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High time-resolved measurement of stable carbon isotope composition in water-soluble organic aerosols: method optimization and a case study during winter haze in eastern China

机译:水溶性有机气溶胶中稳定碳同位素组合物的高时间分辨测量:方法优化和东部冬季雾度的案例研究

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Water-soluble organic carbon?(WSOC) is a significant fraction of organic carbon?(OC) in atmospheric aerosols. WSOC is of great interest due to its significant effects on atmospheric chemistry, the Earth's climate and human health. The stable carbon isotope (δ13C) can be used to track the potential sources and investigate atmospheric processes of organic aerosols. However, the previous methods measuring the δ13C values of WSOC in ambient aerosols require a large amount of carbon content, are time-consuming and require labor-intensive preprocessing. In this study, a method of simultaneously measuring the mass concentration and the δ13C values of WSOC from aerosol samples is established by coupling the GasBench II preparation device with isotopic ratio mass spectrometry. The precision and accuracy of isotope determination is better than 0.17‰ and 0.5‰, respectively, for samples containing WSOC amounts larger than 5μg. This method is then applied for the aerosol samples collected every 3h during a severe wintertime haze period in Nanjing, eastern China. The WSOC values vary between 3 and 32μgm?3, whereas δ13C?WSOC ranges from ?26.24‰ to ?23.35‰. Three different episodes (Episode?1, Episode?2 and Episode?3) are identified in the sampling period, showing a different tendency of δ13C?WSOC with the accumulation process of WSOC aerosols. The increases in both the WSOC mass concentrations and the δ13C?WSOC values in Episode?1 indicate that WSOC is subject to a substantial photochemical aging during the air mass transport. In Episode?2, the decline of the δ13C?WSOC is accompanied by the increase in the WSOC mass concentrations, which is associated with regional-transported biomass burning emissions. In Episode?3, heavier isotope (13C) is exclusively enriched in total carbon?(TC) in comparison to WSOC aerosols. This suggests that the non-WSOC fraction in total carbon may contain 13C-enriched components such as dust carbonate, which is supported by the enhanced Ca2+ concentrations and air mass trajectory analysis. The present study provides a novel method to determine the stable carbon isotope composition of WSOC, and it offers a great potential to better understand the source emission, the atmospheric aging and the secondary production of water-soluble organic aerosols.
机译:水溶性有机碳α(WSOC)是大气气溶胶中的有机碳的显着级数?(OC)。由于其对大气化学,地球的气候和人类健康的显着影响,WSOC具有很大的兴趣。稳定的碳同位素(δ13C)可用于跟踪潜在来源并研究有机气溶胶的大气过程。然而,在环境气溶胶中测量WSOCδ13C值的先前方法需要大量的碳含量,是耗时的,需要劳动密集型预处理。在该研究中,通过将气囊II制备装置与同位素比质谱法联接,同时测量来自气溶胶样品的质量浓度和WSOC的δ13C值的方法。同位素测定的精度和精度分别优于0.17‰和0.5‰,用于含有大于5μg的WSOC量的样品。然后在中国东部南京的严重冬季雾度期间施用该方法为每3H收集的气溶胶样品。 WSOC值在3到32μgm≤3之间变化,而Δ13C?WSOC范围从Δ26.24‰到?23.35‰。在采样期间鉴定了三个不同的剧集(第1集,第1集,第2集和第3集和集合α3),显示了WSOC气溶胶累积过程的Δ13C的不同趋势。 WSOC质量浓度和δ13C的增加在第1集中的WSOC值表明WSOC在空气质量运输期间受到大量光化学老化的影响。在第2集中,δ13C的下降伴随着WSOC质量浓度的增加,这与区域运输的生物质燃烧排放相关。在第3集中,与WSOC气溶胶相比,较重的同位素(13C)专用于总碳α(TC)。这表明总碳中的非WSOC级分可以含有13℃的碳酸酯,例如碳酸盐,其由增强的Ca2 +浓度和空气质量轨迹分析负载。本研究提供了一种确定稳定的WSOC碳同位素组成的新方法,其提供了更好地理解源发射,大气老化和水溶性有机气溶胶的二次生产的潜力。

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