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Lidar detection of carbon dioxide in volcanic plumes

机译:火山羽毛中二氧化碳的激光雷达检测

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Volcanic gases give information on magmatic processes. In particular, anomalous releases of carbon dioxide precede volcanic eruptions. Up to now, this gas has been measured in volcanic plumes with conventional measurements that imply the severe risks of local sampling and can last many hours. For these reasons and for the great advantages of laser sensing, the thorough development of volcanic lidar has been undertaken at the Diagnostics and Metrology Laboratory (UTAPRAD-DIM) of the Italian National Agency for New Technologies, Energy and Sustainable Economic Development (ENEA). In fact, lidar profiling allows one to scan remotely volcanic plumes in a fast and continuous way, and with high spatial and temporal resolution. Two differential absorption lidar instruments will be presented in this paper: BILLI (BrIdge voLcanic LIdar), based on injection seeded Nd:YAG laser, double grating dye laser, difference frequency mixing (DFM) and optical parametric amplifier (OPA), and VULLI (VULcamed Lidar), based on injection seeded Nd:YAG laser and optical parametric oscillator (OPO). The first one is funded by the ERC (European Research Council) project BRIDGE and the second one by the ERDF (European Regional Development Fund) project VULCAMED. While VULLI has not yet been tested in a volcanic site, BILLI scanned the gas emitted by Pozzuoli Solfatara (Campi Flegrei volcanic area, Naples, Italy) during a field campaign carried out from 13 to 17 October 2014. Carbon dioxide concentration maps were retrieved remotely in few minutes in the crater area. Lidar measurements were in good agreement with well-established techniques, based on different operating principles. To our knowledge, it is the first time that carbon dioxide in a volcanic plume is retrieved by lidar, representing the first direct measurement of this kind ever performed on an active volcano and showing the high potential of laser remote sensing in geophysical research.
机译:火山气体提供有关岩石工艺的信息。特别是,异常释放二氧化碳在火山岩爆发之前。到目前为止,这种气体已经在火山羽毛中测量,具有常规测量,这意味着局部采样的严重风险,并且可以持续多小时。由于这些原因和激光传感器的巨大优势,火山激光雷达的深入发展已经在意大利国家的诊断和计量实验室(UTAPRAD-DIM)的新技术,能源和可持续经济发展(ENEA)承担。实际上,激光乐队分析允许以快速和连续的方式扫描远程火山羽毛,并且具有高空间和时间分辨率。本文将介绍两种微分吸收激光乐仪仪器:Billi(桥火山LIDAR),基于注射种子Nd:YAG激光,双光栅染料激光,差频混合(DFM)和光学参数放大器(OPA)和VULLI(基于喷射种子Nd:YAG激光器和光学参数振荡器(OPO)的典型激光器。第一个由ERC(欧洲研究委员会)项目桥和ERDF(欧洲区域发展基金)项目的第二个资助。虽然Vulli尚未在火山网站上进行测试,但比利尼扫描了2014年10月13日至17日的实地活动期间由Pozzuoli Solfatara(Campi Flegrei火山,那不勒斯)发出的天然气。远程检索二氧化碳浓度图在火山口的几分钟内。 LIDAR测量与基于不同的经营原则,与既定技术一致。为了我们的知识,LIDAR首次检索火山羽毛中的二氧化碳,代表在活性火山上进行的第一次直接测量,并显示出地球物理研究中激光遥感的高潜力。

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