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Experimental investigation of N2O formation in selective non-catalytic NOx reduction processes performed in stoker boiler

机译:煤锅炉选择性非催化还原NOx过程中N2O形成的实验研究

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Stoker fired boiler plants are common throughout Eastern Europe. Increasingly strict emission standards will require application of secondary NOx abatement systems on such boilers. Yet operation of such systems, in addition to reducing NOx emissions, may also lead to emission of undesirable substances, for example N2O. This paper presents results of experimental tests concerning N2O formation in the selective non-catalytic NOx emission reduction process (SNCR) in a stoker boiler (WR 25 type). Obtained results lead to an unambiguous conclusion that there is a dependency between the NOx and N2O concentrations in the exhaust gas when SNCR process is carried out in a coal-fired stoker boiler. Fulfilling new emission standards in the analysed equipment will require 40–50% reduction of NOx concentration. It should be expected that in such a case the N2O emission will be approximately 55–60 mg/m3, with the NOx to N2O conversion factor of about 40%.
机译:斯托克燃烧锅炉工厂在整个东欧很常见。日益严格的排放标准将要求在此类锅炉上应用二次NOx减排系统。除了减少NOx排放之外,这种系统的运行还可能导致排放有害物质,例如N2O。本文介绍了关于在炉式锅炉(WR 25型)中的选择性非催化性NOx减排过程(SNCR)中N2O形成的实验测试结果。获得的结果得出一个明确的结论,即在燃煤锅炉中进行SNCR过程时,废气中的NOx和N2O浓度之间存在依赖性。要在分析设备中达到新的排放标准,将需要减少40-50%的NOx浓度。可以预料,在这种情况下,N2O的排放量约为55-60 mg / m3,而NOx到N2O的转化率约为40%。

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