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Vertical characteristics of black carbon physical properties over Beijing region in warm and cold seasons

机译:北京地区冷暖季节黑碳物理性质的垂直特征

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摘要

The physical properties of black carbon (BC) including the mass loading, size distribution and mixing state were in-situ characterized by aircraft measurements using a single particle soot photometer (SP2) in the lower troposphere over Beijing area. The flights were conducted in both late spring and winter during the daytime with well-developed planetary boundary layer (PBL). The BC mass in the PBL (BCPBL) in late spring showed no apparent vertical gradient nor correlation with the PBL height (PBLH) due to strong convective mixing; in winter the BCPBL, was more concentrated near ground and anti-correlated with the PBLH due to dilution effect of the dominant cleaner northerly air masses at higher altitude. The BC mass loading at height h, C(h) within the PBL can be extended from the surface level (C0) in late spring; for levels above the PBL, C(h) can be parameterized by applying an exponential decline function C(h) = C0*exp(h/hs), with the scale height (hs) of 0.31 +/- 0.16 km and 0.66 +/- 0.24 km for late spring and winter respectively. This parameterization excluded the profiles for: turbulent conditions when the BC mass was efficiently vented upwards and diluted, expressed as C(h) = C0 up to the top of the PBL; or in periods of strong southerly advection, when the entire column was significantly influenced by regional transport from the polluted south regions. The BC core mass median diameters (MMD) were commonly populated at 205-220 nm in both seasons, with additional mode of MMD similar to 195 nm also frequently observed in late spring. The bulk relative coating thickness of BC (coated diameter divided by uncoated core diameter (D-p/D-c) in the PBL mostly populated at 2.0-2.2 but at similar to 1.2-1.6 in the lower free troposphere (FT). The mass absorption cross section of BC at 550 nm (MAC(550)), constrained by the SP2 measurements, was largely influenced by the coating thickness, was relatively consistent in the PBL at similar to 8.6 m(2) g(-1), but reduced to 7-7.5 m(2 )g(-1) in the FT or turbulent condition due to decreased coatings. The BC was found to exhibit smaller particle size in the FT but larger in the PBL, which may imply larger BC have been scavenged by low-level clouds. The BC particles trapped in the PBL or regionally transported from polluted region represent the most absorbing element in the particulate matter population and should be particularly considered in evaluating the radiative forcing impact of aerosols over this region.
机译:在北京地区对流层低层,使用单粒子碳烟光度计(SP2)通过飞机测量,对黑碳(BC)的物理性质进行了现场表征,包括质量负载,尺寸分布和混合状态。飞行在白天和春季晚些时候进行,白天有发达的行星边界层(PBL)。由于强对流混合,晚春PBL(BCPBL)中的BC质量没有显示出明显的垂直梯度,也没有与PBL H(PBLH)相关。在冬季,由于主要的较清洁的北气团在较高海拔的稀释作用,BCPBL更加集中在地面附近并且与PBLH不相关。 PBL内高度为h,C(h)时的BC质量载荷可以在春季末从表面高度(C0)扩展;对于高于PBL的水平,可以通过应用指数下降函数C(h)= C0 * exp(h / hs)来参数化C(h),比例高度(hs)为0.31 +/- 0.16 km和0.66 + /-春季末和冬季分别为0.24公里。该参数化排除了以下情况的分布:湍流条件,当BC物质有效地向上排出并稀释时,表示为C(h)= C0直至PBL的顶部;或在强烈的南北平流时期,整个纵断面都受到受污染的南部地区的区域运输的显着影响。在两个季节中,BC核心质量中值直径(MMD)通常分布在205-220 nm之间,在春季晚些时候也经常观察到与195 nm类似的MMD模式。在PBL中,BC的总体相对涂层厚度(涂层直径除以未涂层的芯直径(Dp / Dc))大部分分布在2.0-2.2,但在较低的自由对流层(FT)中则近似为1.2-1.6。 550 nm处的BC(MAC(550))受到SP2测量的限制,很大程度上受涂层厚度的影响,在PBL中相对一致,类似于8.6 m(2)g(-1),但减少到7由于涂层减少,在FT或湍流条件下为-7.5 m(2)g(-1)。发现BC在FT中显示出较小的粒径,但在PBL中显示出较大的粒径,这可能意味着较大的BC已被低位清除。水平云:被困在PBL中或从受污染区域局部迁移的BC颗粒代表了颗粒物种群中最吸收的元素,在评估气溶胶对该区域的辐射强迫影响时应特别考虑。

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