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A new method research of monitoring low concentration NO and SO_2 mixed gas

机译:一种监测低浓度NO和SO_2混合气体的新方法研究

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In order to reduce the pollution of the environment, China has implemented a new ultra-low emission control regulations for polluting gas, requiring new coal-fired power plant emissions SO_2 less than 30ppm, NO less than 75ppm, NO_2 less than 50ppm, Monitoring low concentration of NO and SO_2 mixed gases, DOAS technology facing new challenges, SO_2 absorb significantly weaken at the original absorption peak, what's more the SNR is very low, it is difficult to extract the characteristic signal, and thus cannot obtain its concentration. So it cannot separate the signal of NO from the mixed gas at the wavelength of 200~230nm through the law of spectral superposition, it cannot calculate the concentration of NO. the classical DOAS technology cannot meet the needs of monitoring. In this paper, we found another absorption spectrum segment of SO_2, the SNR is 10 times higher than before, Will not be affected by NO, can calculate the concentration of SO_2 accurately, A new method of segmentation and demagnetization separation technology of spectral signals is proposed, which achieves the monitoring the low concentration mixed gas accurately. this function cannot be achieved by the classical DOAS. Detection limit of this method is 0.1ppm per meter which is higher than before, The relative error below 5% when the concentration between 0~5ppm, the concentration of NO between 6~75ppm and SO_2 between 6~30ppm the relative error below 1.5%, it has made a great breakthrough In the low concentration of NO and SO_2 monitoring. It has great scientific significance and reference value for the development of coal-fired power plant emission control, atmospheric environmental monitoring and high-precision on-line instrumentation.
机译:为了减少环境的污染,中国实施了污染气体的新型超低排放控制法规,需要新的燃煤电厂排放SO_2小于30ppm,不低于75ppm,NO_2少于50ppm,监测低NO和SO_2混合气体浓度,DOAS技术面临新的挑战,SO_2吸收在原始吸收峰值显着削弱,更高的SNR非常低,难以提取特征信号,因此不能获得其浓度。因此,通过光谱叠加的定律,它不能将NO的信号从200〜230nm的波长分离,不能计算NO的浓度。经典DOAS技术无法满足监测的需求。在本文中,我们发现了SO_2的另一个吸收光谱段,SNR比之前的10倍,不会受到否的影响,可以确定地计算SO_2的浓度,一种新的分割和解信号的分割方法的光谱信号的分离技术提出,这使得精确地实现了低浓度的混合气体。该函数不能通过古典DOA来实现。该方法的检测极限为每米为0.1ppm,比以前高,相对误差低于0〜5ppm之间的浓度,浓度不到6〜75ppm,SO_2之间的相对误差低于1.5% ,它在低浓度的NO和SO_2监测中取得了巨大的突破。它对燃煤发电量排放控制,大气环境监测和高精度在线仪器具有很大的科学意义和参考价值。

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