AbstractWith the rapid development of China’s economy and high rate of industrialization, environmenta'/> Spatiotemporal characteristics of aerosols and their trends over mainland China with the recent Collection 6 MODIS and OMI satellite datasets
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Spatiotemporal characteristics of aerosols and their trends over mainland China with the recent Collection 6 MODIS and OMI satellite datasets

机译:近期收集6种MODIS和OMI卫星数据集,气溶胶的时空特征及其对中国大陆的趋势

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AbstractWith the rapid development of China’s economy and high rate of industrialization, environmental pollution has become a major challenge for the country. The present study is aimed at analyzing spatiotemporal heterogeneities and changes in trends of different aerosol optical properties observed over China. To achieve this, Collection 6 Level 3 data retrieved from the Moderate Resolution Imaging Spectroradiometer (MODIS; 2002–2016) and Ozone Monitoring Instrument (OMI; 2005–2016) sensors were used to investigate aerosol optical depth (AOD550), ?ngstr?m exponent (AE470–660), and Absorption Aerosol Index (AAI). The spatial distribution of annual mean AOD550was noticed to be high over economically and industrialized regions of the east, south, and northeast of China, while low aerosol loadings were located over rural and less-developed areas of the west and northeast of China. High AE470–660(>?1.0) values were characterized by the abundance of fine-mode particles and vice versa, likely attributed to large anthropogenic activities. Similarly, high AOD with corresponding high AE and low AAI was characterized over the urban-industrialized regions of the central, east, and south of China during most of the months, being more pronounced in June and July. On seasonal scale, AOD values were found to be high during spring, followed by the summer and autumn, and low during the winter season. It is also evident that all aerosol parameters showed a single-peak frequency distribution in all seasons over entire China. Further, the annual, monthly, and seasonal spatial trends revealed a decreasing trend in AOD over most regions of China, except in the southwest of China, which showed a positive increasing trend. Significant increasing trends were noted in AAI for all the seasons, particularly during autumn and winter, resulting in a large amount of the absorbing type of aerosols produced from biomass burning and desert dust.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>随着中国经济的快速发展和高速发展工业化,环境污染已成为该国的主要挑战。本研究旨在分析在中国观察到不同气溶胶光学特性的时空异质性和变化。为此,从中等分辨率成像分光镜(MODIS; 2002-2016)和臭氧监测仪器(OMI; 2005-2016)传感器采集6级3数据,用于研究气溶胶光学深度(AOD <下标> 550 ),?ngstr?m表指数(AE <下标> 470-660 ),吸收气溶胶指数(aai)。年度平均值AOD <下标> 550 的空间分布在中国东部,南部和东北地区的经济和工业化地区高度高,而低气溶胶载荷位于农村和较少发达的地区中国西部和东北部。高AE <下标> 470-660 (>α1.0)值的特征在于对细模颗粒的丰度,反之亦然,可能归因于大量的人为活动。同样,具有相应高AE和低亚海的高AOD的特点是在大多数几个月内,在中国中央,东部和南部的城市工业化地区,在6月和7月更加明显。在季节性范围内,发现AOD值在春季期间高高,其次是夏季和秋季,冬季期间低。还显然,所有气溶胶参数都在整个中国的所有季节都显示出单峰频率分布。此外,每年,月度和季节性空间趋势揭示了中国大多数地区AOD的趋势,除了中国西南部,呈现出积极的趋势。 AAI在秋季和冬季的所有季节都注意到了显着提高趋势,从而产生了大量的吸收式气溶胶,从生物质燃烧和沙漠粉尘产生。 ]]>

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  • 作者单位

    Collaborative Innovation Centre on Forecast and Evaluation of Meteorological Disasters Key Laboratory of Meteorological Disasters Ministry of Education (KLME) International Joint Laboratory on Climate and Environment Change (ILCEC) Key Laboratory for;

    Collaborative Innovation Centre on Forecast and Evaluation of Meteorological Disasters Key Laboratory of Meteorological Disasters Ministry of Education (KLME) International Joint Laboratory on Climate and Environment Change (ILCEC) Key Laboratory for;

    Collaborative Innovation Centre on Forecast and Evaluation of Meteorological Disasters Key Laboratory of Meteorological Disasters Ministry of Education (KLME) International Joint Laboratory on Climate and Environment Change (ILCEC) Key Laboratory for;

    Collaborative Innovation Centre on Forecast and Evaluation of Meteorological Disasters Key Laboratory of Meteorological Disasters Ministry of Education (KLME) International Joint Laboratory on Climate and Environment Change (ILCEC) Key Laboratory for;

    Institute of Atmospheric Environment China Meteorological Administration;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;环境科学、安全科学;
  • 关键词

    MODIS; OMI; Aerosol optical depth; Absorption Aerosol Index; Spatial trends; China;

    机译:modis;omi;气溶胶光学深度;吸收气溶胶指数;空间趋势;中国;

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