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首页> 外文期刊>Journal of environmental monitoring: JEM >Characteristics of black carbon aerosol mass concentration over the East Baltic region from two-year measurements
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Characteristics of black carbon aerosol mass concentration over the East Baltic region from two-year measurements

机译:通过两年的测量,东波罗的海地区的黑碳气溶胶质量浓度特征

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摘要

Continuous measurements of black carbon (BC) aerosol mass concentration were performed at a background site Preila (55°55′N, 21°00′E, 5 m a.s.l., Lithuania) during the period 2008-2009. The data were used to characterize the BC mass concentration distribution over the East Baltic region. High increase in aerosol BC concentration was associated with the change in air mass characteristics and biomass burning during the winter heating season and spring wildfires. Monthly means of BC concentration ranged from 212 to 1268 ng m~(-3) and the highest hourly means of concentration were from 4800 to 6300 ng m~(-3), predominantly in spring and winter months. During the October-April period the BC mass concentrations were about twice as high as those in the summertime. The BC diurnal pattern in winter was typically different from that in spring indicating the seasonal variation of the atmospheric boundary layer height. The weekday/weekend difference was not strongly pronounced because the BC concentrations in Preila are mainly affected by long-range transport or local sources. Typical periodicities caused by anthropogenic and meteorological influences have been identified using Fourier analysis. It was shown that domestic heating appears as a 365 day periodicity; traffic slightly contributes 5-7 day peaks in the spectrum and elevated long-range BC can be identified as characteristic peaks with periodicities in the range from 16 to 29 days. Temporal evolution and transport of BC aerosols were interpreted by the air mass backward trajectory analysis in conjunction with the examination of the wavelength dependence on the aethalometer data. Air masses originated from the North Atlantic Ocean and Scandinavia were favourable for lower BC concentrations (350 ng m~(-3)), while the BC level associated with the Western Europe airflows was significantly higher (970 ng m~(-3)). The mean values of ?ngstr?m exponent of the absorption coefficient (monthly means 1.45 ± 0.25 and 0.84 ± 0.50 over January and June, respectively) revealed that the BC concentration observed over the East Baltic is influenced by submicron sized particles as a result of incomplete biomass combustion during the winter season.
机译:在2008-2009年期间,在背景站点Preila(立陶宛55°55'N,21°00'E,5 m a.s.l.,立陶宛)进行了黑碳(BC)气溶胶质量浓度的连续测量。数据用于表征东波罗的海地区的BC质量浓度分布。气溶胶BC浓度的高增加与冬季供暖季节和春季野火期间空气质量特征和生物质燃烧的变化有关。 BC的每月平均浓度范围为212至1268 ng m〜(-3),最高的每小时浓度平均值为4800至6300 ng m〜(-3),主要集中在春季和冬季。在十月至四月期间,BC的质量浓度约为夏季的两倍。冬季的BC昼夜模式通常与春季不同,表明大气边界层高度的季节性变化。平日/周末的差异并不明显,因为普雷拉州的卑诗省浓度主要受远距离运输或当地资源的影响。使用傅立叶分析已经确定了由人为和气象影响引起的典型周期性。结果表明,家庭取暖周期为365天。流量在频谱中略有贡献5-7天的峰值,而远程BC的升高可以识别为特征峰,其周期性在16到29天之间。 BC气溶胶的时间演变和运输通过空气质量向后轨迹分析以及对依赖于湿度计数据的波长依赖性的检查来解释。来自北大西洋和斯堪的那维亚的气团有利于降低BC浓度(350 ng m〜(-3)),而与西欧气流相关的BC水平则明显更高(970 ng m〜(-3))。 。吸收系数的fngstr?m指数平均值(分别表示1月和6月的月平均值为1.45±0.25和0.84±0.50)表明,东波罗的海地区观测到的BC浓度受到亚微米尺寸颗粒的影响,这是由于冬季生物质燃烧不完全。

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