首页> 外文期刊>Surveys in Geophysics: An International Review Journal of Geophysics and Planetary Sciences >Contribution of CO2 and H2S emitted to the atmosphere by plume and diffuse degassing from volcanoes: the Etna volcano case study
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Contribution of CO2 and H2S emitted to the atmosphere by plume and diffuse degassing from volcanoes: the Etna volcano case study

机译:火山的烟羽和扩散脱气向大气排放的CO2和H2S的贡献:埃特纳火山案例研究

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Active subaerial volcanoes often discharge large amounts of CO2 and H2S to the atmosphere, not only during eruptions but also during periods of quiescence. These gases are discharged through focused (plumes, fumaroles, etc.) and diffuse emissions. Several studies have been carried out to estimate the global contribution of CO2 and H2S emitted to the atmosphere by subaerial volcanism, but additional volcanic degassing studies will help to improve the current estimates of both CO2 and H2S discharges. In October 2008, a wide-scale survey was carried out at Mt. Etna volcano, one the world's most actively degassing volcanoes on Earth, for the assessment of the total budget of volcanic/hydrothermal discharges of CO2 and H2S, both from plume and diffuse emissions. Surface CO2 and H2S effluxes were measured by means of the accumulation chamber method at 4075 sites, covering an area of about 972.5 km(2). Concurrently, plume SO2 emission at Mt. Etna was remotely measured by a car-borne Differential Optical Absorption Spectrometry (DOAS) instrument. Crater emissions of H2O, CO2 and H2S were estimated by multiplying the plume SO2 emission times the H2O/SO2, CO2/SO2 and H2S/SO2 gas plume mass ratios measured in situ using a portable multisensor. The total output of diffuse CO2 emission from Mt. Etna was estimated to be 20,000 +/- A 400 t day(-1) with 4520 t day(-1) of deep-seated CO2. Diffuse H2S output was estimated to be 400 +/- A 20 kg day(-1), covering an area of 9.1 km(2) around the summit craters of the volcano. Diffuse H2S emission on the volcano flanks was either negligible or null, probably due to scrubbing of this gas before reaching the surface. During this study, the average crater SO2 emission rate was similar to 2100 t day(-1). Based on measured SO2 emission rates, the estimated H2O, CO2 and H2S emission rates from Etna's crater degassing were 220,000 +/- A 100,000, 35,000 +/- A 16,000 and 510 +/- A 240 t day(-1), respectively. These high values are explained in terms of intense volcanic activity at the time of this survey. The diffuse/plume CO2 emission mass ratio at Mt. Etna was similar to 0.57, that is typical of erupting volcanoes (mass ratio < 1). The average CO2/SO2 molar ratio measured in the plume was 11.5, which is typical of magmatic degassing at great depth beneath the volcano, and the CO2/H2S mass ratio in total diffuse gas emissions was much higher (similar to 11,000) than in plume gas emissions (similar to 68). These results will provide important implications for estimates of volcanic total carbon and sulfur budget from subaerial volcanoes.
机译:活跃的空中火山口不仅在喷发期间而且在静止期经常向大气排放大量CO2和H2S。这些气体通过集中的(烟羽,喷气孔等)排放并扩散。已经进行了一些研究来估算地下火山作用向大气排放的CO2和H2S的全球贡献,但是更多的火山脱气研究将有助于改善当前对CO2和H2S排放量的估算。 2008年10月,在山顶进行了一次大规模调查。埃特纳火山(Etna volcano)是地球上最活跃的脱气火山之一,用于评估来自羽流和弥散性排放的CO2和H2S火山/水热排放的总预算。利用积聚室法在4075个站点上测量了表面CO2和H2S的流出量,覆盖了约972.5 km(2)的面积。同时,山上的二氧化硫羽流排放。 Etna用车载差分光吸收光谱仪(DOAS)进行了远程测量。 H2O,CO2和H2S的火山口排放量是通过将烟羽SO2排放量乘以使用便携式多传感器现场测量的H2O / SO2,CO2 / SO2和H2S / SO2烟羽质量比来估算的。 Mt散发的CO2排放总量。 Etna估计为20,000 +/- A 400吨天(-1),含4520吨天(-1)的深层CO2。扩散的H2S产量估计为400 +/- A 20千克/天(-1),覆盖火山顶峰坑周围9.1公里(2)。火山侧面的扩散H2S排放可以忽略不计或为零,这可能是由于该气体在到达地表之前进行了洗涤。在这项研究中,火山口SO2的平均排放速率类似于2100吨日(-1)。根据测得的SO2排放速率,埃特纳火山口脱气产生的H2O,CO2和H2S排放速率估计分别为220,000 +/- A 100,000、35,000 +/- A 16,000和510 +/- A 240 t day(-1)。这些高值是根据本次调查时强烈的火山活动解释的。 Mt处的扩散/烟气CO2排放质量比。埃特纳火山(Etna)类似于0.57,这是火山喷发的典型特征(质量比<1)。烟羽中测得的平均CO2 / SO2摩尔比为11.5,这是火山下方深层岩浆脱气的典型特征,总扩散气体排放中的CO2 / H2S质量比比烟羽中的高得多(约11,000)。气体排放(类似于68)。这些结果将为估算来自地下火山的火山总碳和硫预算提供重要的启示。

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