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Variations in the Order of Reaction: An Implication on Atmospheric Diffusion with Transformation and Deposition of SO2 in Smoke Plume

机译:反应顺序的变化:对烟气中SO2转化和沉积的大气扩散影响

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An unsteady state Lagrangian diffusion model with consideration for the removal of sulphur dioxide through chemical transformation in the planetary boundary layer has been developed and evaluated in comparison with 2 existing models. The data used were from episodes of industrial emissions in a sub-urban area monitoring studies in South Africa. The effect of varying transformation rate was investigated using the three different overall rate constants for the advection of SO2 in smoke plume between a source (power station smoke stack) and a receptor point (ground based sampling site) under the influence of the local meteorology. The concentration distribution in the along-wind direction revealed that SO2 oxidation rate as second order with deposition as first order predicted the observed ambient concentration to an accuracy of about 91.9%.
机译:考虑到通过行星边界层中的化学转化去除二氧化硫的非稳态拉格朗日扩散模型已经开发并与两个现有模型进行了比较。所使用的数据来自南非郊区区域监测研究中的工业排放事件。在当地气象学的影响下,使用三个不同的总速率常数来研究源(电站烟囱)与接收点(地面采样点)之间烟羽中SO2的平流,从而研究了不同转化率的影响。沿风向的浓度分布表明,SO2的氧化速率以沉积为第一级为第二级,预测的观测到的环境浓度的准确度约为91.9%。

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