Suppr超能文献

气溶胶酸度对生物源前体烃生成二次有机气溶胶的影响。

Influence of aerosol acidity on the formation of secondary organic aerosol from biogenic precursor hydrocarbons.

机构信息

National Exposure Research Laboratory, Human Exposure Atmospheric Sciences Division, United States Environmental Protection Agency, Research Triangle Park, North Carolina 27711, USA.

出版信息

Environ Sci Technol. 2009 Oct 15;43(20):7742-7. doi: 10.1021/es901538e.

Abstract

Secondary organic carbon (SOC) concentrations in steady-state aerosol were measured in a series of alpha-pinene/NOx and one series of beta-caryophyllene/NOx irradiation experiments. The acidity of the inorganic seed aerosol was varied while the hydrocarbon and NOx concentrations were held constant in each series of experiments. Measurements were made for acidity levels and SOC concentrations much closer to ambient levels than had been previously achieved for alpha-pinene, while there are no previous measurements for SOC increases due to acidity for beta-caryophyllene. The observed enhancement in SOC concentration linearly increases with the measured hydrogen ion concentration in air for each system. For the conditions of these studies, SOC increased by 0.04% per nmol H+ m(-3) for alpha-pinene under two conditions where the organic carbon concentration differed by a factor of 5. For alpha-pinene, this level of response to acidic aerosol was a factor of 8 lower than was reported by Surratt et al. for similar series of experiments for SOC from the photooxidation of isoprene/NOx mixtures. By contrast, SOC from beta-caryophyllene showed an increase of 0.22% per nmol H+ m(-3), roughly two-thirds of the response in the isoprene system. Mass fractions for SOC particle-phase tracers for alpha-pinene decreased slightly with increasing aerosol acidity, although remaining within previously stated uncertainties. Below 200 nmol H+ m(-3), the mass fraction of beta-caryophyllenic acid, the only identified tracer for beta-caryophyllene SOC, was constant although beta-caryophyllenic acid showed a substantial decrease for acidities greater than 400 nmol H+ m(-3).

摘要

在一系列 α-蒎烯/NOx 和一系列 β-石竹烯/NOx 辐照实验中,测量了稳态气溶胶中的次生有机碳 (SOC) 浓度。在每个系列实验中,保持烃和 NOx 浓度不变,而改变无机种子气溶胶的酸度。与以前对 α-蒎烯进行的测量相比,测量值更接近环境水平,且 SOC 浓度也更接近环境水平,而对于由于酸度引起的 β-石竹烯 SOC 增加,以前没有测量值。对于每个体系,观察到的 SOC 浓度的增强与空气中测量的氢离子浓度呈线性关系。对于这些研究的条件,α-蒎烯在两种条件下的 SOC 浓度相差 5 倍,SOC 浓度每增加 0.04%/nmol H+ m(-3)。对于 α-蒎烯,这种对酸性气溶胶的响应水平比 Surratt 等人报告的类似系列实验中 SOC 对异戊二烯/NOx 混合物光氧化的响应水平低 8 倍。相比之下,β-石竹烯的 SOC 增加了 0.22%/nmol H+ m(-3),大约是异戊二烯体系的三分之二。α-蒎烯 SOC 颗粒相示踪剂的质量分数随气溶胶酸度的增加略有下降,但仍在之前所述的不确定度范围内。在 200 nmol H+ m(-3)以下,唯一确定的 β-石竹烯 SOC 示踪剂β-石竹烯酸的质量分数保持不变,尽管在酸度大于 400 nmol H+ m(-3)时,β-石竹烯酸的含量显著下降。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验