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首页> 外文期刊>International Journal of Agricultural and Biological Engineering >Effects of pressure and noise on the stability of photoacoustic signals of trace gas components
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Effects of pressure and noise on the stability of photoacoustic signals of trace gas components

机译:压力和噪声对痕量气体成分光声信号稳定性的影响

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摘要

In essence, photoacoustic spectroscopy (PAS) technology is based on the thermal effect of gas infrared absorption and the acoustic theory of photoacoustic (PA) cell. PAS technology has a good application effect on environmental monitoring in agriculture. In this study, carbon monoxide and sulfur dioxide were used as examples to explain the potential application of PAS technology and analyze the influence mechanism of pressure and noise on the PA signal. The relationship between PA signal amplitude and the concentration of gas was determined by calibration. The pressure and noise characteristics were experimentally studied, and the relationship between the PA signal and pressure & noise was obtained. The theoretical analysis and experimental results not only provided a basis for further correction of the influence of pressure, noise and other factors on PA signal but also provided technical support for improving the field application of trace gas non-resonance PA detection device for environmental monitoring in agriculture.
机译:实质上,光声光谱(PAS)技术基于气体红外吸收和光声(PA)电池的声学理论的热效应。 PAS技术对农业环境监测具有良好的应用。在该研究中,将一氧化碳和二氧化硫作为实施例,以解释PAS技术的潜在应用,并分析PA信号对压力和噪声的影响机制。通过校准确定PA信号幅度与气体浓度之间的关系。实验研究了压力和噪声特性,获得了PA信号和压力和噪声之间的关系。理论分析和实验结果不仅为进一步校正了PA信号对压力,噪声和其他因素的影响而提供了基础,而且还提供了用于改善用于环境监测的痕量气体非共振PA检测装置的现场应用的技术支持农业。

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