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Chemical and physical observations of particulate matter at Golden Ears Provincial Park from anthropogenic and biogenic sources

机译:来自人为和生物来源的金耳朵省立公园颗粒物的化学和物理观测

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Measurements of a number of aerosol properties and trace gases were conducted at Golden Ears Provincial Park (GE park), near the town of Maple Ridge, B.C., Canada from 6th to 11th of August 2001, just prior to the beginning of the main Pacific 2001 study. The measurements were intended to help with the characterization of the particulate matter (PM) in the forest that borders the northern side of the Lower Fraser Valley (LFV). The concentrations of inorganic ions in the particles decreased after 8th August, while the organic mass concentrations in the particles increased after 8th August. Throughout the study, organic carbon (OC) was the single highest component of the aerosol, and after 8th August, OC comprised about 90% of the particle composition. During the daytime, there was a clear anthropogenic influence from upslope flow driven by the sea breeze. The mixing ratio of monoterpenes increased overnight, when the winds were from the forests to the north but the cis-pinonic acid increased during the day, along with the anthropogenic tracers, suggesting that the oxidation of monoterpenes occurred with the help of anthropogenic oxidants. The particle volume data showed increases often corresponding with decreases in monoterpenes. A steady increase in particle volumes resulted from condensation of OC on the particles, and despite an increase in water soluble organic carbon (WSOC) the effectiveness of the OC at absorbing water for relative humidity (RH) values less than or equal to90% was low relative to sulphate. (C) 2004 Elsevier Ltd. All rights reserved.
机译:2001年8月6日至11日,在2001年主要太平洋开始之前,在加拿大不列颠哥伦比亚省Maple Ridge镇附近的金耳省立公园(GE park)进行了许多气溶胶特性和微量气体的测量。研究。这些测量旨在帮助表征与下弗雷泽河谷(LFV)北侧接壤的森林中的颗粒物(PM)。 8月8日之后颗粒中无机离子的浓度降低,而8月8日之后颗粒中有机质的浓度增加。在整个研究过程中,有机碳(OC)是气溶胶中含量最高的成分,并且在8月8日之后,OC约占颗粒组成的90%。白天,海风带动的上坡流动对人为产生了明显影响。当风从森林吹到北方时,单萜类的混合比增加一夜,但白天的顺式松香酸以及人为示踪剂增加,这表明单萜类的氧化是在人为氧化剂的帮助下发生的。颗粒体积数据显示增加通常与单萜减少有关。 OC在颗粒上的凝结导致颗粒体积稳定增加,尽管水溶性有机碳(WSOC)增加,但OC在相对湿度(RH)值小于或等于90%时吸收水的有效性仍然很低相对于硫酸盐。 (C)2004 Elsevier Ltd.保留所有权利。

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