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Diel cycle impacts on the chemical and light absorption properties of organic carbon aerosol from wildfires in the western United States

机译:Diel循环对美国西部野火的有机碳气溶胶化学和光吸收性能的影响

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Organic aerosol (OA) emissions from biomass burning have been the subject of intense research in recent years, involving a combination of field campaigns and laboratory studies. These efforts have aimed at improving our limited understanding of the diverse processes and pathways involved in the atmospheric processing and evolution of OA properties, culminating in their accurate parameterizations in climate and chemical transport models. To bring closure between laboratory and field studies, wildfire plumes in the western United States were sampled and characterized for their chemical and optical properties during the ground-based segment of the 2019 Fire Influence on Regional to Global Environments and Air Quality (FIREX-AQ) field campaign. Using a custom-developed multiwavelength integrated photoacoustic-nephelometer spectrometer in conjunction with a suite of instruments, including an oxidation flow reactor equipped to generate hydroxyl (OH?) or nitrate (NO 3 ?) radicals to mimic daytime or nighttime oxidative aging processes, we investigated the effects of multiple equivalent hours of OH? or NO 3 ? exposure on the chemical composition and mass absorption cross-sections (MAC( λ )) at 488 and 561?nm of OA emitted from wildfires in Arizona and Oregon. We found that OH? exposure induced a slight initial increase in absorption corresponding to short timescales; however, at longer timescales, the wavelength-dependent MAC( λ ) decreased by a factor of 0.72? ± ?0.08, consistent with previous laboratory studies and reports of photobleaching. On the other hand, NO 3 ? exposure increased MAC( λ ) by a factor of up to 1.69? ± ?0.38. We also noted some sensitivity of aerosol aging to different fire conditions between Arizona and Oregon. The MAC( λ ) enhancement following NO 3 ? exposure was found to correlate with an enhancement in CHO 1 N and CHO gt1 N ion families measured by an Aerodyne aerosol mass spectrometer.
机译:生物量燃烧的有机气溶胶(OA)排放是近年来激烈的研究主题,涉及野外运动和实验室研究的结合。这些努力旨在改善我们对涉及大气处理和OA性质的进化中涉及的各种过程和途径的有限理解,在气候和化学传输模型中的准确参数中得到了最终。在实验室和田间研究之间扣留,美国西部的野火羽毛被取样,并在2019年对区域到全球环境和空气质量的基础上的基础上的化学和光学特性进行了取样,并表现为它们的化学和光学特性(Firex-AQ)现场运动。使用定制的多波长集成光声 - 浊度计光谱仪与一套仪器一起,包括氧化流量反应器,该氧化流量反应器能够产生羟基(OH?)或硝酸盐(NO 3?)自由基,以模仿白天或夜间氧化老化过程,我们调查了多个等效时间的哦?还没有3?在亚利桑那州和俄勒冈州的野火中排出的488和561.NM的化学成分和大量吸收横截面(MAC(λ))的暴露。我们发现哦?曝光诱导对应于短时间的吸收略微初始增加;然而,在更长的时间尺寸下,波长依赖性MAC(λ)减少0.72倍? ±0.08,与先前的实验室研究和光博的报道一致。另一方面,没有3?曝光增加Mac(λ)倍数为1.69? ±0.38。我们还指出了气溶胶老化对亚利桑那州和俄勒冈之间的不同火灾条件的一些敏感性。 MAC(λ)增强在第3次以下?发现暴露与由Aerodyne气溶胶质谱仪测量的CHO 1 N和CHO GT1 N离子家族的增强相关。

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