Measuring Biogenic Volatile Organic Compounds from Leaves Exposed to Submicron Black Carbon Using Portable Sensor

Qingyang Liu, Yanju Liu
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Abstract

Biogenic volatile organic compounds (BVOCs) are responsible for the formation of ozone and secondary organic aerosols (SOAs). Our knowledge about how black carbon particles influence BVOC emissions from terrestrial ecosystems is limited; terrestrial vegetation captures black carbon particles as a sink. In this research, the BVOC emissions from the leaves of four terrestrial plants were measured using an RAE PGM-7300 BVOC analyzer. Then, the leaves from four types of trees were exposed to submicron carbon black for 24 h and 48 h in an ambient environment, respectively. Comparisons between the BVOC emissions before and after exposure to submicron carbon black were performed. Our results indicated that the emissions of BVOC from the leaves of four types of trees varied from 90 to 270 μg g−1 h−1 and depended on the species. The exposure to submicron black carbon particles had negligible impacts on the BVOC emissions from the leaves of four types of trees.
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使用便携式传感器测量暴露于亚微米黑碳的叶片中的生物挥发性有机化合物
生物挥发性有机化合物(BVOC)是形成臭氧和二次有机气溶胶(SOAs)的元凶。我们对黑碳颗粒如何影响陆地生态系统的生物挥发性有机化合物排放的了解十分有限;陆地植被是捕获黑碳颗粒的汇。本研究使用 RAE PGM-7300 BVOC 分析仪测量了四种陆生植物叶片的 BVOC 排放量。然后,四种树木的叶子分别在环境中暴露于亚微米碳黑 24 小时和 48 小时。比较亚微米碳黑暴露前后的 BVOC 排放量。结果表明,四种树木叶片的 BVOC 排放量从 90 到 270 μg g-1 h-1 不等,并取决于树种。暴露于亚微米黑碳颗粒对四种树木叶片的 BVOC 排放影响微乎其微。
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