大气与环境光学学报 ›› 2025, Vol. 20 ›› Issue (3): 338-352.doi: 10.3969/j.issn.1673-6141.2025.03.008

• “激光雷达新技术及其在大气环境中的应用”专辑 • 上一篇    

长三角中心海陆上空气溶胶垂直结构特征

茹泓涛 1, 郝增周 1,2,3*, 厉运周 2,4, 黄海清 1   

  1. 1 自然资源部第二海洋研究所, 卫星海洋环境监测预警全国重点实验室, 浙江 杭州 310012; 2 齐鲁工业大学 (山东省科学院), 海洋仪器仪表研究所, 山东 青岛 266061; 3 山东省科学院, 山东省院士工作站, 山东 济南 250014; 4 崂山实验室, 山东 青岛 266237
  • 收稿日期:2025-01-20 修回日期:2025-03-31 出版日期:2025-05-28 发布日期:2025-05-26
  • 通讯作者: E-mail: hzyx80@sio.org.cn E-mail:hzyx80@sio.org.cn
  • 作者简介:茹泓涛 (1999- ), 浙江绍兴人, 硕士研究生, 主要从事气溶胶遥感方面的研究。E-mail: holtonru@163.com
  • 基金资助:
    浙江省自然科学基金联合基金资助项目 (LZJMZ24D060001), 山东省重点研发计划 (2023ZLYS01), 国家重点研发计划 (2022YFC3104200)

Vertical structural characteristics of aerosols over sea and land in central region of Yangtze River Delta

RU Hongtao 1, HAO Zengzhou 1,2,3*, LI Yunzhou 2,4, HUANG Haiqing 1   

  1. 1 State Key Laboratory of Satellite Ocean Environment Dynamics, Second Institute of Oceanography, Ministry of Natural Resources, Hangzhou 310012, China; 2 Institute of Oceanographic Instrumentation, Qilu University of Technology (Shandong Academy of Sciences), Qingdao 266061, China; 3 Academician Workstation of Shandong Province, Shandong Academy of Sciences, Jinan 250014, China; 4 Laoshan Laboratory, Qingdao 266237, China
  • Received:2025-01-20 Revised:2025-03-31 Online:2025-05-28 Published:2025-05-26
  • Contact: Zengzhou Hao E-mail:hzyx80@sio.org.cn
  • Supported by:
    the Joint Funds of the Zhejiang Provincial Natural Science Foundation of China;National Key R&D Program of China

摘要: 大气气溶胶的垂直结构影响着气溶胶光学特征、大气环境污染分布和区域气候变化等。本文在地基站点数据 验证的基础上, 利用2013―2022 年云-气溶胶激光雷达和红外探测者观测卫星 (CALIPSO) 观测反演的气溶胶消光系 数及其类型等垂直信息, 研究了长三角中心海陆上空气溶胶垂直结构的季节分布和年度变化特征。结果表明, 陆地 上空气溶胶消光系数显著大于海洋上空, 且陆地上空以污染大陆型和污染沙尘型气溶胶为主, 海洋上空则以清洁海 洋型和沙尘海洋型气溶胶为主。其中, 春季受蒙古高原和塔克拉玛干沙漠的沙尘以及偏北风的影响, 沙尘型气溶胶 会长距离输送到长三角中心海陆上空; 夏季城市工业发展带来的煤烟型气溶胶主要聚集于陆地1.5~3.5 km高度处, 而海洋上空以海洋型气溶胶为主, 且其消光系数在0~1.5 km高度处显著小于其他季节; 秋冬季陆地上空的污染沙尘 型气溶胶和污染大陆型气溶胶富集于0~1 km高度处, 冬季地面气溶胶消光系数全年最高 (约 0.5 km-1), 但海洋上空 的海洋型气溶胶始终占有较高比例, 消光系数的季节性变化不大。整体而言, 近10 年内长三角中心区海陆上空整层 气溶胶光学厚度 (AOD) 呈逐年下降趋势。

关键词: 长江三角洲, 气溶胶, 消光系数, 云-气溶胶激光雷达与红外探路者卫星观测, 垂直特征, 海陆差异

Abstract: The vertical structure of atmospheric aerosols affects aerosol optical characteristics, the distribution of atmospheric environmental pollution, and regional climate change. Based on the verification by using ground-based data, this paper studies the seasonal distribution and annual variation characteristics of the vertical structure of aerosols over sea and land in central Yangtze River Delta region from 2013 to 2022, using the aerosol extinction coefficient and its type information inverted from the cloud-aerosol lidar and infrared pathfinder satellite observer (CALIPSO) observations. The results show that the aerosol extinction coefficient over land is significantly higher than that over sea, and polluted continental and polluted dust aerosols dominate over land, while clean marine and dusty marine aerosols are predominant over sea. Specifically, in spring, under the influence of dust from the Mongolian Plateau and the Taklimakan Desert, as well as northerly winds, dust aerosols are transported over long distances to central Yangtze River Delta region, affecting both land and sea region. In summer, the rising smoke aerosols from urban and industrial development primarily concentrate at the altitude of 1.5–3.5 km over land, whereas marine aerosols dominate over sea, with their extinction coefficients at the altitude of 0 – 1.5 km significantly lower than those in other seasons. During autumn and winter, polluted dust and polluted continental aerosols over land accumulate mainly within the altitude of 0 – 1 km, with the ground-level aerosol extinction coefficient reaching its annual peak in winter (approximately 0.5 km-1), however, marine aerosols consistently account for a high proportion over sea, resulting in minimal seasonal variation of aerosol extinction coefficient. Overall, over the past decade, the aerosol optical depth (AOD) in the vertical column over both land and sea regions in central Yangtze River Delta region has shown a declining trend year by year.

Key words: Yangtze River delta, aerosols, extinction coefficient, cloud-aerosol lidar and infrared pathfinder satellite observations, vertical features, differences between sea and land

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