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Field observations of volatile organic compound (VOC) exchange in red oaks

机译:挥发性有机化合物(VOC)交换在红橡树中的田间观察

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Volatile organic compounds (VOCs) emitted by forests strongly affect the chemical composition of the atmosphere. While the emission of isoprenoids has been largely characterized, forests also exchange many oxygenated VOCs (oVOCs), including methanol, acetone, methyl ethyl ketone (MEK), and acetaldehyde, which are less well understood. We monitored total branch-level exchange of VOCs of a strong isoprene emitter (Quercus rubra L.) in a mixed forest in New England, where canopy-level fluxes of VOCs had been previously measured. We report daily exchange of several oVOCs and investigated unknown sources and sinks, finding several novel insights. In particular, we found that emission of MEK is linked to uptake of methyl vinyl ketone (MVK), a product of isoprene oxidation. The link was confirmed by corollary experiments proving in vivo detoxification of MVK, which is harmful to plants. Comparison of MEK, MVK, and isoprene fluxes provided an indirect indication of within-plant isoprene oxidation. Furthermore, besides confirming bidirectional exchange of acetaldehyde, we also report for the first time direct evidence of benzaldehyde bidirectional exchange in forest plants. Net emission or deposition of benzaldehyde was found in different periods of measurements, indicating an unknown foliar sink that may influence atmospheric concentrations. Other VOCs, including methanol, acetone, and monoterpenes, showed clear daily emission trends but no deposition. Measured VOC emission and deposition rates were generally consistent with their ecosystem-scale flux measurements at a nearby site.
机译:森林发出的挥发性有机化合物(VOC)强烈影响大气的化学成分。虽然异戊二烯的排放已经很大程度上是表征,但森林也交换了许多含氧VOC(OVOCS),包括甲醇,丙酮,甲基乙基酮(MEK)和乙醛,其较小地理解。我们在新英格兰的混合森林中监测了强大的异戊二烯发射器(Quercus Rubra L.)的VOC的总分支级别交换,其中先前已经测量过VOC的冠层水平助量。我们报告了每日交换几个Ovocs并调查了未知来源和汇,找到了几个新颖的见解。特别是,我们发现MEK的发射与甲基乙烯基酮(MVK)的摄取,异戊二烯氧化产物有关。该链接是通过规定的规​​定,在MVK的体内解毒,这对植物有害。 MEK,MVK和异戊二烯通量的比较提供了植物内异戊二烯氧化的间接指示。此外,除了确认丙醛的双向交换外,还向林植物中的苯甲醛双向交换的第一次直接证据报告。在不同的测量期间发现苯甲醛的净排放或沉积,表明可能影响大气浓度的未知叶面沉降。其他VOC,包括甲醇,丙酮和单萜,表现出明确的每日排放趋势,但没有沉积。测量的VOC发射和沉积率通常与附近部位的其生态系统级磁通测量一致。

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