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Unmanned aerial vehicle measurements of volcanic carbon dioxide fluxes

机译:无人机测量火山二氧化碳通量

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摘要

We report the first measurements of volcanic gases with an unmanned aerial vehicle (UAV). The data were collected at La Fossa crater, Vulcano, Italy, during April 2007, with a helicopter UAV of 3 kg payload, carrying an ultraviolet spectrometer for remotely sensing the SO2 flux (8.5 Mg d(-1)), and an infrared spectrometer, and electrochemical sensor assembly for measuring the plume CO2/SO2 ratio; by multiplying these data we compute a CO2 flux of 170 Mg d(-1). Given the deeper exsolution of carbon dioxide from magma, and its lower solubility in hydro-thermal systems, relative to SO2, the ability to remotely measure CO2 fluxes is significant, with promise to provide more profound geochemical insights, and earlier eruption forecasts, than possible with SO2 fluxes alone: the most ubiquitous current source of remotely sensed volcanic gas data.
机译:我们报告了无人飞行器(UAV)对火山气体的首次测量。数据是在2007年4月在意大利武尔卡诺的La Fossa火山口收集的,该直升机具有3公斤有效载荷的直升机无人机,带有用于遥感SO2通量的紫外光谱仪(8.5 Mg d(-1))和红外光谱仪。 ,以及用于测量羽流CO2 / SO2比的电化学传感器组件;通过将这些数据相乘,我们计算出170 Mg d(-1)的CO2通量。相对于SO2,鉴于岩浆中二氧化碳的更深层释放以及其在水热系统中的溶解度较低,远程测量CO2通量的能力非常重要,有望提供更深入的地球化学见解和更早的喷发预报。仅凭SO2流量即可:遥感火山气体数据的最广泛使用的电流源。

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