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萜烯成分复杂度控制着来自苏格兰松树挥发性排放的二次有机气溶胶产量。

Terpene Composition Complexity Controls Secondary Organic Aerosol Yields from Scots Pine Volatile Emissions.

机构信息

Department of Applied Physics, University of Eastern Finland, P.O. Box 1626, 70211, Kuopio, Finland.

Department of Ecology and Evolutionary Biology, University of California Irvine, Irvine, CA, 92697-2525, United States.

出版信息

Sci Rep. 2018 Feb 14;8(1):3053. doi: 10.1038/s41598-018-21045-1.

Abstract

Secondary organic aerosol (SOA) impact climate by scattering and absorbing radiation and contributing to cloud formation. SOA models are based on studies of simplified chemical systems that do not account for the chemical complexity in the atmosphere. This study investigated SOA formation from a mixture of real Scots pine (Pinus sylvestris) emissions including a variety of monoterpenes and sesquiterpenes. SOA generation was characterized from different combinations of volatile compounds as the plant emissions were altered with an herbivore stress treatment. During active herbivore feeding, monoterpene and sesquiterpene emissions increased, but SOA mass yields decreased after accounting for absorption effects. SOA mass yields were controlled by sesquiterpene emissions in healthy plants. In contrast, SOA mass yields from stressed plant emissions were controlled by the specific blend of monoterpene emissions. Conservative estimates using a box model approach showed a 1.5- to 2.3-fold aerosol enhancement when the terpene complexity was taken into account. This enhancement was relative to the commonly used model monoterpene, "α-pinene". These results suggest that simplifying terpene complexity in SOA models could lead to underpredictions in aerosol mass loading.

摘要

次生有机气溶胶(SOA)通过散射和吸收辐射以及促进云的形成来影响气候。SOA 模型基于简化化学系统的研究,这些系统没有考虑到大气中的化学复杂性。本研究调查了来自真实苏格兰松(Pinus sylvestris)排放物的混合物的 SOA 形成,其中包括各种单萜和倍半萜。随着植物排放物受到食草动物应激处理的改变,研究了不同挥发性化合物组合的 SOA 生成特性。在食草动物活跃进食期间,单萜和倍半萜的排放增加,但在考虑吸收效应后,SOA 质量产率下降。在健康植物中,SOA 质量产率受倍半萜排放控制。相比之下,受胁迫植物排放物的 SOA 质量产率受特定的单萜排放混合物控制。使用箱式模型方法进行的保守估计表明,当考虑萜烯复杂性时,气溶胶增强幅度为 1.5 至 2.3 倍。这种增强与常用的模型单萜,“α-蒎烯”相对。这些结果表明,简化 SOA 模型中的萜烯复杂性可能导致气溶胶质量负荷的低估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdfc/5813208/ae5acb8d91ef/41598_2018_21045_Fig1_HTML.jpg

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