...
首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Evaluation of tropospheric SO2 retrieved from MAX-DOAS measurements in Xianghe, China
【24h】

Evaluation of tropospheric SO2 retrieved from MAX-DOAS measurements in Xianghe, China

机译:咸庚测量的对流层SO2评价Xianghe,China

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Ground-based multi-axis differential optical absorption spectroscopy (MAX-DOAS) measurements of sulfur dioxide (SO2) have been performed at the Xianghe station (39.8° N, 117.0° E) located at ~ 50 km southeast of Beijing from March 2010 to February 2013. Tropospheric SO2 vertical profiles and corresponding vertical column densities (VCDs), retrieved by applying the optimal estimation method to the MAX-DOAS observations, have been used to study the seasonal and diurnal cycles of SO2, in combination with correlative measurements from in situ instruments, as well as meteorological data. A marked seasonality was observed in both SO2 VCD and surface concentration, with a maximum in winter (February) and a minimum in summer (July). This can be explained by the larger emissions in winter due to the domestic heating and, in case of surface concentration, by more favorable meteorological conditions for the accumulation of SO2 close to the ground during this period. Wind speed and direction are also found to be two key factors in controlling the level of the SO2-related pollution at Xianghe. In the case of east or southwest wind, the SO2 concentration does not change significantly with the wind speed, since the city of Tangshan and heavy polluting industries are located to the east and southwest of the station, respectively. In contrast, when wind comes from other directions, the stronger the wind, the less SO2 is observed due to a more effective dispersion. Regarding the diurnal cycle, the SO2 amount is larger in the early morning and late evening and lower at noon, in line with the diurnal variation of pollutant emissions and atmospheric stability. A strong correlation with correlation coefficients between 0.6 and 0.9 is also found between SO2 and aerosols in winter, suggesting that anthropogenic SO2, through the formation of sulfate aerosols, contributes significantly to the total aerosol content during this season. The observed diurnal cycles of MAX-DOAS SO2 surface concentration are also in very good agreement (correlation coefficient close to 0.9) with those from collocated in situ data, indicating the good reliability and robustness of our retrieval.
机译:在Xianghe Station(39.8°N,117.0°E)上,在2010年3月至7日北京东南部(39.8°N 2013年2月。通过将最佳估计方法应用于MAX-DoAs观察来检出的,通过将最佳估计方法应用于MAX-DoAs观察来研究SO2的季节性和昼夜循环,与来自的相关测量的季节性和昼夜循环原位仪器以及气象数据。在SO2 VCD和表面浓度中观察到明显的季节性,冬季(2月)最多,夏季(7月)最少。这可以通过冬季的较大排放来解释,由于国内加热,并且在表面浓度的情况下,通过更有利的气象条件,在此期间将SO2靠近地面的蓄积。风速和方向也被发现是控制咸庚的SO2相关污染水平的两个关键因素。在东部或西南风的情况下,由于唐山市和重型污染等行业的风速,SO2浓度不会显着变化,分别位于车站的东部和西南部。相比之下,当风从其他方向上,风越强,由于更有效的分散而越少观察到越少的SO 2。关于昼夜循环,SO2量在清晨和晚间晚上更大,中午较低,符合污染物排放和大气稳定性的昼夜变化。在冬季SO2和气溶胶之间也发现了与0.6和0.9之间的相关系数的强烈相关性,表明人类学SO2通过形成硫酸盐气溶胶,在本赛季期间的全气溶胶含量显着贡献。观察到的MAX-DOAS SO2表面浓度的昼夜循环也与原位数据分配的那些非常好(相关系数接近0.9),表明我们检索的良好可靠性和鲁棒性。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号