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首页> 外文期刊>Bulletin of Volcanology >Halogen oxide measurements at Masaya Volcano, Nicaragua using active long path differential optical absorption spectroscopy
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Halogen oxide measurements at Masaya Volcano, Nicaragua using active long path differential optical absorption spectroscopy

机译:尼加拉瓜马萨亚火山的活性长径差分吸收光谱法测量卤素氧化物

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摘要

Active Long Path Differential Optical Absorption Spectroscopy (LP-DOAS) measurements of halogen oxides were conducted at Masaya Volcano, in Nicaragua from April 14 to 26, 2007. The active LP-DOAS system allowed night-time halogen measurements and reduced the ClO detection limit by an order of magnitude when compared to previous passive DOAS measurements, as wavelengths below 300 nm could be used for the DOAS retrievals. BrO was detected with an average BrO/SO2 molecular ratio of approximately 3 × 10−5 during the day. However, BrO values were below the detection limit of the instrument for all night-time measurements, a strong indication that BrO is not directly emitted, but rather the result of photochemical formation in the plume itself according to the autocatalytic “bromine explosion” mechanism. Despite the increased sensitivity, both ClO and OClO could not be detected. The achieved upper limits for the X/SO2 ratios were 5 × 10−3 and 7 × 10−6, respectively. A rough calculation suggests that ClO and OClO should be present at similar abundances in volcanic plumes. Since the DOAS technique is orders of magnitude more sensitive for OClO than for ClO, this indicates that OClO should always be detectable in plumes in which ClO is found. However, further LP-DOAS studies are needed to conclusively clarify the role of chlorine oxides in volcanic plumes.
机译:于2007年4月14日至26日在尼加拉瓜的Masaya火山上进行了卤素氧化物的主动长径差分光学吸收光谱(LP-DOAS)测量。该主动LP-DOAS系统可进行夜间卤素测量并降低了ClO检测限与以前的被动式DOAS测量相比,幅度降低了一个数量级,因为300 nm以下的波长可用于DOAS检索。白天检测到的BrO的平均BrO / SO 2 分子比约为3×10 -5 。但是,BrO值在所有夜间测量中均低于仪器的检测极限,这强烈表明BrO不是直接排放,而是根据自催化“溴爆炸”机理在烟羽本身中形成光化学作用的结果。尽管灵敏度提高了,但仍未检测到ClO和OClO。 X / SO 2 比的上限分别为5×10 -3 和7×10 -6 。粗略的计算表明,火山羽中的ClO和OClO的丰度应相似。由于DOAS技术对OClO的敏感性比对ClO的敏感性高几个数量级,这表明在发现ClO的羽流中,OClO始终应可检测到。但是,还需要进一步的LP-DOAS研究来明确阐明氧化氯在火山羽中的作用。

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