization,suggests that aqueous-phase reactions of ammonium and reactive nitrogen with biogenic volatile organic compounds (VOCs) play a key role in WSON formation in submicrometer particles,which is particularly significant in nighttime,at the suburban forest site.The formation of WSON associated with biogenic VOCs and ALW was partly supported by the molecular characterization of WSON.The overall result suggests that ALW is an important driver for the formation of aerosol WSON through a combination of anthropogenic and biogenic sources.
机译:水溶性有机氮(WSON)影响有机气溶胶的形成,化学转化,吸湿性和酸度以及氮的生物地球化学循环。然而,WSON的起源和形成过程存在很大的不确定性。于2015年夏季在东京郊区森林站点进行调查,研究了人为和生物源对WSON形成及其与气溶胶液态水(ALW)的联系的相对影响WSON的浓度(平均225±100 ngN m〜(-3)且ALW在夜间出现峰值,这显示出显着的正相关,这表明ALW显着促进了WSON的形成。此外,ISORROPIA-Ⅱ的热力学预测表明ALW主要是由人为硫酸盐驱动的。我们的分析包括正矩阵分解,表明铵和活性氮与生物挥发性有机化合物(VOC)的水相反应起着他们在郊区森林站点的亚微米颗粒中形成WSON的作用,在夜间尤为重要。WSON的分子表征部分支持了与生物VOC和ALW相关的WSON的形成。总体结果表明ALW是一种通过人为和生物来源的结合形成气溶胶WSON的重要驱动力。

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