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Diurnal variations and vertical gradients of biogenic volatile and semi-volatile organic compounds at the Tomakomai larch forest station in Japan

机译:日本the小牧落叶松林站生物源性挥发性和半挥发性有机化合物的日变化和垂直梯度

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摘要

Volatile and semi-volatile organic compounds (VOCs and SVOCs) in the atmosphere control oxidative capacity of the air and formation of organic aerosols. To investigate sources, variations and fluxes of VOCs and SVOCs in the forest atmosphere, samples were collected in a larch forest at different heights in Tomakomai, Japan, from 3 to 5 September 2003 and were analyzed for VOCs (isoprene and α-pinene) and SVOCs (n-nonanal, n-decanal, glycolaldehyde, hydroxyacetone, glyoxal and methylglyoxal) using GC-FID and GC-MS. Isoprene (8–851 pptv) showed a diurnal variation with a maximum in daytime, whereas diurnal pattern was indistinct for α-pinene (6–145 pptv). SVOCs showed diurnal variations similar to isoprene, suggesting their origin to be biogenic. Denuder samplings of SVOCs demonstrated that up to 60% of SVOCs were present in aerosol particles. n-Nonanal and n-decanal were more abundant at lower altitude, suggesting their primary emissions from vegetations. In contrast, other four SVOCs showed an opposite or no trend and are considered as oxidation products of biogenic precursors such as isoprene. The averaged upward fluxes of isoprene and α-pinene were obtained to be 34.8 and 9.8 ng m-2 s-1, respectively. Magnitudes of SVOC fluxes were comparable to those of α-pinene, indicating that SVOCs affect budgets of organic gases/aerosols over the forest.
机译:大气中的挥发性和半挥发性有机化合物(VOC和SVOC)控制着空气的氧化能力和有机气溶胶的形成。为了调查森林大气中VOC和SVOC的来源,变化和通量,于2003年9月3日至5日在日本Tom小牧市不同高度的落叶松林中采集了样品,并分析了VOC(异戊二烯和α-pine烯)和使用GC-FID和GC-MS的SVOC(正壬醛,正癸醛,乙醇醛,羟丙酮,乙二醛和甲基乙二醛)。异戊二烯(8–851 pptv)日间变化最大,白天昼夜变化较大,而α-pine烯(6–145 pptv)日间变化不明显。 SVOCs的日变化与异戊二烯相似,表明其起源是生物成因的。 SVOC的Denuder采样表明,气溶胶颗粒中最多存在60%的SVOC。在较低高度,正壬醛和正癸醛含量较高,表明它们的主要排放源是植被。相反,其他四种SVOC则显示相反或没有趋势,被认为是生物前体(例如异戊二烯)的氧化产物。异戊二烯和α-pine烯的平均向上通量分别为34.8和9.8 ng m-2 s-1。 SVOC通量的大小与α-pine烯相当,表明SVOCs影响森林中有机气体/气溶胶的预算。

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