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Dynamics and mechanisms of volatile organic compound exchanges in a winter wheat field

机译:冬小麦田中挥发性有机化合物交换的动力学和机理

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摘要

The understanding of biogenic volatile organic compound (BVOC) exchanges has become a key scientific issue because of their high reactivity and their impact in the atmosphere. However, so far, few studies have focused on BVOCs exchanged by agricultural species, and in particular by winter wheat, despite this species being the leading worldwide crop in terms of harvested area. This study for the first time investigated BVOC exchanges from winter wheat during most developmental stages of the plant. Fluxes were measured in Belgium at the ecosystem-scale using the disjunct eddy covariance by mass scanning technique, and a proton-transfer-reaction mass spectrometer for BVOC ambient mixing ratio measurements. As is usually observed for crops and grasses, the winter wheat field emitted mainly methanol, although bi-directional exchanges were observed. The second most exchanged compound was acetic acid which was captured during the entire growing season. Bi-directional exchanges of acetaldehyde and acetone were also reported. Terpene exchanges were 22 times smaller than oxygenated VOC (OVOC) exchanges. For all compounds, the exchanges were the most pronounced at the end of the growing season, i.e., under warm, dry and sunny conditions. Senescence-induced emissions were furthermore observed for methanol and acetaldehyde. For all investigated OVOCs, the exchanges very likely originated from both the soil and the plants. Despite their mixed origin, the MEGAN (Model of Emissions of Gases and Aerosols from Nature) v2.1 up-scaling model could adequately reproduce the methanol, acetaldehyde and acetone exchanges measured at this site during the mature and senescence phases of the plant, when the standard emission factor and the leaf age factor were adapted based on the measurements. In contrast, the model failed to reproduce the measured acetic acid exchanges. When the standard emission factor values currently assigned in MEGAN were applied, however, the exchanges were largely over-estimated for all compounds.
机译:由于对生物挥发性有机化合物(BVOC)的高反应性及其对大气的影响,因此对它们的了解已成为一个关键的科学问题。然而,到目前为止,尽管按收割面积计该品种已成为全球领先的农作物,但很少有研究集中在以农业品种,尤其是冬小麦交换的BVOC上。这项研究首次调查了植物大部分发育阶段冬小麦的BVOC交换。在比利时,使用通量扫描技术通过分离涡动协方差和质子转移反应质谱仪在比利时生态系统规模上测量通量,以测量BVOC环境混合比。通常观察到的农作物和草,冬小麦田主要排放甲醇,尽管观察到双向交换。交换次数第二多的化合物是乙酸,在整个生长季节都被捕获。还报道了乙醛和丙酮的双向交换。萜烯交换比氧化VOC(OVOC)交换小22倍。对于所有化合物,在生长期结束时,即在温暖,干燥和阳光充足的条件下,交换最为明显。此外,观察到甲醇和乙醛的衰老诱导的排放。对于所有调查的OVOC,交换极有可能来自土壤和植物。尽管起源不同,但MEGAN(自然界的气体和气溶胶排放模型)v2.1放大模型可以充分再现在植物成熟和衰老阶段在该位置测得的甲醇,乙醛和丙酮交换。根据测量结果调整标准排放因子和叶龄因子。相反,该模型无法重现测得的乙酸交换量。但是,当应用MEGAN中当前分配的标准排放因子值时,所有化合物的交换量都被高估了。

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  • 来源
    《Atmospheric environment》 |2020年第1期|117105.1-117105.16|共16页
  • 作者

  • 作者单位

    Univ Liege Gembloux Agrobio Tech TERRA Teaching & Res Ctr Passage Deportes 2 B-5030 Gembloux Belgium;

    Royal Belgian Inst Space Aeron Ringlaan 3 B-1180 Brussels Belgium|Univ Ghent Dept Analyt Chem Krijgslaan 281-S12 B-9000 Ghent Belgium;

    Royal Belgian Inst Space Aeron Ringlaan 3 B-1180 Brussels Belgium;

    Univ Liege Gembloux Agrobio Tech TERRA Teaching & Res Ctr Passage Deportes 2 B-5030 Gembloux Belgium|Royal Belgian Inst Space Aeron Ringlaan 3 B-1180 Brussels Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    BVOC; Winter wheat; Eddy covariance; Methanol; Crop; MEGAN v2.1 model;

    机译:BVOC;冬小麦;涡度协方差甲醇;作物;MEGAN v2.1模型;

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