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Modelled fate of sulphur and chlorine in rotary lime kilns Part Ⅰ: Chemical equilibria prevailing in the kilns

机译:回转石灰窑中硫和氯的模拟归宿第一部分:窑中普遍存在的化学平衡

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Investigation performed to predict the SO_2 and HCI emissions of rotary kilns have shown that the chemical reactions needed to assess these emissions also enable quantification of the generation rate of build-ups in the preheating zone of these kilns. As anticipated by the theory and confirmed by industrial tests. sulphur and chlorine loops were found. The chlorine loop is closely interconnected to the sulphur loop that is itself influenced by the process conditions prevailing in the kilns. The quantification of the thus resulting emissions and generation of build-ups requires a precise assessment of all reactions involving sulphur and chlorine. However the first results of the modelling showed only a fair agreement between calculations and monitoring results. Further investigations were therefore carried out. Accordingly it was found that potassium plays a key role in the chemical reactions occurring in rotary lime kilns. The inclusion of this element in the modelling enabled a significant increase in the accuracy of the prediction. This paper presents the chemical reactions used in the model.
机译:为预测回转窑的SO_2和HCl排放而进行的研究表明,评估这些排放所需要的化学反应还可以量化这些窑的预热区中堆积物的产生速率。如理论所预期并经工业测试所证实。发现了硫和氯回路。氯回路与硫回路紧密相连,硫回路本身受窑中普遍使用的工艺条件影响。对由此产生的排放物和堆积物的量化需要对涉及硫和氯的所有反应进行精确评估。但是,建模的最初结果表明,计算和监控结果之间只有一个公平的协议。因此,进行了进一步的调查。因此,发现钾在回转石灰窑中发生的化学反应中起关键作用。在建模中包含此元素可以大大提高预测的准确性。本文介绍了该模型中使用的化学反应。

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