Evaluation of SO2 emission from Mount Etna using diurnal and nocturnal multispectral IR and visible imaging spectrometer thermal IR remote sensing images and radiative transfer models
Evaluation of SO2 emission from Mount Etna using diurnal and nocturnal multispectral IR and visible imaging spectrometer thermal IR remote sensing images and radiative transfer models
复制标题
使用昼间和夜间多光谱红外和可见光成像光谱仪热红外遥感图像和辐射传输模型评估埃特纳火山的 SO2 排放
DOI:
10.1029/1999jb900099
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发表时间:
1999
影响因子:
--
通讯作者:
A. Sterni
中科院分区:
文献类型:
--
作者:
S. Teggi;M. Bogliolo;M. Buongiorno;S. Pugnaghi;A. Sterni
We describe a model to evaluate the volcanic SO2 emission using images acquired by the airborne multispectral infrared and visible imaging spectrometer (MIVIS) in the thermal infrared spectral region. The estimating procedure consists of mapping of the SO2 columnar content and evaluation of the total SO2 flux emitted by the volcano. All the atmospheric radiative effects, including the SO2 plume emission/absorption, are computed by the MODTRAN 3.5 radiative transfer code. We apply the model to two MIVIS images acquired over Mount Etna, located on the east coast of Sicily, Italy, during the “Sicilia-94” remote sensing campaign on July 24 and 25, 1994. The June 25 image was acquired during the night; this is the first attempt to estimate the SO2 content in volcanic plume using nocturnal thermal infrared images. The total flux estimates range from 20.9 kg s−1 (1810 t d−1) to 82.2 kg s−1 (7100 t d−1) depending on the plume geometry used in the procedure. These results, except one case (82.2 kg s−1), are in agreement with the estimates derived from correlation spectrometer (COSPEC) measurements collected during the same period. We also evaluate the dependencies of the results on several parameters such as plume geometry, surface emissivity, water vapor content, and wind speed.