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利用宽带开放路径双梳光谱法测定精确的多物种农业气体通量。

Precise multispecies agricultural gas flux determined using broadband open-path dual-comb spectroscopy.

作者信息

Herman Daniel I, Weerasekara Chinthaka, Hutcherson Lindsay C, Giorgetta Fabrizio R, Cossel Kevin C, Waxman Eleanor M, Colacion Gabriel M, Newbury Nathan R, Welch Stephen M, DePaola Brett D, Coddington Ian, Santos Eduardo A, Washburn Brian R

机构信息

Applied Physics Division, National Institute of Standards and Technology, Boulder, CO 80305, USA.

Department of Physics, University of Colorado Boulder, Boulder, CO 80309, USA.

出版信息

Sci Adv. 2021 Mar 31;7(14). doi: 10.1126/sciadv.abe9765. Print 2021 Mar.

Abstract

Advances in spectroscopy have the potential to improve our understanding of agricultural processes and associated trace gas emissions. We implement field-deployed, open-path dual-comb spectroscopy (DCS) for precise multispecies emissions estimation from livestock. With broad atmospheric dual-comb spectra, we interrogate upwind and downwind paths from pens containing approximately 300 head of cattle, providing time-resolved concentration enhancements and fluxes of CH, NH, CO, and HO. The methane fluxes determined from DCS data and fluxes obtained with a colocated closed-path cavity ring-down spectroscopy gas analyzer agree to within 6%. The NH concentration retrievals have sensitivity of 10 parts per billion and yield corresponding NH3 fluxes with a statistical precision of 8% and low systematic uncertainty. Open-path DCS offers accurate multispecies agricultural gas flux quantification without external calibration and is easily extended to larger agricultural systems where point-sampling-based approaches are insufficient, presenting opportunities for field-scale biogeochemical studies and ecological monitoring.

摘要

光谱学的进展有可能增进我们对农业过程及相关微量气体排放的理解。我们采用现场部署的开放路径双梳状光谱技术(DCS)来精确估算牲畜的多种气体排放。利用宽泛的大气双梳状光谱,我们对含有约300头牛的畜栏的上风和下风路径进行探测,提供CH、NH、CO和HO的时间分辨浓度增强值和通量。由DCS数据确定的甲烷通量与使用并置的封闭路径光腔衰荡光谱气体分析仪获得的通量在6%以内相符。NH浓度反演的灵敏度为十亿分之十,并以8%的统计精度和低系统不确定性得出相应的NH3通量。开放路径DCS无需外部校准即可提供准确的多种农业气体通量量化,并且易于扩展到基于点采样方法不足的更大农业系统,为田间尺度的生物地球化学研究和生态监测提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7436/8011971/f0946a5b9b73/abe9765-f1.jpg

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