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Isotopic composition of atmospheric nitrate in a tropical marine boundary layer

机译:热带海洋边界层中大气硝酸盐的同位素组成

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摘要

Long-term observations of the reactive chemical composition of the tropical marine boundary layer (MBL) are rare, despite its crucial role for the chemical stability of the atmosphere. Recent observations of reactive bromine species in the tropical MBL showed unexpectedly high levels that could potentially have an impact on the ozone budget. Uncertainties in the ozone budget are amplified by our poor understanding of the fate of NOx (= NO + NO2), particularly the importance of nighttime chemical NOx sinks. Here, we present year-round observations of the multiisotopic composition of atmospheric nitrate in the tropical MBL at the Cape Verde Atmospheric Observatory. We show that the observed oxygen isotope ratios of nitrate are compatible with nitrate formation chemistry, which includes the BrNO3 sink at a level of ca. 20 ± 10% of nitrate formation pathways. The results also suggest that the N2O5 pathway is a negligible NOx sink in this environment. Observations further indicate a possible link between the NO2/NOx ratio and the nitrogen isotopic content of nitrate in this low NOx environment, possibly reflecting the seasonal change in the photochemical equilibrium among NOx species. This study demonstrates the relevance of using the stable isotopes of oxygen and nitrogen of atmospheric nitrate in association with concentration measurements to identify and constrain chemical processes occurring in the MBL.
机译:尽管对海洋海洋边界层(MBL)的反应化学成分具有长期影响,但对其长期化学作用却很少。最近对热带MBL中反应性溴物种的观察表明,出乎意料的高含量可能会对臭氧预算产生影响。臭氧预算的不确定性因我们对NOx的命运(= NO + NO2)的了解不足而加剧,尤其是夜间化学NOx汇的重要性。在这里,我们对佛得角大气观测站的热带MBL中大气硝酸盐的多同位素组成进行全年观测。我们表明,所观察到的硝酸盐的氧同位素比与硝酸盐形成化学相容,该硝酸盐化学形成包括在大约水平的BrNO 3吸收。硝酸盐形成途径的20±10%。结果还表明,在这种环境下,N2O5途径是可忽略的NOx汇。观察结果进一步表明,在这种低NOx环境中,NO2 / NOx比率与硝酸盐的氮同位素含量之间可能存在联系,这可能反映了NOx物种之间光化学平衡的季节性变化。这项研究表明,使用大气硝酸盐中氧和氮的稳定同位素与浓度测量值相关联,以识别和约束MBL中发生的化学过程。

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