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Qualitative and quantitative characterization of volatile organic compound emissions from cut grass

机译:从草屑挥发性有机化合物排放量的定性和定量表征

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摘要

Mechanical wounding of plants triggers the release of a blend of reactive biogenic volatile organic compounds (BVOCs). During and after mowing and harvesting of managed grasslands, significant BVOC emissions have the potential to alter the physical and chemical properties of the atmosphere and lead to ozone and aerosol formation with consequences for regional air quality. We show that the amount and composition of BVOCs emitted per unit dry weight of plant material is comparable between laboratory enclosure measurements of artificially severed grassland plant species and in situ ecosystem-scale flux measurements above a temperate mountain grassland during and after periodic mowing and harvesting. The investigated grassland ecosystem emitted annually up to 130 mg carbon m−2 in response to cutting and drying, the largest part being consistently represented by methanol and a blend of green leaf volatiles (GLV). In addition, we report the plant species-specific emission of furfural, terpenoid-like compounds (e.g. camphor), and sesquiterpenes from cut plant material, which may be used as tracers for the presence of given plant species in the ecosystem.
机译:植物的机械伤口触发反应性生物挥发性有机化合物(BVOC)的混合物的释放。在割草和收获管理草原期间,显着的BVOC排放有可能改变大气的物理和化学性质,并导致臭氧和气溶胶形成,具有对区域空气质量的后果。我们表明,每单位干重的植物材料发出的BVOC的数量和组成是在人工切断的草地植物物种的实验室外壳测量和在周期性割草期间和收获之后的温带山地草地上方的原位生态系统级磁通测量。调查的草原生态系统每年每次发出至130mg碳M -2 -2 -2 ,响应于切割和干燥,最大的部分由甲醇和绿叶挥发物(GLV)的混合物始终如一。此外,我们报告植物物种特异性排放的糠醛,三萜类化合物(例如樟脑)和来自切割植物材料的塞基萜烯,其可用作生态系统中给予植物种类的示踪剂。

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