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Optimising a fall out dust monitoring sampling programme at a cement manufacturing plant in South Africa

机译:优化南非水泥制造厂的尘埃落尘监测采样程序

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The aim of this study at the specific cement manufacturing plant and open cast mine was to develop a positioning guideline for monitoring equipment and to optimise the fall out dust sampling programme. A baseline study was conducted on existing practices and legal requirements relating to fall out dust monitoring. The different methods and techniques for the identification of particulate emission sources and the calculation of emission rates were evaluated in order to identify the simplest and most cost effective options. Due to the complexity of sampling particulate emissions, emission factors and existing stack monitoring results were used to calculate the emissions. The quantified point and fugitive emissions rates were used to populate a dust dispersion model and the modeling results were compared with the existing monitoring program results. Due to the complexity of actual measurements or applying the principles of a mass balance in the total cement manufacturing process to calculate emission rates it was found that the selected use of emission factors is a simpler and less costly method. The study concluded that, after superimposing the dispersion model to the results from the existing sampling positions, existing sampling positions are not optimally located. A guideline for the optimisation of a fall out dust monitoring program is proposed.
机译:这项针对特定水泥生产厂和露天矿的研究旨在制定监测设备的定位指南,并优化落尘采样计划。进行了有关掉落粉尘监测的现有实践和法律要求的基线研究。为了确定最简单和最具成本效益的方案,对用于识别颗粒物排放源和计算排放率的不同方法和技术进行了评估。由于采样颗粒物排放的复杂性,使用排放因子和现有烟囱监测结果来计算排放量。使用定量点和逃逸排放率来建立粉尘扩散模型,并将建模结果与现有的监控程序结果进行比较。由于实际测量的复杂性或在整个水泥生产过程中应用质量平衡的原理来计算排放率,因此发现,选择使用排放因子是一种更简单且成本更低的方法。研究得出的结论是,在将色散模型与现有采样位置的结果叠加之后,现有采样位置的位置并不是最优的。提出了优化落尘监测程序的指南。

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