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首页> 外文期刊>Atmospheric Measurement Techniques >Measuring the morphology and density of internally mixed black carbon with SP2 and VTDMA: new insight into the absorption enhancement of black carbon in the atmosphere
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Measuring the morphology and density of internally mixed black carbon with SP2 and VTDMA: new insight into the absorption enhancement of black carbon in the atmosphere

机译:使用SP2和VTDMA测量内部混合的黑碳的形态和密度:大气中黑碳吸收增强的新见解

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The morphology and density of black carbon (BC) cores in internally mixed BC (In-BC) particles affect their mixing state and absorption enhancement. In this work, we developed a new method to measure the morphology and effective density of the BC cores of ambient In-BC particles using a single-particle soot photometer (SP2) and a volatility tandem differential mobility analyzer (VTDMA) during the CAREBeijing-2013 campaign from 8 to 27 July 2013 at Xianghe Observatory. This new measurement system can select size-resolved ambient In-BC particles and measure the mobility diameter and mass of the In-BC cores. The morphology and effective density of the ambient In-BC cores are then calculated. For the In-BC cores in the atmosphere, changes in their dynamic shape factor (chi) and effective density (rho(eff)) can be characterized as a function of the aging process (D-p/D-c) measured by SP2 and VTDMA. During an intensive field study, the ambient In-BC cores had an average shape factor chi of similar to 1.2 and an average density of similar to 1.2 g cm(-3), indicating that ambient In-BC cores have a near-spherical shape with an internal void of similar to 30 %. From the measured morphology and density, the average shell / core ratio and absorption enhancement (E-ab) of ambient BC were estimated to be 2.1-2.7 and 1.6-1.9, respectively, for In-BC particles with sizes of 200-350 nm. When the In-BC cores were assumed to have a void-free BC sphere with a density of 1.8 g cm(-3), the shell / core ratio and E-ab were overestimated by similar to 13 and similar to 17 %, respectively. The new approach developed in this work improves the calculations of the mixing state and optical properties of ambient In-BC particles by quantifying the changes in the morphology and density of ambient In-BC cores during aging.
机译:内部混合的BC(In-BC)颗粒中黑碳(BC)核的形态和密度会影响其混合状态和吸收增强。在这项工作中,我们开发了一种新方法,可在CAREBeijing-期间使用单颗粒烟灰光度计(SP2)和挥发性串联差动迁移率分析仪(VTDMA)测量周围In-BC颗粒的BC核的形态和有效密度。 2013年活动于2013年7月8日至27日在香河天文台举行。这种新的测量系统可以选择尺寸可分辨的环境In-BC颗粒,并测量In-BC核的迁移率直径和质量。然后计算周围的In-BC岩心的形态和有效密度。对于大气中的In-BC岩心,其动态形状因子(chi)和有效密度(rho(eff))的变化可表征为SP2和VTDMA测量的老化过程(D-p / D-c)的函数。在深入的实地研究中,In-BC周围芯的平均形状因子chi近似于1.2,平均密度相似于1.2 g cm(-3),表明In-BC周围芯的形状近似于球形内部空隙率接近30%。根据测量的形态和密度,对于尺寸为200-350 nm的In-BC颗粒,环境BC的平均壳/芯比和吸收增强(E-ab)分别估计为2.1-2.7和1.6-1.9。 。当假设In-BC核具有密度为1.8 g cm(-3)的无空隙BC球时,壳/核比和E-ab分别高估了约13%和17% 。通过量化老化过程中环境In-BC核的形态和密度的变化,这项工作中开发的新方法改进了环境In-BC颗粒的混合状态和光学性质的计算。

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