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A survey of California plant species with a portable VOC analyzer for biogenic emission inventory development

机译:使用便携式VOC分析仪对加利福尼亚植物物种进行调查,以开发生物排放清单

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An accurate estimate of the magnitude of biogenic volatile organic compound (BVOC) emissions in California's airsheds is critical for formulating effective strategies to reduce concentrations of fine particles, ozone, and other secondary air pollutants which affect human health and reduce yields of agricultural crops. However, California's natural and urban landscapes contain more than 6000 species, and the BVOC emissions from only a small fraction of these species have been characterized by quantitative measurements. A taxonomic method has been proposed to assign BVOC emission rate measurements to unmeasured species, but data are needed for additional plant families and genera to further develop and test this taxonomic approach. In the present study, BVOC emissions from more than 250 plant species were measured through a semi-quantitative method employing calibrated portable analyzers with photoionization detectors (PID). Replicate samples of live foliage were placed in plastic bags, in both light and darkened conditions, and the BVOC emissions categorized as low, medium or high. To validate our approach, for 63 plant species we compared our PID-measured BVOC emissions with published values, based on gas chromatography (GC) or GC-mass spectrometry, and found them to be well correlated. The method employed was more suited for detecting compounds with relatively higher emission rates, such as isoprene, than compounds with low emission rates, which could include monoterpenes and oxygenated compounds. For approximately 200 plant species not previously measured, the results provide further evidence that plant taxonomy can serve as a useful guide for generalizing the emissions behavior of many, but not all, plant families and genera.
机译:准确估算加利福尼亚流域中生物挥发性有机化合物(BVOC)的排放量,对于制定有效策略以降低影响人类健康并降低农作物产量的细颗粒,臭氧和其他二次空气污染物的浓度至关重要。但是,加利福尼亚的自然和城市景观包含6000多种物种,这些物种中只有一小部分的BVOC排放已通过定量测量进行了表征。已经提出了一种分类学方法来将BVOC排放速率测量值分配给未测物种,但是还需要其他植物科和属的数据来进一步开发和测试这种分类学方法。在本研究中,通过半定量方法,使用带有光电离检测器(PID)的经过校准的便携式分析仪,对来自250多种植物的BVOC排放进行了测量。在明亮和黑暗的条件下,将活树叶的复制样品放在塑料袋中,并将BVOC排放分类为低,中或高。为了验证我们的方法,对于63种植物,我们根据气相色谱(GC)或GC-质谱法将PID测量的BVOC排放与公开值进行了比较,发现它们之间具有很好的相关性。与低发射率的化合物(包括单萜和含氧化合物)相比,所采用的方法更适合于检测较高发射率的化合物(例如异戊二烯)。对于之前未测量的大约200种植物物种,结果提供了进一步的证据,表明植物分类学可以作为推广许多(但不是全部)植物科和属的排放行为的有用指南。

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