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新疆干旱区城市对流层NO_2垂直柱浓度的时空分布 被引量:2

Temporal and spatial variation for vertical column density of tropospheric NO_2 over arid area city of Xinjiang
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摘要 基于地基多轴差分吸收光谱仪(MAX-DOAS),分析2014年3月至2016年2月新疆干旱区城市(中等城市库尔勒市和小城市博乐市)对流层NO2垂直柱浓度(VCD)变化规律、分布特征及其影响因素。结果表明:(1)新疆干旱区城市对流层NO_2 VCD采暖期是非采暖期的4倍左右,且有显著的季节特征,表现为冬季>秋季>春季>夏季,库尔勒市的对流层NO_2 VCD年均值大于博乐市,两市对流层NO2VCD日变化峰值在8:00(冬季峰值在9:00)和20:00左右,且晚上的峰值高于早上;(2)库尔勒市和博乐市的对流层NO_2 VCD高值分别达到2.540×1015~4.450×1015、1.630×1015~2.620×1015 molec/cm^2,高值区均集中在商业、工业区,对流层NO_2 VCD低值分别为2.300×1014~1.920×1015、6.000×1014~1.390×1015 molec/cm^2,低值区均集中在居民区、学校周边;(3)库尔勒市和博乐市对流层NO_2 VCD对气象因子有不同程度的响应,其与气压呈正相关,与气温、相对湿度、云量和风速呈负相关。 The characteristics of tropospheric NO2 vertical column density (VCD) in arid area city of Xinjiang (medium city Korla and small city Bole) and its influence factors in March 2014 to February 2016 were analyzed according to the data monitored by ground-based multi-axis differential absorption spectrometer (MAX-DOAS). The results showed that: (1) the tropospheric NO2 VCD during heating period was about 4 times of that during the period without heating and the significant seasonal feature ranked winter〉autumn〉 spring〉 summer. The tropospheric NO2 VCD annual value of Korla was higher than Bole. The daily variation had two peak values at 8:00 (9:00 for win- ter) and 20:00,with the night peak higher than morning peak. (2) The high values of tropospheric NO2 VCD were 2.540 × 1015-4.450 × 1015, 1.630 × 1015-2.620 × 1015 molec/cm2 for Korla and Bole, respectively, which were distributed on commerical and industrial area. The low values of tropospheric NO2 VCD were 2. 300 ×1014-1. 920 × 1015 , 6.000 × 10TM-1.390× 1015 molec/cm2 for Korla and Bole, respectively, which were distributed on school and residential area. (3) The tropospheric NO2 VCD had different degree of response to meteorological elements, with air pressure positively correlated to tropospheric NO2 VCD,air temperature, relative humidity, cloud cover and wind speed negatively correlated to tropospheric NO2 VCD.
出处 《环境污染与防治》 CAS CSCD 北大核心 2017年第10期1131-1134,1139,共5页 Environmental Pollution & Control
基金 乌鲁木齐市科技计划项目(No.P161310004) 国家自然科学基金地区科学基金资助项目(No.41161010) 中国沙漠气象科学研究基金资助项目(No.Sqj2012012)
关键词 NO2垂直柱浓度 对流层 干旱区城市 地基多轴差分吸收光谱仪 NO2 vertical column density troposphere arid area city MAX-DOAS
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