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Measurement of NO<sub>x</sub> concentration at ppb level in high-purity gases based on chemiluminescence method

Acta Physica Sinica(2022)

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Abstract
High-purity gases are widely used in semiconductor device manufacturing and fuel cell industries. However, the impurities have a significant impact on the processing accuracy directly. Thus, it is particularly necessary to carry out the concentration diagnosis of key trace impurity gases. In this work, an integrated system for the simultaneous detection of trace NO/NOx was designed based on the chemiluminescence spectrum theory and the catalytic conversion mechanism of nitrogen oxides. The test experiments reveal that the measurement system has the advantages of high linearity ( R2 = 0.99967 ), high sensitivity, low detection limit ( ~ 25 ppt ) and easy operation; Subsequently, the measurement method for NOx with different high-purity gases were established considering the quenching effect of different background gases on fluorescence and phosphorescent. The detection system was then used to measure the ppb-level NOx impurities in four commonly used high-purity gases ( Ar, O2, CO2, N2 ) in the laboratory. The results show that the NO impurity in CO2 gas is the highest with approximately 9 ppb, and is relatively low, 0 – 4 ppb, in the other high-purity gases. The NO2 impurities in all four high-purity gases are very low (< 6 ppb). Finally, the NOx impurity contents in high-purity gases were evaluated and analyzed based on the gas preparation and purification approach. The aim of the work is to provide a reliable diagnostic approach and data basis of the impurity composition for the fuel cell, semiconductor and other cutting-edge technological fields.
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Key words
chemiluminescence,high-purity gas,trace gas,quenching
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