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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Deposition fluxes of terpenes over grassland
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Deposition fluxes of terpenes over grassland

机译:在草原沉积通量的萜烯

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Eddy covariance flux measurements were carried out for two subsequent vegetation periods above a temperate mountain grassland in an alpine valley using a proton-transfer-reaction-mass spectrometer (PTR-MS) and a PTR time-of-flight-mass spectrometer (PTR-TOF). In 2008 and during the first half of the vegetation period 2009 the volume mixing ratios (VMRs) for the sum of monoterpenes (MTs) were typically well below 1 ppbv and neither MT emission nor deposition was observed. After a hailstorm in July 2009 an order of magnitude higher amount of terpenes was transported to the site from nearby coniferous forests causing elevated VMRs. As a consequence, deposition fluxes of terpenes to the grassland, which continued over a time period of several weeks without significant reemission, were observed. For days without precipitation the deposition occurred at velocities close to the aerodynamic limit. In addition to monoterpene uptake, deposition fluxes of the sum of sesquiterpenes (SQTs) and the sum of oxygenated terpenes (OTs) were detected. Considering an entire growing season for the grassland (i.e., 1 April to 1 November 2009), the cumulative carbon deposition of monoterpenes reached 276 mg Cm~(-2). This is comparable to the net carbon emission of methanol (329 mg Cm~(-2)), which is the dominant nonmethane volatile organic compound (VOC) emitted from this site, during the same time period. It is suggested that deposition of monoterpenes to terrestrial ecosystems could play a more significant role in the reactive carbon budget than previously assumed.
机译:涡度相关流量测量上面两个后续植被时间温带山地草原的阿尔卑斯山谷使用proton-transfer-reaction-mass谱仪(ms)和PTRtime-of-flight-mass光谱仪(PTR-TOF)。2008年上半年的植被2009的体积混合比率(VMRs)单萜的总和(MTs)通常很好低于1 ppbv既不太排放也沉积被观察到。2009年7月一个数量级的萜烯被送往附近针叶林造成VMRs升高。因此,沉积通量的萜烯草原,它持续的时间几周没有意义再发射,被观察到。沉积发生在速度接近空气动力学限制。吸收、沉积通量的总和倍半萜烯(SQTs)和含氧的总和萜烯(OTs)被检测到。整个生长季节的草地(例如,14月至2009年11月1日)、累积碳单萜沉积达到276毫克厘米~(2)。发射的甲醇(329毫克厘米~(2)),这是占主导地位的nonmethane挥发性有机化合物从这个网站(VOC)排放,在相同的时期。单萜陆地生态系统可以玩一个更重要的角色在反应碳预算比以前认为。

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