Nelson David D, McManus Barry, Urbanski Shawn, Herndon Scott, Zahniser Mark S
Aerodyne Research Inc., 45 Manning Road, Billerica, MA 10821, USA.
Spectrochim Acta A Mol Biomol Spectrosc. 2004 Dec;60(14):3325-35. doi: 10.1016/j.saa.2004.01.033.
A compact, fast response, mid-infrared absorption spectrometer using thermoelectrically (TE) cooled pulsed quantum cascade (QC) lasers and TE detectors has been developed to demonstrate the applicability of QC lasers for high precision measurements of nitrous oxide and methane in the earth's atmosphere. Reduced pressure extractive sampling with a 56 m path length, 0.5 l volume, multiple pass absorption cell allows a time response of <0.1s which is suitable for eddy correlation flux measurements for these gases. Precision of 0.3 ppb (rms, 1s averaging time) or 0.1% of the ambient concentration for N(2)O (4 ppb or 0.2% of ambient for CH(4)), has been demonstrated using QC lasers at 4.5 microm (7.9 microm for CH(4)), corresponding to an absorbance precision of 4 x 10(-5) Hz(-1/2) (8 x 10(-5) Hz(-1/2) for CH(4)). Stabilization of the temperature of the optical bench and the pulse electronics results in a minimum Allan variance corresponding to 0.06 ppb for N(2)O with an averaging time of 100 s (0.7 ppb with an averaging time of 200 s for CH(4)). The instrument is capable of long-term, unattended, continuous operation without cryogenic cooling of either laser or detector.
一种使用热电(TE)冷却的脉冲量子级联(QC)激光器和TE探测器的紧凑型、快速响应中红外吸收光谱仪已被开发出来,以证明QC激光器在高精度测量地球大气中一氧化二氮和甲烷方面的适用性。采用56米光程、0.5升体积的多次反射吸收池进行减压萃取采样,时间响应小于0.1秒,适用于这些气体的涡动相关通量测量。使用4.5微米(甲烷为7.9微米)的QC激光器,已证明对于一氧化二氮的测量精度为0.3 ppb(均方根,1秒平均时间)或环境浓度的0.1%(甲烷为4 ppb或环境浓度的0.2%),对应于4×10⁻⁵Hz⁻¹/²(甲烷为8×10⁻⁵Hz⁻¹/²)的吸光度精度。光学平台和脉冲电子设备温度的稳定导致最小阿伦方差,对于一氧化二氮,平均时间为100秒时对应0.06 ppb(甲烷平均时间为200秒时为0.7 ppb)。该仪器能够在不使用低温冷却激光器或探测器的情况下进行长期、无人值守的连续运行。