Effect of Meteorological Variables on Air Pollutants Variation in Arid Climates

J. Radaideh
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引用次数: 25

Abstract

Air quality and climatic factors are closely linked through atmospheric chemical reactions and dynamic processes. This work based on a study conducted over an area of industrial plant located in Saudi Arabia during three consecutive weeks with noticeable varying meteorological parameters in the last week of survey with the main objective to examine the role of climatic factors on differences in air pollutant concentration. A systematic analysis of air pollutants including TVOC, CO, SO2, NO2, and O3 and meteorological parameters including temperature, wind speed (WS), and relative humanity (RH) was conducted for a continuous period of 3 weeks from March to mid-April 2015. Acquired results indicate most of observed key air pollutants increase with increase in relative humidity, except NO2, which experiences a decrease in concentrations simultaneous with increasing relative humidity. This survey study suggests that concentrations of TVOC concentrations increase by 201%, CO by 15.2%, SO2 by 21.6% and ozone by 16% as a direct contribution to relative humidity change. While NO2 experiences a decrease by 53.4% as a result of increase in relative humidity. Ozone exhibits only slightly spatial variation due to sudden change of meteorological variables.
气象变量对干旱气候下大气污染物变化的影响
空气质量和气候因素通过大气化学反应和动态过程紧密联系在一起。这项工作基于对位于沙特阿拉伯的一个工业工厂区域进行的连续三周的研究,在调查的最后一周有明显的气象参数变化,主要目的是检查气候因素对空气污染物浓度差异的作用。2015年3月至4月中旬连续3周,系统分析了TVOC、CO、SO2、NO2、O3等大气污染物和气温、风速(WS)、相对湿度(RH)等气象参数。实测结果表明,除NO2浓度随相对湿度的增加而降低外,其余主要大气污染物均随相对湿度的增加而增加。该调查研究表明,TVOC浓度增加了201%,CO增加了15.2%,SO2增加了21.6%,臭氧增加了16%,这是相对湿度变化的直接贡献。而NO2则因相对湿度的增加而减少53.4%。由于气象变量的突然变化,臭氧仅表现出轻微的空间变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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