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Limited impact of sulfate-driven chemistry on black carbon aerosol aging in power plant plumes

机译:硫酸盐驱动的化学物质对电厂烟羽中黑碳气溶胶老化的影响有限

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The aging of refractory black carbon (rBC) aerosol by sulfate-driven chemistry has been constrained in coal-fired power-plant plumes using the NOAA WP-3D research aircraft during the Southern Nexus (SENEX) study, which took place in the Southeastern US in June and July of 2013. A Single Particle Soot Photometer (SP2) determined the microphysical properties of rBC-containing particles including single-particle rBC mass and the presence and amount of internally-mixed non-rBC material, hereafter referred to as “coatings”. Most power-plant influenced air was associated with very slightly increased amounts of non-refractory material, likely sulfate internally mixed with the rBC, however this increase was statistically insignificant even after semi-Lagrangian exposure for up to 5 h. On average, the increase in coating thickness was 2 ± 4 nm for particles containing 3–5 fg rBC. Similarly, the number fraction of rBC-containing particles that could be identified as internally mixed was increased by plume chemistry by only 1.3 ± 1.3%. These direct measurements of microphysical aging of rBC-containing aerosol by power plant emissions constrain the enhancement of sulfate chemistry on both rBC’s column-integrated absorption optical depth, and rBC-containing aerosol’s ability to act as cloud condensation nuclei. Appling Mie and k -K?hler theories to the SP2 observations, permits the resulting effect on rBC ambient light-absorption to be capped at the 2–6% level.
机译:在美国东南部进行的南部联系(SENEX)研究期间,使用NOAA WP-3D研究飞机,通过硫酸盐驱动的化学方法对难处理的黑碳(rBC)气溶胶的老化已限制在燃煤电厂烟羽中。在2013年6月和7月。单颗粒碳烟光度计(SP2)确定了含rBC的颗粒的微物理性质,包括单颗粒rBC质量以及内部混合的非rBC材料的存在和数量,以下称为“涂层” ”。大多数受电厂影响的空气与少量非耐火材料相关,很可能是硫酸盐与rBC内部混合,但是即使在半拉格朗日暴露下长达5小时后,这种增加在统计学上也微不足道。平均而言,包含3–5 fg rBC的颗粒的涂层厚度增加2±4 nm。类似地,通过羽流化学分析,可以识别为内部混合的含rBC颗粒的数量分数仅增加了1.3±1.3%。这些通过发电厂排放物对含rBC气溶胶的微物理老化的直接测量,限制了硫酸盐化学作用在rBC的柱积分吸收光学深度以及含rBC的气溶胶充当云凝结核的能力方面的增强。将Mie和k -Khler理论应用于SP2观测值,可以将对rBC环境光吸收的最终影响限制在2%到6%的水平。

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