Photoacoustic Monitoring of CO2 in Biogas Matrix using a Quantum Cascade Laser

B. Lendl, Wolfgang Ritter, M. Harasek, R. Niessner, C. Haisch
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引用次数: 5

Abstract

We have developed an on-line sensor for biogas monitoring using mid-infrared quantum cascade laser (QCL) and photoacoustic (PA) detection. This sensor concept takes advantage of the inherent selectivity provided by mid-IR laser spectroscopy and the small gas volume required in photoacoustic spectroscopy allowing rapid response. Using a distributed feedback QCL emitting at 4.3 mum, the sensor concept as been successfully tested for carbon dioxide measurement under harsh conditions during biogas treatment in a pilot plant. In this application a reliable and rapid gas sensor is required for process control to assure a continuous CO2 concentration below 2%. The obtained results compared favorably with a state of the art NDIR analyzer used as a reference with the distinct advantage of faster response times. Due to the generic nature of the developed PA-QCL sensor concept selective on-line measurement of other important analytes in biogas, such as NH3 and H2S is possible as well.
利用量子级联激光光声监测沼气基质中CO2
我们开发了一种利用中红外量子级联激光(QCL)和光声(PA)检测的沼气在线传感器。这种传感器概念利用了中红外激光光谱提供的固有选择性和光声光谱所需的小气体体积,允许快速响应。使用分布式反馈QCL发射在4.3 μ m,传感器概念已成功地测试了二氧化碳在中试工厂的沼气处理期间的恶劣条件下的测量。在这种应用中,需要可靠和快速的气体传感器进行过程控制,以确保CO2浓度连续低于2%。所获得的结果与作为参考的最先进的NDIR分析仪相比,具有更快的响应时间的明显优势。由于开发的PA-QCL传感器概念的通用性质,选择性在线测量沼气中的其他重要分析物,如NH3和H2S也是可能的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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