估算火山烟柱中二氧化硫含量的光谱仪

I. I. Bruchkouski, H. S. Litvinovich
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引用次数: 0

摘要

本工作介绍了自主便携式光谱仪DEVI (Doas探险火山仪器)的开发和实现,旨在通过远程光学方法Doas(差分光学吸收光谱)在290-365 nm范围内测量火山羽流中的so2倾斜柱,分辨率至少为1 nm。为实现这一目标,解决了以下任务:光谱仪的实际实现,包括光学方案的设计;分光计外壳设计,减少散射辐射,便于调整;应用附加传感器记录测量条件;实验室测量以确定光谱仪的特性;火山柱中so2斜柱的野外测量和初步数据处理。在分光计设计阶段,采用Zemax软件中的数值模拟方法,同时采用DOAS对提取so2斜柱的实验数据进行处理。我们的实验室测量表明,DEVI光谱仪的光谱分辨率为0.58±0.5 nm,角视场为1 × 0.25°。为了提高信号的信噪比,在实验确定的DEVI探测器噪声参数基础上引入数学滤波,实现了对火山柱中so2斜柱的估计。DEVI在2021年7月至8月、2021年7月至8月和2022年(31.07-13.08.2021和27.07-29.08.2022)期间对千岛群岛进行了成功的测试。野外测量和数据处理表明,奇林科坦火山的so2斜柱值为(7.5±1.2)·1017分子/ cm2。所得估计与其他火山的已知结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spectrometer for Estimating SO2 Content in Volcanic Plumes
This work presents the development and implementation of an autonomous portable spectrometer DEVI (Doas Expedition Volcanic Instrument), designed to measure SO 2 slant columns in volcanic plumes by remote optical method DOAS (Differential Optical Absorption Spectroscopy) in the range of 290–365 nm with a resolution of at least 1 nm. To achieve this goal, the following tasks have been solved: practical implementation of the spectrometer, including design of optical scheme; design of a spectrometer housing for reducing scattered radiation and facilitate adjustments; applying of additional sensors to record measurement conditions; laboratory measurements to determine the spectrometer's characteristics; field measurements and preliminary data processing to retrieve SO 2 slant columns in volcanic plumes. During the spectrometer design phase, numerical simulation methods in the Zemax software have been used, while DOAS was applied for processing experimental data for retrieving SO 2 slant columns. Our laboratory measurements showed that the DEVI spectrometer has a spectral resolution of 0.58 ± 0.5 nm and an angular field of view of 1 × 0.25°. To improve the signal-to-noise ratio, mathematical filter based on the experimentally determined noise parameters of the DEVI detector has been introduced, which allowed us to estimate the SO 2 slant columns in volcanic plumes. DEVI was successfully tested during expeditions to the Kuril Islands in the periods of July – August, 2021 and 2022 (31.07–13.08.2021 and 27.07–29.08.2022). Our field measurements and data processing showed the SO 2 slant column value of (7.5 ± 1.2)·10 17 molecules/cm 2 for the volcano Chirinkotan. Obtained estimation is consistent with known results obtained for other volcanoes.
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