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首页> 外文期刊>Atmospheric chemistry and physics >Day-time concentrations of biogenic volatile organic compounds in a boreal forest canopy and their relation to environmental and biological factors
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Day-time concentrations of biogenic volatile organic compounds in a boreal forest canopy and their relation to environmental and biological factors

机译:北方森林冠层中生物挥发性有机化合物的日间浓度及其与环境和生物因素的关系

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Atmospheric concentrations of methanol, acetaldehyde, acetone, isoprene and monoterpenes were measured using PTR-MS (proton transfer reaction mass spectrometry) in a boreal forest site in Hyyti?l?, Finland (61°51'N, 24° 17'E). The concentration measurements were made in the upper canopy of a Scots pine forest during 6 June, 2006-31 August, 2007. Meteorological variables such as temperature and photosynthetically active radiation were measured simultaneously. We also detected biologically sensitive turnover points such as the onsets of photosynthetic activity, onset of growing season, bud burst and stem growth during the annual cycle and compared them to changes in BVOC (biogenic volatile organic compound) concentrations. A typical seasonal pattern of winter minimum and summer maximum was found for all studied compounds except acetaldehyde. Spring time methanol and acetone concentrations increased together with photosynthetic capacity. The day-time daily median BVOC concentrations correlated best with air temperature. The intercorrelations between compounds and the analysis of meteorological conditions indicated that the measured concentrations presented well the local source. During an exceptional summer drought period the concentrations were neither connected with photosynthesis nor transpiration, but they were regulated by some other, yet unknown factors.
机译:使用PTR-MS(质子转移反应质谱法)在芬兰Hyyti?l?的北方森林地带(61°51'N,24°17'E)测量甲醇,乙醛,丙酮,异戊二烯和单萜的大气浓度。在2006年6月6日至2007年8月31日之间,在苏格兰松林的上部冠层进行了浓度测量。同时测量了气象变量,例如温度和光合有效辐射。我们还检测了生物敏感的转换点,例如光合活性的发作,生长期的发作,芽的萌芽和茎的生长,并将它们与BVOC(生物挥发性有机化合物)浓度的变化进行了比较。对于所有研究的化合物(乙醛除外),均发现了冬季最小和夏季最大的典型季节性模式。春季甲醇和丙酮的浓度随光合能力的增加而增加。日间每日BVOC浓度与气温之间的相关性最好。化合物之间的相互关系和气象条件的分析表明,所测浓度很好地反映了当地来源。在异常的夏季干旱时期,其浓度与光合作用和蒸腾作用均无关,但它们受到其他一些未知因素的调节。

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