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Atmospheric benzenoid emissions from plants rival those from fossil fuels

机译:植物在大气中的苯类化合物排放量与化石燃料中的排放量相当

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摘要

Despite the known biochemical production of a range of aromatic compounds by plants and the presence of benzenoids in floral scents, the emissions of only a few benzenoid compounds have been reported from the biosphere to the atmosphere. Here, using evidence from measurements at aircraft, ecosystem, tree, branch and leaf scales, with complementary isotopic labeling experiments, we show that vegetation (leaves, flowers, and phytoplankton) emits a wide variety of benzenoid compounds to the atmosphere at substantial rates. Controlled environment experiments show that plants are able to alter their metabolism to produce and release many benzenoids under stress conditions. The functions of these compounds remain unclear but may be related to chemical communication and protection against stress. We estimate the total global secondary organic aerosol potential from biogenic benzenoids to be similar to that from anthropogenic benzenoids (~10 Tg y−1), pointing to the importance of these natural emissions in atmospheric physics and chemistry.
机译:尽管已知由植物生化一系列芳香族化合物的生物化学方法,并且在花香中存在苯环类化合​​物,但据报道只有少量的苯环类化合​​物从生物圈向大气排放。在这里,利用飞机,生态系统,树木,树枝和树叶规模的测量证据,以及互补的同位素标记实验,我们证明了植被(叶子,花朵和浮游植物)向大气中释放出各种各样的苯类化合物。受控环境实验表明,植物能够在压力条件下改变其新陈代谢,从而产生并释放出许多本烯。这些化合物的功能尚不清楚,但可能与化学交流和抗压力保护有关。我们估计,生物成因类生物素的总的全球次级有机气溶胶潜力与人为成体类生物素的总二次有机气溶胶潜力相似(〜10 Tg y -1 ),指出了这些自然排放物在大气物理学和化学中的重要性。

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