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Novel Retrieval Of Volcanic So_2 Abundance From Ultraviolet Spectra

机译:从紫外光谱中新颖检索火山中的SO_2丰度

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摘要

The recent development of fixed networks of scanning ultraviolet spectrometers for automatic determination of volcanic SO_2 fluxes has created tremendous opportunities for monitoring volcanoes but has brought new challenges in processing (and interpreting) the copious data flow they produce. A particular difficulty in standard implantation of differential optical absorption (DOAS) methods is the requirement for a clear-sky (plume-free) background spectrum. Our experience after four years of measurements with two UV scanner networks on Etna and Stromboli shows that wide plumes are frequently observed, precluding simple selection of clear-sky spectra. We have therefore developed a retrieval approach based on simulation of the background spectrum. We describe the method here and tune it empirically by collecting clear, zenith sky spectra using calibration cells containing known amounts of SO_2. We then test the performance of this optimised retrieval using clear-sky spectra collected with the same calibration cells but for variable scan angles, time of day, and season (through the course of 1 year), finding acceptable results (~12% error) for SO_2 column amounts. We further illustrate the analytical approach using spectra recorded at Mt. Etna during its July 2006 eruption. We demonstrate the reliability of the method for tracking volcano dynamics on different time scales, and suggest it is widely suited to automated SO_2-plume monitoring.
机译:用于自动确定火山SO_2通量的扫描紫外光谱仪固定网络的最新发展为监视火山创造了巨大的机会,但在处理(和解释)它们产生的大量数据流方面带来了新的挑战。在标准的差分光吸收(DOAS)方法植入中,特别困难的是需要晴朗的天空(无泡沫)背景光谱。我们在Etna和Stromboli上使用两个UV扫描仪网络进行了四年的测量后的经验表明,经常观察到较宽的羽状流,从而排除了简单选择晴朗天空光谱的可能性。因此,我们开发了一种基于背景光谱模拟的检索方法。我们在这里描述该方法,并通过使用包含已知量SO_2的校准池收集清晰的天顶天空光谱,对它进行经验调整。然后,我们使用在相同校准池中收集的晴空光谱,但对于可变的扫描角度,一天中的时间和季节(经过1年的时间),测试了这种优化检索的性能,发现了可接受的结果(误差约为12%) SO_2列数量。我们进一步说明了使用山峰记录的光谱进行分析的方法。埃特纳火山在2006年7月喷发期间。我们证明了该方法在不同时间尺度上跟踪火山动力学的可靠性,并建议它广泛适用于自动化的SO_2烟气监测。

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