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首页> 外文期刊>The Science of the Total Environment >Below-cloud scavenging of size-segregated aerosols and its effect on rainwater acidity and nutrient deposition: A long-term (2009-2018) and real-time observation over eastern Himalaya
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Below-cloud scavenging of size-segregated aerosols and its effect on rainwater acidity and nutrient deposition: A long-term (2009-2018) and real-time observation over eastern Himalaya

机译:低于云清除尺寸隔离的气溶胶及其对雨水酸度和养分沉积的影响:长期(2009-2018)和喜马拉雅东部的实时观察

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摘要

The major removal pathway of atmospheric aerosols is the below cloud scavenging. The present study is the first-ever in the world, where long-term(2009-2018) as well as real-time observations on the below-cloud scavenging of ultrafine (0.4 mu m), superfine (0.4-1.0 mu m) and coarse mode (1 mu m) aerosols have been made. The study was conducted with 919 rain events over a high altitude Himalayan station (27.01 degrees N, 88.15 degrees E, 2200 m amsl) in India. The other factors were normalized in order to investigate the "rain only" effect and therefore 919 rain events were screened and finally 165 events were studied. We determined threshold values of the rain rate (and duration) above which aerosols are scavenged in very high proportion (75%) irrespective of the duration (and rain rate). These threshold values decrease as the aerosol size increases. For example, threshold rain rate decreases from similar to 17 mm h(-1) to similar to 8 mm h(-1) as the aerosol size increases from ultrafine to coarse mode. We also showed that how the rainwater acidity and the deposition flux of major inorganic nutrients (NH4+ + NO3- + SO42-) vary with the rain rate and duration. We observed that the rains either 12 mm h(-1) or 80 min are all acidic. Maximum nutrients were accumulated in the ultrafine aerosols and hence the spectrum of the deposition flux of the nutrients (with rain rate and duration) was similar to the scavenging spectrum of ultrafine aerosol. Such long-term database enables us to quantitatively predict the aerosol scavenging, acid rains and nutrient deposition which showed excellent agreement with the observed results. Such quantitative prediction would in turn help the researchers to predict the rain-induced changes in air quality as well as any bio-geo chemical parameter. The present study bears paramount importance in Himalayan context as well as any ecologically-rich regions. (C) 2019 Elsevier B.V. All rights reserved.
机译:大气气溶胶的主要去除途径是低于云清除。本研究是世界上第一个,在长期(2009-2018)以及对超细(<0.4 mu m),超细(0.4-1.0 mu m)的实时观察)和粗糙的模式(>1μm)已经制作了气溶胶。该研究是在印度的高海拔喜马拉雅站(27.01,88.15摄氏度)的高海拔Himalayan站进行了919次雨季活动。其他因素被标准化,以调查“仅限雨仅”效应,因此筛查了919次雨季事件,最后研究了165个事件。我们确定了雨率(和持续时间)的阈值,而气溶胶在非常高的比例(> 75%)中被清除(> 75%),而不管持续时间(和雨率)。随着气溶胶尺寸的增加,这些阈值减小。例如,随着气溶胶尺寸从超细到粗糙模式增加,阈值雨速率从类似于8mm H(-1)相似的阈值雨速率降低到8mm H(-1)。我们还表明,雨水酸度和主要无机营养素的沉积通量(NH4 + + + NO3- + SO42-)的沉积通量随着雨率和持续时间而变化。我们观察到下雨,即12mm H(-1)或> 80分钟都是酸性的。在超细气溶胶中累积了最大营养素,因此营养物质沉积通量的光谱(随着雨率和持续时间)类似于超细气溶胶的清除光谱。这种长期数据库使我们能够定量预测气溶胶清除,酸性降雨和营养沉积,其显示出与观察结果的良好一致。这种定量预测反过来反过来帮助研究人员预测雨流量的空气质量变化以及任何生物地质化学参数。本研究对喜马拉雅语境以及任何生态富裕的地区来说至关重要。 (c)2019 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第jul15期|223-233|共11页
  • 作者单位

    Bose Inst Environm Sci Sect P1-12 CIT Scheme 7-M Kolkata 700054 India;

    Bose Inst Environm Sci Sect P1-12 CIT Scheme 7-M Kolkata 700054 India|Bose Inst Natl Facil Astroparticle Phys & Space Sci 16 AJC Bose Rd Darjeeling 734101 India;

    Bose Inst Environm Sci Sect P1-12 CIT Scheme 7-M Kolkata 700054 India;

    Bose Inst Environm Sci Sect P1-12 CIT Scheme 7-M Kolkata 700054 India;

    Bose Inst Environm Sci Sect P1-12 CIT Scheme 7-M Kolkata 700054 India|Bose Inst Natl Facil Astroparticle Phys & Space Sci 16 AJC Bose Rd Darjeeling 734101 India|Bose Inst Ctr Astroparticle Phys & Space Sci Block EN Sect 5 Kolkata 700091 India;

    Bose Inst Natl Facil Astroparticle Phys & Space Sci 16 AJC Bose Rd Darjeeling 734101 India|Bose Inst Ctr Astroparticle Phys & Space Sci Block EN Sect 5 Kolkata 700091 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Below-cloud scavenging; Rainwater acidity; Nutrient deposition; Size-segregated aerosols; Eastern Himalaya;

    机译:云清除以下;雨水酸度;营养沉积;尺寸隔离气溶胶;喜马拉雅山;

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