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Using cavity ringdown spectroscopy for continuous monitoring of δ13C(CO2) and ƒCO2 in the surface ocean

机译:使用腔衰荡光谱法连续监测海面中的δ13C(CO2)和ƒCO2

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摘要

The role of the global surface ocean as a source and sink for atmospheric carbon dioxide and the flux strengths between the ocean and the atmosphere can be quantified by measuring the fugacity of CO2 (ƒCO2) as well as the dissolved inorganic carbon (DIC) concentration and its isotopic composition in surface seawater. In this work, the potential of continuous wave cavity ringdown spectroscopy (cw-CRDS) for autonomous underway measurements of ƒCO2 and the stable carbon isotope ratio of DIC [δ13C(DIC)] is explored. For the first time, by using a conventional air-sea equilibrator setup, both quantities were continuously and simultaneously recorded during a field deployment on two research cruises following meridional transects across the Atlantic Ocean (Bremerhaven, Germany–Punta Arenas, Chile). Data are compared against reference measurements by an established underway CO2 monitoring system and isotope ratio mass spectrometric analysis of individual water samples. Agreement within ΔƒCO2 = 0.35 μatm for atmospheric and ΔƒCO2 = 2.5 μatm and Δδ13C(DIC) =0.33‰ for seawater measurements have been achieved. Whereas “calibration-free” ƒCO2 monitoring is feasible, the measurement of accurate isotope ratios relies on running reference standards on a daily basis. Overall, the installed CRDS/equilibrator system was shown to be capable of reliable online monitoring of ƒCO2, equilibrium δ13C(CO2), δ13C(DIC), and pO2 aboard moving research vessels, thus making possible corresponding measurements with high spatial and temporal resolution.
机译:可以通过测量CO2的逸散度(ƒCO2)以及溶解的无机碳(DIC)浓度来量化全球表层海洋作为大气二氧化碳的源和汇以及海洋与大气之间的通量强度的作用。在地表海水中的同位素组成在这项工作中,探索了连续波腔衰荡光谱法(cw-CRDS)用于ƒCO2自主进行测量和DIC [δ13C(DIC)]的稳定碳同位素比的潜力。首次使用常规的海海平衡器装置,在横跨大西洋的子午线横断面(德国不来梅港,智利蓬塔阿雷纳斯)的两次研究航行中,在野外部署期间连续并同时记录了两个数量。通过已建立的进行中的CO2监测系统将数据与参考测量值进行比较,并对各个水样进行同位素比质谱分析。大气测量值在ΔƒCO2= 0.35μatm内,并且在海水测量中ΔƒCO2= 2.5μatm和Δδ13C(DIC)= 0.33‰。尽管“免校准”ƒ2二氧化碳监测是可行的,但准确同位素比的测量每天都依赖于运行的参考标准。总体而言,已显示安装的CRDS /平衡器系统能够可靠地在线监测运动中的研究船上的CO2,平衡δ13C(CO2),δ13C(DIC)和pO2,从而可以进行具有高时空分辨率的相应测量。

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