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Possibility Study of Volcanic SO_2 Emission Monitoring with Geostationary Environment Monitoring Spectrometer (GEMS)

机译:用地球静止环境监测光谱仪(GEMS)监测火山SO_2排放的可能性

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Conventional volcanic studies using seismometers, leveling, etc. are still important tools for monitoring volcano activity. Especially, sulfur dioxide (SO_2) has been proved to be a key factor in assessing volcanic activity and eruptions. Despite such importance, most volcanoes are not routinely observed by ground-based optical instruments to detect SO_2. On the other hand, satellite-based remote sensing may provide complementary information about volcanic activity by continuously monitoring using characteristic of strong absorption in the ultraviolet (UV) wavelength ranges. However, these satellite systems launched into polar orbit have a relatively long revisit period of 1 day. The Geostationary Environment Monitoring Spectrometer (GEMS), a newly developed hyper-spectrometer, planned to be launched in March 2020, will provide atmospheric column measurements of sulfur dioxide (SO_2) and other gases such as NO_2, O_3, HCHO and aerosols at least 8 times per day. In this study, we tested possibility of monitoring volcanic SO_2 emission around the Korean peninsula (e.g. Mt. Aso, Mt. Sakurajima) using TROPOMI which has similar spatial resolution as GEMS. The result demonstrates that GEMS will provide reliable, nearly real-time, high temporal resolution detection of SO_2 in time series monitoring.
机译:使用地震仪,水准仪等进行的常规火山研究仍然是监测火山活动的重要工具。特别是,已证明二氧化硫(SO_2)是评估火山活动和喷发的关键因素。尽管具有如此重要的意义,但地面光学仪器无法常规观察大多数火山来检测SO_2。另一方面,基于卫星的遥感可以通过使用紫外线(UV)波长范围内的强吸收特性连续监视来提供有关火山活动的补充信息。但是,这些发射进入极轨道的卫星系统的重访期为1天,相对较长。对地静止环境监测光谱仪(GEMS)是一项新开发的高光谱仪,计划于2020年3月发射,它将提供二氧化硫(SO_2)和其他气体(例如NO_2,O_3,HCHO和气溶胶至少8)的大气柱测量每天的次数。在这项研究中,我们测试了使用空间分辨率与GEMS相似的TROPOMI监测朝鲜半岛(例如,阿苏山,樱岛山)火山SO_2排放的可能性。结果表明,GEMS将在时序监测中提供可靠的,接近实时的,高时间分辨率的SO_2检测。

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