基于全球再分析数据和船上测量的阿拉伯海上空气溶胶的化学成分

IF 3.7 2区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES Atmospheric Environment Pub Date : 2025-04-15 Epub Date: 2025-01-31 DOI:10.1016/j.atmosenv.2025.121085
Garima Shukla , N. Ojha , Ashwini Kumar , S. Harithasree , I. Girach , L.K. Sahu
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引用次数: 0

摘要

了解大气气溶胶的化学成分是了解海洋地区气溶胶-云-气候相互作用和地表水生物地球化学的关键。尽管阿拉伯海的逆风区有很强的自然和人为来源,但对其气溶胶组成的研究非常有限。我们综合分析了全球模型、ECMWF的CAMS和NASA的MERRA-2再分析的结果,并结合我们的船载测量结果。两个模型都捕获了硫酸盐(SO42−)和海盐的整体时空变化(r = 0.76-0.86)。然而,PM10和粉尘变异性存在较大的分散,MERRA-2通常高估了浓度(冬季除外),而CAMS则低估了浓度。尽管存在量级差异,但这些模式成功地再现了关键的季节特征,例如硫酸盐冬季最大值(MERRA-2为9.0±6.5 μg m - 3,测量值为11.9±6.2 μg m - 3)。虽然硫酸盐增强在印度西海岸最为明显,但季风时期海盐峰值在中东东海岸附近最为强烈(>200 μg m−3)。两种模式的趋势分析结果表明,2003-2022年期间阿拉伯海硫酸盐气溶胶在统计上显著增加(冬季为0.4 μgm−3y−1)。然而,海盐和沙尘的长期趋势在两种模式之间并不一致,并强调需要进一步调查。这项研究对气溶胶分布和模型性能的洞察将有助于规划未来的探险和完善化学-气候模型,从而增强我们对印度洋生物地球化学过程的理解。
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Chemical composition of aerosols over the Arabian Sea based on global reanalyses data and on-board ship measurements
The knowledge of chemical composition of atmospheric aerosols is key to understand aerosol-cloud-climate interactions and surface water biogeochemistry in the oceanic regions. Despite of strong natural and anthropogenic sources in its upwind regions, the studies on aerosol composition have been very limited over the Arabian Sea. We have comprehensively analyzed the results from global models, ECMWF's CAMS and NASA's MERRA-2 reanalyses, in conjunction with our ship-based measurements. Both models captured the overall spatio-temporal variability in sulphate (SO42−) and sea salt (r = 0.76–0.86). However, there is large scatter in PM10 and dust variability and the concentrations are typically overestimated by MERRA-2 except during winter, but underestimated by CAMS. Despite of difference in magnitudes, these models successfully reproduced the key seasonal features e.g., winter-time maxima in sulphate (9.0 ± 6.5 μg m−3 in MERRA-2, 11.9 ± 6.2 μg m−3 in measurements). While sulphate enhancement is most pronounced along India's west coast, the monsoon-time sea salt spike is strongest near east coast of the Middle-East (>200 μg m−3) region. Trend analysis results from both models indicate a statistically significant increase in sulphate aerosols over the Arabian Sea during 2003–2022 period (0.4 μgm−3y−1 in winter). However, long-term trends in sea salt and dust are not consistent between the two models and underscore a need for further investigations. Insights into aerosol distribution and model performances from this study would aid in planning future expeditions and refining chemistry-climate models, thereby enhancing our understanding of biogeochemical processes in the Indian Ocean.
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来源期刊
Atmospheric Environment
Atmospheric Environment 环境科学-环境科学
CiteScore
9.40
自引率
8.00%
发文量
458
审稿时长
53 days
期刊介绍: Atmospheric Environment has an open access mirror journal Atmospheric Environment: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review. Atmospheric Environment is the international journal for scientists in different disciplines related to atmospheric composition and its impacts. The journal publishes scientific articles with atmospheric relevance of emissions and depositions of gaseous and particulate compounds, chemical processes and physical effects in the atmosphere, as well as impacts of the changing atmospheric composition on human health, air quality, climate change, and ecosystems.
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