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Experimental assessment of the daily exchange of atmospheric mercury in Epipremnum aureum

机译:EPIPREMNUM AUREUM中的大气汞日常交换的实验评估

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摘要

Mercury (Hg) exchange at the plant leaf-atmosphere interface is an important issue when considering vegetation as a sink or source of this global pollutant. The aim of the study described here was to clarify this process by studying Hg exchange under laboratory conditions with a plant model, namelyEpipremnum aureum. The desorption and absorption processes were studied under similar conditions in natural daylight. Hg exchange was measured at the foliar surface, and micrometeorological parameters and stomatal conductance were assessed. The results of the Hg exchange study showed different rhythms for the two processes, i.e. desorption (14-196 ng m(-2) day(-1)) was slower than absorption (170-1341 ng m(-2) day(-1)). The daily cycle was more complex in the desorption process, with a maximum when stomatal conductance was high but also with high values during nocturnal hours and a trend to absorption in the mornings. The daily absorption cycles were relatively simple, with values that coincided with positive stomatal conductance values and null values during nocturnal hours. The main factors involved in desorption were stomatal conductance and temperature, but other factors may need to be considered. The absorption process only involved total gaseous Hg, stomatal conductance and relative humidity. A net balance of the two experiments provided data on the amount of Hg transferred per unit leaf area (167 ng m(-2)for desorption and 9213 ng m(-2)for absorption), which implies total amounts of 23 ng of Hg desorbed and 1280 ng absorbed during the whole experiment. Finally, the reversibleon-reversible nature of the Hg exchange process must be reconsidered bearing in mind that Hg within the leaf can be emitted if changes in ambient conditions are appropriate to favour this process.
机译:植物叶片气氛界面的汞(HG)交换是考虑植被作为这种全球污染物的水槽或来源时的重要问题。这里描述的研究的目的是通过使用植物模型,NamelyepiprimnumAuleum研究实验室条件下的Hg交换来阐明该过​​程。在自然日光相似条件下研究了解吸和吸收过程。在叶面表面测量Hg交换,评估微观测定的微观参数和气孔导度。 HG交换研究的结果显示出两种方法的不同节律,即解吸(14-196 ng m(-2)天(-1))比吸收慢(170-1341 ng m(-2)天( - 1))。在解吸过程中,每日循环更复杂,最大当气孔电导高但在夜间时刻的高值以及早晨吸收的趋势也是高的。每日吸收循环相对简单,值与夜间小时呈正气孔导率值和零值相一致。涉及解吸的主要因素是气孔电导和温度,但可能需要考虑其他因素。吸收过程仅涉及全气相HG,气孔导率和相对湿度。两种实验的净平衡提供了每单位叶面积转移的Hg的量(167ng m(-2),吸收的9213 ng m(-2),这意味着总量为23 ng hg在整个实验中解吸和1280 ng吸收。最后,必须重新考虑HG交换过程的可逆/不可逆转的性质,记住,如果环境条件的变化是有利于这个过程,可以发出叶子内的Hg。

著录项

  • 来源
    《Environmental Geochemistry and Health》 |2020年第10期|3185-3198|共14页
  • 作者单位

    Univ Castilla La Mancha Inst Geol Aplicada Escuela Ingn Minera & Ind Almaden EIMIA Plaza Manuel Meca 1 Ciudad Real 13400 Spain|Univ Castilla La Mancha Inst Geol Aplicada Escuela Tecn Super Ingn Agronomos Ciudad Real Ciudad Real Spain;

    Univ Castilla La Mancha Inst Geol Aplicada Escuela Ingn Minera & Ind Almaden EIMIA Plaza Manuel Meca 1 Ciudad Real 13400 Spain;

    Univ Castilla La Mancha Inst Geol Aplicada Escuela Tecn Super Ingn Agronomos Ciudad Real Ciudad Real Spain;

    Univ Castilla La Mancha Inst Geol Aplicada Escuela Ingn Minera & Ind Almaden EIMIA Plaza Manuel Meca 1 Ciudad Real 13400 Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mercury; Plant-atmosphere; Stomatal conductance; Epipremnum aureum; Gas exchange;

    机译:汞;植物气氛;气孔电导;EPIPREMNUM AUREUM;煤气交换;

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