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Real-time measurement of volcanic H2S and SO2 concentrations by UV spectroscopy

机译:通过紫外光谱实时测量火山H2s和sO2浓度

摘要

Sulphur speciation in volcanic gases acts as a major redox buffer, and H2S/SO2 ratios represent a valuable indicator of magmatic conditions and interactions between magmatic and hydrothermal fluids. However, measurement of H2S/SO2 even by direct sampling techniques, is not straightforward. We report here on application of a small ultraviolet spectrometer for real-time field measurement of H2S and SO2 concentrations, using open-path and extractive configurations. The device was tested at fumaroles on Solfatara and Vulcano, Italy, in November 2002. H2Sconcentrations of up to 220ppmm(400 ppmv) were measured directly above the Bocca Grande fumarole at Solfatara, and H2S/SO2 molar ratios of 2 and 2.4, respectively, were determined for the ‘F11’ and ‘F0’ fumaroles at Vulcano. In comparison with other optical techniques capable of multiplevolcanic gas measurements, such as laser and FTIRspectroscopy, this approach is considerably simpler and cheaper, with the potential for autonomous, sustained hightime resolution operation.
机译:火山气体中的硫形态是主要的氧化还原缓冲液,H 2 S / SO 2的比值是岩浆条件以及岩浆和热液之间相互作用的重要指标。但是,即使通过直接采样技术对H2S / SO2进行测量也不是一件容易的事。我们在这里报告小型紫外光谱仪在使用开路和萃取配置进行H2S和SO2浓度实时现场测量中的应用。该设备于2002年11月在意大利的Solfatara和Vulcano的富马oleles处进行了测试。在Solfatara的Bocca Grande fumarole正上方测量了最高220ppmm(400 ppmv)的H2浓度,H2S / SO2的摩尔比分别为2和2.4,在Vulcano被确定为“ F11”和“ F0”级喷气孔。与其他能够进行多火山气体测量的光学技术(例如激光和FTIR光谱学)相比,该方法相当简单且便宜,具有自主,持续的高分辨率解决方案的潜力。

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