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土耳其博卢市冬季粗颗粒物和细颗粒物的化学成分。

Wintertime chemical compositions of coarse and fine fractions of particulate matter in Bolu, Turkey.

机构信息

Department of Environmental Engineering, Faculty of Engineering and Architecture, Abant Izzet Baysal University, Golkoy Campus, 14280, Bolu, Turkey.

出版信息

Environ Sci Pollut Res Int. 2016 Jul;23(14):14157-72. doi: 10.1007/s11356-016-6584-6. Epub 2016 Apr 6.

Abstract

Coarse (particulate matter (PM)2.5-10) and fine (PM2.5) fraction of PM samples were collected between December 2014 and February 2015 at an urban sampling site located at the Bolu plain, of the western Black Sea region of Turkey. The collected samples were analyzed in terms of metals (Al, As, Ba, Ca, Cu, Fe, K, Mg, Mn, Na, Pb, S, Si, Ti, V, and Zn); elemental carbon (EC); and organic carbon (OC). Elevated concentrations measured in this wintertime study were ∼7.8 μg/m(3) in sum of PM2.5-10 and PM2.5 for SO4 (2-) and ∼59.9 μg/m(3) in PM2.5 for OC. The contributions of primary and secondary OC (POC and SOC, respectively) to total OC mass were 60 and 40 %, respectively, while contribution of SOC to OC increased by up to 74 % in stable atmospheric conditions. The significantly high OC/EC ratio (∼10.1) found in this study relative to other wintertime studies was attributed to increased emissions from residential heating and lower mixing height observed during the study. Two and three factors were resolved by factor analysis for PM2.5-10 and PM2.5, respectively. Two Saharan dust episodes were observed on 31 January and 1 February, during which crustal PM components such as Mg, Si, and Al increased as much as three times their background concentrations.

摘要

2014 年 12 月至 2015 年 2 月期间,在土耳其西部黑海地区博卢平原的一个城市采样点采集了 PM 样品的粗(颗粒物(PM)2.5-10)和细(PM2.5)部分。采集的样品就金属(Al、As、Ba、Ca、Cu、Fe、K、Mg、Mn、Na、Pb、S、Si、Ti、V 和 Zn);元素碳(EC);和有机碳(OC)进行了分析。在这项冬季研究中,测量到的浓度较高,SO4(2-)的 PM2.5-10 和 PM2.5 总和约为 7.8μg/m(3),OC 的 PM2.5 约为 59.9μg/m(3)。POC 和 SOC 分别为总 OC 质量的 60%和 40%,而 SOC 对 OC 的贡献在稳定大气条件下增加了 74%。与其他冬季研究相比,本研究中 OC/EC 比值(约为 10.1)明显较高,这归因于研究期间观察到的住宅供暖排放量增加和混合层高度降低。因子分析分别解析了 PM2.5-10 和 PM2.5 的两个和三个因素。1 月 31 日和 2 月 1 日观察到了两次撒哈拉风尘事件,在此期间,地壳 PM 成分如 Mg、Si 和 Al 的浓度增加了三倍,达到其背景浓度。

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