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Experimental research on ammonia concentration detection with white light-emitting diodes

机译:白光发光二极管氨浓度检测实验研究

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摘要

Ammonia (NH3) is the most abundant alkaline gas in the atmosphere and the cause of the majority of secondary particles in particulate matter PM2.5. The method of ultraviolet spectrum analysis is generally adopted in traditional ammonia concentration detection with a deuterium or xenon lamp, and its cost is relatively high. In this paper, white light-emitting diodes of a lower cost are used as an alternative light source. Then experimental research on ammonia concentration detection is carried out, and the results are compared with those using white light-emitting diodes, deuterium, and xenon lamps. The results show that, under the same experimental conditions, using white light-emitting diodes to measure the ammonia concentration can achieve the same accuracy as using deuterium or xenon lamps. This conclusion provides a solution for light source selection for ammonia concentration detection with low cost and guaranteed accuracy. (C) 2021 Optics Publishing Group
机译:氨(NH3)是大气中最丰富的碱性气体,也是颗粒物PM2.5中大多数二次颗粒物产生的原因。传统的氘灯或氙灯氨浓度检测一般采用紫外光谱分析的方法,其成本相对较高。本文使用成本较低的白光发光二极管作为替代光源。然后进行氨浓度检测的实验研究,并与白光发光二极管、氘灯、氙灯等进行对比。结果表明,在相同的实验条件下,使用白光发光二极管测量氨浓度可以达到与使用氘灯或氙灯相同的精度。该结论为氨浓度检测的光源选择提供了低成本、有保证精度的解决方案。(C) 2021 光学出版集团

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