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The Tree Drought Emission MONitor (Tree DEMON), an innovative system for assessing biogenic volatile organic compounds emission from plants

机译:树木干旱排放监测仪(Tree DEMON),一种用于评估植物中生物源性挥发性有机化合物排放的创新系统

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BackgroundBiogenic volatile organic compounds (BVOC) emitted by plants play an important role for ecological and physiological processes, for example as response to stressors. These emitted compounds are involved in chemical processes within the atmosphere and contribute to the formation of aerosols and ozone. Direct measurement of BVOC emissions requires a specialized sample system in order to obtain repeatable and comparable results. These systems need to be constructed carefully since BVOC measurements may be disturbed by several side effects, e.g., due to wrong material selection and lacking system stability. ResultsIn order to assess BVOC emission rates, a four plant chamber system was constructed, implemented and throughout evaluated by synthetic tests and in two case studies on 3-year-old sweet chestnut seedlings. Synthetic system test showed a stable sampling with good repeatability and low memory effects. The first case study demonstrated the capability of the system to screen multiple trees within a few days and revealed three different emission patterns of sweet chestnut trees. The second case study comprised an application of drought stress on two seedlings compared to two in parallel assessed seedlings of a control. Here, a clear reduction of BVOC emissions during drought stress was observed. ConclusionThe developed system allows assessing BVOC as well as CO2 and water vapor gas exchange of four tree specimens automatically and in parallel with repeatable results. A canopy volume of 30?l can be investigated, which constitutes in case of tree seedlings the whole canopy. Longer lasting experiments of e.g., 1–3?weeks can be performed easily without any significant plant interference.
机译:背景技术植物排放的生物挥发性有机化合物(BVOC)在生态和生理过程中起着重要作用,例如对胁迫的响应。这些排放的化合物参与大气中的化学过程,并有助于形成气溶胶和臭氧。 BVOC排放的直接测量需要专门的采样系统,以便获得可重复和可比较的结果。这些系统需要仔细构建,因为BVOC测量可能会受到多种副作用的干扰,例如,由于错误的材料选择和缺乏系统稳定性。结果为了评估BVOC排放率,构建,实施了四个植物室系统,并通过综合测试以及在两个3岁的欧洲栗木幼苗的案例研究中对其进行了全面评估。合成系统测试表明,采样稳定,重复性好,记忆效应低。第一个案例研究证明了该系统在几天内筛选多棵树木的能力,并揭示了甜栗树的三种不同排放模式。第二个案例研究包括将干旱胁迫施加在两棵幼苗上,而对照中平行评估的是两棵。在这里,观察到干旱胁迫期间BVOC排放量明显减少。结论所开发的系统可以自动评估四棵树标本的BVOC以及CO 2 和水蒸气交换,并具有可重复的结果。可以调查到30?l的树冠体积,这在树苗的情况下构成了整个树冠。可以轻松进行更长的持续实验,例如1-3周,而不会受到任何明显的植物干扰。

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