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1.
Background, Aim and Scope Air quality is an field of major concern in large cities. This problem has led administrations to introduce plans and regulations to reduce pollutant emissions. The analysis of variations in the concentration of pollutants is useful when evaluating the effectiveness of these plans. However, such an analysis cannot be undertaken using standard statistical techniques, due to the fact that concentrations of atmospheric pollutants often exhibit a lack of normality and are autocorrelated. On the other hand, if long-term trends of any pollutant’s emissions are to be detected, meteorological effects must be removed from the time series analysed, due to their strong masking effects. Materials and Methods The application of statistical methods to analyse temporal variations is illustrated using monthly carbon monoxide (CO) concentrations observed at an urban site. The sampling site is located at a street intersection in central Valencia (Spain) with a high traffic density. Valencia is the third largest city in Spain. It is a typical Mediterranean city in terms of its urban structure and climatology. The sampling site started operation in January 1994 and monitored CO ground level concentrations until February 2002. Its geographic coordinates are W0°22′52″ N39°28′05″ and its altitude is 11 m. Two nonparametric trend tests are applied. One of these is robust against serial correlation with regards to the false rejection rate, when observations have a strong persistence or when the sample size per month is small. A nonparametric analysis of the homogeneity of trends between seasons is also discussed. A multiple linear regression model is used with the transformed data, including the effect of meteorological variables. The method of generalized least squares is applied to estimate the model parameters to take into account the serial dependence of the residuals of this model. This study also assesses temporal changes using the Kolmogorov-Zurbenko (KZ) filter. The KZ filter has been shown to be an effective way to remove the influence of meteorological conditions on O3 and PM to examine underlying trends. Results The nonparametric tests indicate a decreasing, significant trend in the sampled site. The application of the linear model yields a significant decrease every twelve months of 15.8% for the average monthly CO concentration. The 95% confidence interval for the trend ranges from 13.9% to 17.7%. The seasonal cycle also provides significant results. There are no differences in trends throughout the months. The percentage of CO variance explained by the linear model is 90.3%. The KZ filter separates out long, short-term and seasonal variations in the CO series. The estimated, significant, long-term trend every year results in 10.3% with this method. The 95% confidence interval ranges from 8.8% to 11.9%. This approach explains 89.9% of the CO temporal variations. Discussion The differences between the linear model and KZ filter trend estimations are due to the fact that the KZ filter performs the analysis on the smoothed data rather than the original data. In the KZ filter trend estimation, the effect of meteorological conditions has been removed. The CO short-term componentis attributable to weather and short-term fluctuations in emissions. There is a significant seasonal cycle. This component is a result of changes in the traffic, the yearly meteorological cycle and the interactions between these two factors. There are peaks during the autumn and winter months, which have more traffic density in the sampled site. There is a minimum during the month of August, reflecting the very low level of vehicle emissions which is a direct consequence of the holiday period. Conclusions The significant, decreasing trend implies to a certain extent that the urban environment in the area is improving. This trend results from changes in overall emissions, pollutant transport, climate, policy and economics. It is also due to the effect of introducing reformulated gasoline. The additives enable vehicles to burn fuel with a higher air/fuel ratio, thereby lowering the emission of CO. The KZ filter has been the most effective method to separate the CO series components and to obtain an estimate of the long-term trend due to changes in emissions, removing the effect of meteorological conditions. Recommendations and Perspectives Air quality managers and policy-makers must understand the link between climate and pollutants to select optimal pollutant reduction strategies and avoid exceeding emission directives. This paper analyses eight years of ambient CO data at a site with a high traffic density, and provides results that are useful for decision-making. The assessment of long-term changes in air pollutants to evaluate reduction strategies has to be done while taking into account meteorological variability  相似文献   
2.
根据1999年~2003年大连市区声环境质量的监测数据,采用两次残差修正GM(1,1)对2010年前声环境质量进行预测结果表明,修正后模型均为一级模型,进行中、短期预测精度高。预测结果可为城市噪声污染防治提供科学的依据。  相似文献   
3.
根据参窝水库近几年的水质监测资料,对参窝水库的水体自净能力及水质变化规律进行了较深入的研究、计算出主要污染物在参窝水库的自净率,分析了参窝水库水质变化规律,为参窝水库的水污染防治提供了科学的依据。  相似文献   
4.
根据近两年高邮市试点工作经验,介绍基本农田分等定级的环境监测与评价方法,认为积极开展农田环境监测并进行科学评价是基本农田保护的重要工作内容。  相似文献   
5.
水质模拟及趋势分析   总被引:1,自引:0,他引:1  
根据洛河、伊河河流及流经地区特征 ,选择具有代表性的断面 ,选用一维河流有限差分水质模型 ,计算洛河、伊河 1 995~2 0 0 0年主要断面污染物浓度 ,并对其进行评价。采用季节性肯达尔检验法 ,对计算出的洛河、伊河 1 995~ 2 0 0 0年主要断面污染物浓度进行趋势分析 ,并分析其变化特征及形成原因  相似文献   
6.
长江,嘉陵江重庆城区段二维水质对流扩散数学模型   总被引:6,自引:0,他引:6  
对二水质对流扩散数学模型的有限差分解作了较详细的叙述,同时对距离步长,时间步长计算,网络内水深,流速,横向扩散系数的求取也作了简要介绍。  相似文献   
7.
调查城市生活和工业污染现状,进一步分析污水处理工程的环境效益,社会效益,经济效益,阐述铁岭市污水处理厂建设的重要性和必要性。  相似文献   
8.
加强中、小学生环境素质教育,首先要加强领域必教师的环境意识,其次要有一系列的规划和措施,最终达到加强环境素质教育。  相似文献   
9.
根据大窑湾后6个泊位疏浚工程本底调查和疏浚监测结果,借助因子分析探讨了疏浚前后水环境要素的变化特征及相关关系,找出了控制污染物分布的主要因子,评价了疏浚对海洋环境的影响。  相似文献   
10.
张美花 《云南环境科学》2005,24(Z1):106-107
介绍了楚雄市饮用水源的水质情况,分析了饮用水源地主要污染源及水环境问题,并初步提出了环保对策与措施。  相似文献   
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