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利用近红外(NIR)腔衰荡光谱法测量大气 CH4 的 13C/12C。

Measurement of the 13C/12C of atmospheric CH4 using near-infrared (NIR) cavity ring-down spectroscopy.

机构信息

Department of Geosciences, Princeton University , Princeton, New Jersey 08544, United States.

出版信息

Anal Chem. 2013 Dec 3;85(23):11250-7. doi: 10.1021/ac401605s. Epub 2013 Nov 19.

Abstract

A near-infrared (NIR) continuous-wave-cavity ring-down spectrometry (CW-CRDS) device was developed with the goal of measuring seasonal changes in the isotopic composition of atmospheric CH4 on Earth and eventually on Mars. The system consisted of three distributed feedback laser diodes (DFB-LDs), two of which were tuned to the absorption line peaks of (12)CH4 and (13)CH4 at 6046.954 cm(-1) and 6049.121 cm(-1), respectively, and a third that measured the baseline at 6050.766 cm(-1). The multiple laser design improved the long-term stability of the system and increased the data acquisition rate. The acquisition frequency was further increased by utilizing a semiconductor optical amplifier (SOA) to initiate cavity ring-down events. The high repetition rate combined with the superhigh reflectivity mirrors yielded precise isotopic measurements in this NIR region, even though the line strengths of CH4 in this region are 200 times weaker than those of the strongest mid-IR absorption bands. The current system has a detection limit of 1.9 × 10(-12) cm(-1), corresponding to 10 pptv of CH4 at 100 Torr. For ambient air samples that contained 1.9 ppmv CH4, the δ(13)C of the CH4 was determined to be -48.7 ± 1.7‰ (1σ).

摘要

开发了一种近红外(NIR)连续波腔衰荡光谱(CW-CRDS)装置,目的是测量地球和最终火星上大气 CH4 的同位素组成的季节性变化。该系统由三个分布式反馈激光二极管(DFB-LD)组成,其中两个分别调谐到 6046.954cm-1 和 6049.121cm-1 的(12)CH4 和(13)CH4 吸收线峰值,第三个则在 6050.766cm-1 处测量基线。多激光设计提高了系统的长期稳定性并增加了数据采集率。通过利用半导体光放大器(SOA)来启动腔衰荡事件,进一步提高了采集频率。高重复率结合超高反射率镜子,即使在该区域 CH4 的线强度比最强的中红外吸收带弱 200 倍,也能在这个近红外区域实现精确的同位素测量。目前的系统检测限为 1.9×10-12cm-1,相当于 100 托时 10pptV 的 CH4。对于含有 1.9ppm CH4 的环境空气样品,CH4 的δ(13)C 被确定为-48.7±1.7‰(1σ)。

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