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Quartz-enhanced photo-acoustic spectroscopy for breath analyses

机译:Quartz-Enhanced Photo-Acoustic光谱,用于呼吸分析

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An innovative and novel quartz-enhanced photoacoustic spectroscopy (QEPAS) sensor for highly sensitive and selective breath gas analysis is introduced. The QEPAS sensor consists of two acoustically coupled micro-resonators (mR) with an off-axis 20 kHz quartz tuning fork (QTF). The complete acoustically coupled mR system is optimized based on finite element simulations and experimentally verified. Due to the very low fabrication costs the QEPAS sensor presents a clear breakthrough in the field of photoacoustic spectroscopy by introducing novel disposable gas chambers in order to avoid cleaning after each test. The QEPAS sensor is pumped resonantly by a nanosecond pulsed single-mode mid-infrared optical parametric oscillator (MIR OPO). Spectroscopic measurements of methane and methanol in the 3.1 μm to 3.7 μm wavelength region is conducted. Demonstrating a resolution bandwidth of 1 cm~(-1). An Allan deviation analysis shows that the detection limit at optimum integration time for the QEPAS sensor is 32 ppbv@190s for methane and that the background noise is solely due to the thermal noise of the QTF. Spectra of both individual molecules as well as mixtures of molecules were measured and analyzed. The molecules are representative of exhaled breath gasses that are bio-markers for medical diagnostics.
机译:介绍了一种用于高敏感和选择性呼气分析的创新和新型石英增强光声光谱(QEPAS)传感器。 QePAS传感器由两个声学耦合的微谐振器(MR)组成,带有轴外20kHz石英调谐叉(QTF)。基于有限元模拟并通过实验验证,完成了完整的声学耦合MR系统。由于制造成本非常低,QePAS传感器通过引入新型一次性气室以避免在每次测试之后清洁的清洁来呈现光声光谱技术领域的明显突破。通过纳秒脉冲单模中红外光学参数振荡器(MIR OPO)共振Qepas传感器。进行3.1μm至3.7μm波长区域的甲烷和甲醇的光谱测量。展示1cm〜(-1)的分辨率带宽。 Allan偏差分析表明,QEPAS传感器最佳集成时间的检测限为32个甲烷的PPBV @ 190s,并且背景噪声完全是由于QTF的热噪声。测量并分析单个分子的光谱以及分子的混合物。分子代表呼出的呼吸气体,是医疗诊断的生物标记。

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