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Orthogonal Experiments on Ozone Oxidation Denitration of Sintering Flue Gas

机译:臭氧氧化脱硝烟气的正交实验

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Ozone oxidation denitration process has become the most closely watched sintering flue gas denitration technology currently. In order to investigate the influence of different operating conditions on NO oxidation in practical engineering application of this technology, an ozone oxidation system was built, and sintering flue gas was extracted from the pipeline between the induced draft fan and the desulfurization tower. The influence of flue gas flow and inlet NO concentration on NO oxidation was investigated by orthogonal experiments. The results indicated that NO oxidation efficiency increased with the O_3 yield of ozone generator and O_3 dosage under any flue gas conditions. Under the same inlet NO concentration, NO oxidation efficiency decreased with the increase of flue gas flow. Under the same flue gas flow and O_3 dosage, with the increase of inlet NO concentration, the O_3 utilization rate increased while the average oxidation energy consumption of each NO molecule decreased, which was beneficial to promote the NO oxidation efficiency. In practical engineering application, the setting of O_3 dosage should take into account both engineering design indicators and economy. Ozone oxidation denitration process could achieve NO oxidation efficiency higher than 90% through reasonable design, indicating a good industrial application prospect in the treatment of sintering flue gas.
机译:臭氧氧化脱硝过程已成为目前最密切关注的烧结烟气脱硝技术。为了探讨不同操作条件对本技术的实际工程应用中没有氧化的影响,建造了臭氧氧化系统,并从诱导风扇和脱硫塔之间的管道中提取烧结烟气。通过正交实验研究了烟道气流和入口没有浓度的影响。结果表明,在任何烟道气条件下,臭氧发生器的O_3产量和O_3剂量没有增加氧化效率。在不浓度的相同入口下,随着烟道气流的增加,没有氧化效率降低。在相同的烟气流量和O_3剂量下,随着入口的增加,O_3利用率增加,而每个未分子的平均氧化能量消耗降低,这有利于促进无氧化效率。在实用工程应用中,O_3剂量的设置应考虑到工程设计指标和经济。臭氧氧化脱硝过程通过合理设计可以达到高于90%的氧化效率,表明烧结烟气处理的良好工业应用前景。

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