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Sensitivity of modeled atmospheric nitrogen species and nitrogen deposition to variations in sea salt emissions in the North Sea and Baltic Sea regions

机译:在北海和波罗的海地区,模拟的大气氮物种和氮沉降对海盐排放变化的敏感性

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摘要

Coarse sea salt particles are emitted ubiquitously from the ocean surface by wave-breaking and bubble-bursting processes. These particles impact the atmospheric chemistry by affecting the condensation of gas-phase species and, thus, indirectly the nucleation of new fine particles, particularly in regions with significant air pollution. In this study, atmospheric particle concentrations are modeled for the North Sea and Baltic Sea regions in northwestern Europe using the Community Multiscale Air Quality (CMAQ) modeling system and are compared to European Monitoring and Evaluation Programme (EMEP) measurement data. The sea salt emission module is extended by a salinity-dependent scaling of the sea salt emissions because the salinity in large parts of the Baltic Sea is very low, which leads to considerably lower sea salt mass emissions compared to other oceanic regions. The resulting improvement in predicted sea salt concentrations is assessed. The contribution of surf zone emissions is considered separately. Additionally, the impacts of sea salt particles on atmospheric nitrate and ammonium concentrations and on nitrogen deposition are evaluated. \udThe comparisons with observational data show that sea salt concentrations are commonly overestimated at coastal stations and partly underestimated farther inland. The introduced salinity scaling improves the predicted Baltic Sea sea salt concentrations considerably. The dates of measured peak concentrations are appropriately reproduced by the model. The impact of surf zone emissions is negligible in both seas. Nevertheless, they might be relevant because surf zone emissions were cut at an upper threshold in this study. Deactivating sea salt leads to minor increases in NH3 +  NH4+ and HNO3 +  NO3− and a decrease in NO3− concentrations. However, the overall effect on NH3 +  NH4+ and HNO3 +  NO3− concentrations is smaller than the deviation from the measurements. Nitrogen wet deposition is underestimated by the model at most stations. In coastal regions, the total nitrogen deposition (wet and dry) is considerably affected by sea salt particles. Approximately 3–7 % of atmospheric nitrogen deposition into the North Sea is caused by sea salt particles. The contribution is lower in the Baltic Sea region. \udThe stations in the EMEP network provide a solid basis for model evaluation and validation. However, for a more detailed analysis of the impact of sea salt particles on atmospheric nitrogen species, size-resolved measurements of Na+, NH4+, and NO3− are needed.
机译:粗大的海盐颗粒通过波浪破碎和气泡破裂过程从海面无处不在发出。这些颗粒通过影响气相物质的冷凝作用,从而间接影响新的细颗粒的成核作用,特别是在空气污染严重的地区,从而影响大气化学。在这项研究中,使用社区多尺度空气质量(CMAQ)建模系统对欧洲西北部的北海和波罗的海地区的大气颗粒物浓度进行了建模,并与欧洲监测和评估计划(EMEP)的测量数据进行了比较。海盐排放模块通过依赖于盐度的海盐排放比例来扩展,因为波罗的海大部分地区的盐度非常低,与其他海洋地区相比,这导致了相当低的海盐质量排放。评估了预计的海盐浓度的改善结果。冲浪区排放的贡献单独考虑。此外,评估了海盐颗粒对大气中硝酸盐和铵盐浓度以及氮沉积的影响。 \ ud与观测数据的比较表明,沿海站的海盐浓度通常被高估,而更远的内陆部分被低估。引入的盐度标度极大地提高了预测的波罗的海海盐浓度。该模型适当地再现了所测量的峰值浓度的日期。在两个海中,冲浪区排放的影响可以忽略不计。但是,它们可能是相关的,因为在此研究中,将冲浪区的排放降低了上限。使海盐失活会导致NH3 + NH4 +和HNO3 + NO3-的少量增加以及NO3-的浓度降低。但是,对NH3 + NH4 +和HNO3 + NO3-浓度的总体影响小于测量值的偏差。在大多数站点,该模型都低估了氮湿沉降。在沿海地区,海盐颗粒对总氮沉积(干湿)的影响很大。进入北海的大约3-7%的大气氮沉积是由海盐颗粒引起的。在波罗的海地区的贡献较低。 \ ud EMEP网络中的站点为模型评估和验证提供了坚实的基础。但是,为了更详细地分析海盐颗粒对大气氮物种的影响,需要对Na +,NH4 +和NO3-进行尺寸分辨的测量。

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