冻融过程增加了南极企鹅产生的 NH3 排放量,并促进了气候相关颗粒的形成

IF 8.4 1区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES npj Climate and Atmospheric Science Pub Date : 2024-12-20 DOI:10.1038/s41612-024-00873-1
Rong Tian, Jinpei Yan, Fangqun Yu, Hang Yang, Shanshan Wang, Shuhui Zhao, Miming Zhang, Xiaoke Zhang, Siying Dai
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引用次数: 0

摘要

企鹅排泄物中挥发的氨是南极生态系统中重要的氮源,通过新粒子形成(NPF)影响气候。冻融事件可以触发氨排放,但它们对企鹅产生的氨的影响在模型中没有得到充分的研究和忽视。本文利用巡航观测和GEOS-Chem-APM模拟研究了企鹅对氨的贡献及其对气候的影响。在南大洋和Prydz湾观测到高氨浓度,最大值超过7000 ng/m3,这是由企鹅聚居区的气团驱动的。模拟表明,将冻融影响考虑在内可以提高模型的性能,企鹅产生的氨排放量增加了20倍,11月份整个南极洲的氨排放量达到了49gg。升高的氨通过NPF使模拟二次粒子数浓度增加30 ~ 300%,使模拟云滴数浓度增加10 ~ 20%,并改变云的性质。这项研究强调了将企鹅排放纳入模型的重要性,特别是在冻融事件期间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Freeze-thaw process boosts penguin-derived NH3 emissions and enhances climate-relevant particles formation in Antarctica
Ammonia volatilized from penguin excreta is a significant nitrogen source in Antarctic ecosystems, influencing climate through new particle formation (NPF). Freeze-thaw events can trigger ammonia emissions, but their impact on penguin-derived ammonia is understudied and overlooked in models. Here we investigate the contribution of penguins to ammonia and their climatic impacts using cruise observations and GEOS-Chem-APM simulations. High ammonia concentrations, with a maximum exceeding 7000 ng/m3, were observed over the Southern Ocean and Prydz Bay, driven by air masses from penguin colonies. Simulations showed that incorporating freeze-thaw impact improves model performance, with penguin-derived ammonia emissions enhanced by up to 20-fold and reaching a total of 49 Gg across Antarctica in November. Elevated ammonia increased simulated secondary particle number concentrations by 30−300% through NPF, enhancing simulated cloud droplet number concentrations by 10−20% and altering cloud properties. This study underscores the importance of incorporating penguin emissions into models, particularly during freeze-thaw events.
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来源期刊
npj Climate and Atmospheric Science
npj Climate and Atmospheric Science Earth and Planetary Sciences-Atmospheric Science
CiteScore
8.80
自引率
3.30%
发文量
87
审稿时长
21 weeks
期刊介绍: npj Climate and Atmospheric Science is an open-access journal encompassing the relevant physical, chemical, and biological aspects of atmospheric and climate science. The journal places particular emphasis on regional studies that unveil new insights into specific localities, including examinations of local atmospheric composition, such as aerosols. The range of topics covered by the journal includes climate dynamics, climate variability, weather and climate prediction, climate change, ocean dynamics, weather extremes, air pollution, atmospheric chemistry (including aerosols), the hydrological cycle, and atmosphere–ocean and atmosphere–land interactions. The journal welcomes studies employing a diverse array of methods, including numerical and statistical modeling, the development and application of in situ observational techniques, remote sensing, and the development or evaluation of new reanalyses.
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