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Volcanic Plume CO 2 Flux Measurements at Mount Etna by Mobile Differential Absorption Lidar

机译:流动差分吸收激光测量埃特纳火山的火山羽CO 2通量

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摘要

Volcanic eruptions are often preceded by precursory increases in the volcanic carbon dioxide (CO 2 ) flux. Unfortunately, the traditional techniques used to measure volcanic CO 2 require near-vent, in situ plume measurements that are potentially hazardous for operators and expose instruments to extreme conditions. To overcome these limitations, the project BRIDGE (BRIDging the gap between Gas Emissions and geophysical observations at active volcanoes) received funding from the European Research Council, with the objective to develop a new generation of volcanic gas sensing instruments, including a novel DIAL-Lidar (Differential Absorption Light Detection and Ranging) for remote (e.g., distal) CO 2 observations. Here we report on the results of a field campaign carried out at Mt. Etna from 28 July 2016 to 1 August 2016, during which we used this novel DIAL-Lidar to retrieve spatially and temporally resolved profiles of excess CO 2 concentrations inside the volcanic plume. By vertically scanning the volcanic plume at different elevation angles and distances, an excess CO 2 concentration of tens of ppm (up to 30% above the atmospheric background of 400 ppm) was resolved from up to a 4 km distance from the plume itself. From this, the first remotely sensed volcanic CO 2 flux estimation from Etna’s northeast crater was derived at ≈2850–3900 tons/day. This Lidar-based CO 2 flux is in fair agreement with that (≈2750 tons/day) obtained using conventional techniques requiring the in situ measurement of volcanic gas composition.
机译:火山喷发通常先于火山二氧化碳(CO 2)通量增加。不幸的是,用于测量火山CO 2的传统技术需要近通风的原位羽流测量,这可能对操作员造成危险并将仪器暴露在极端条件下。为了克服这些局限性,BRIDGE项目(弥合活火山中的气体排放与地球物理观测之间的差距)获得了欧洲研究理事会的资助,目的是开发新一代的火山气传感仪器,包括新型的DIAL-Lidar (差分吸收光检测和测距)用于远程(例如,远端)CO 2观察。在这里,我们报告在山顶进行的一次野战的结果。埃特纳火山(Etna)从2016年7月28日至2016年8月1日,在此期间,我们使用了这种新型的DIAL-Lidar来检索时空分辨的火山羽内过量CO 2浓度分布图。通过以不同的仰角和距离垂直扫描火山羽流,可以在距羽流本身多达4 km的距离内分辨出数十ppm的过量CO 2浓度(比大气本底高出400 ppm高达30%)。据此,从埃特纳火山的东北火山口获得的第一个遥感火山CO 2通量估算值约为每天2850-3900吨。这种基于激光雷达的CO 2通量与使用需要现场测量火山气体成分的常规技术获得的通量(≈2750吨/天)非常吻合。

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