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2005—2010年沙尘天气影响我国城市环境空气质量分析   总被引:5,自引:3,他引:2  
根据2005年建成较完整的环保重点城市空气质量日报监测网后的监测数据,分析2005—2010年期间,影响113个环保重点城市空气质量的沙尘天气过程次数范围在每年5~14次之间,平均每年10次左右,总计59次。在此期间,影响113个重点城市空气质量的沙尘天气过程累计的影响时间总计130 d,平均在每年22 d左右。影响环保重点城市的沙尘天气过程主要集中在3—5月,在部分年份的1—2月、6月和11—12月也有出现。受沙尘天气影响,113个重点城市总共的超标天次平均每年在332 d次左右,每年范围在147~546 d次之间。其中,受沙尘暴天气影响的重污染天次平均每年在40 d次左右,每年范围在14~78 d次之间。受沙尘暴天气影响的超标天和重污染天主要出现在3~5月。近年来沙尘天气对我国尤其是北方地区的影响程度很大。每年沙尘天气过程对我国城市空气质量影响的时间不短,尤其在春季对我国东中部地区城市造成了很严重的影响,近年大范围的沙尘天气过程还影响到了我国东南包括台湾地区和香港澳门地区。  相似文献   
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Ground level ozone is responsible for the formation ofsmog, and for a variety of adverse effects on bothhuman and plant life. High concentrations of groundlevel ozone occur during the summer months. This paperdescribes the development of a model to forecast themaximum daily concentration of ozone as a function ofthe maximum surface temperature, for ozonenon-attainment regions in Ohio. The model wasdeveloped by statistical analysis of existing data.Site-specific models were developed initially. Theverification and evaluation of the performancecriteria of the model at each site were explored bycomparing the model with an independent datasetcollected from that site. A generalized statewidemodel was developed from the site-specific models. Theperformance criteria of this model were verified andevaluated by employing the same independent datasetsemployed for the site-specific models. An exceedencemodel to predict the occurrence of ozone exceedencesover 100 ppb has also been presented.  相似文献   
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O3and PM2.5were introduced into the newly revised air quality standard system in February 2012, representing a milestone in the history of air pollution control, and China's urban air quality will be evaluated using six factors(SO2, NO2, O3, CO, PM2.5and PM10) from the beginning of 2013. To achieve the new air quality standard, it is extremely important to have a primary understanding of the current pollution status in various cities. The spatial and temporal variations of the air pollutants were investigated in 26 pilot cities in China from August 2011 to February 2012, just before the new standard was executed. Hourly averaged SO2, NO2and PM10were observed in 26 cities, and the pollutants O3, CO and PM2.5were measured in 15 of the 26 cities. The concentrations of SO2and CO were much higher in the cities in north China than those in the south. As for O3and NO2, however, there was no significant diference between northern and southern cities. Fine particles were found to account for a large proportion of airborne particles, with the ratio of PM2.5to PM10ranging from 55% to 77%. The concentrations of PM2.5(57.5 μg/m3) and PM10(91.2 μg/m3) were much higher than the values(PM2.5: 11.2 μg/m3; PM10 : 35.6 μg/m3) recommended by the World Health Organization. The attainment of the new urban air quality standard in the investigated cities is decreased by 20% in comparison with the older standard without considering O3, CO and PM2.5, suggesting a great challenge in urban air quality improvement, and more eforts will to be taken to control air pollution in China.  相似文献   
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