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Chlorine as a geobarometer for alkaline magmas: Evidence from a systematic study of the eruptions of Mount Somma-Vesuvius

机译:氯作为碱性岩浆的气压计:来自对索马维苏威火山喷发的系统研究的证据

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摘要

Defining the magma storage conditions of a volcanic system is a major goal in modern volcanology due to its direct implications for the style of a possible eruption, and thus on the associated risk of any crisis and the necessary management and mitigation strategies. Below 200 MPa and at equivalent depths, the strongly non-ideal behaviour of the H-C-O-S-Cl-F system in the silicate melt causes unmixing of the fluid phase to form an H2O-rich vapour and a hydrosaline phase in equilibrium with the silicate melt, both responsible for buffering the chlorine (Cl) concentration. Following this equilibrium, the Cl concentration in melts may be used as a geobarometer for alkaline magmas. Systematic application of this method to the main explosive eruptions of Mount Somma-Vesuvius highlights two main magma ponding zones, at ~180–200 and ~100 MPa. At these pressures, the maximum pre-eruptive H2O contents for the different magma compositions can be estimated; the results obtained, largely in agreement with the current literature, therefore confirm the validity of the method. The Cl geobarometer may help scientists to define the variation of the magmatic reservoir location through time and thus provide strong constraints on pre-eruptive conditions, which are of utmost importance for volcanic crisis management.
机译:定义火山系统的岩浆储存条件是现代火山学的一个主要目标,因为它直接影响可能的喷发方式,进而影响任何危机的相关风险以及必要的管理和缓解策略。在低于200 MPa且深度相等的情况下,HCOS-Cl-F体系在硅酸盐熔体中的强烈非理想行为会导致流体相解混,从而形成富含H2O的蒸气和与硅酸盐熔体平衡的氢盐水相,两者都负责缓冲氯(Cl)的浓度。在达到此平衡之后,熔体中的Cl浓度可用作碱性岩浆的气压计。该方法在索马-维苏威火山的主要爆炸事件中的系统应用突出了两个主要的岩浆聚集区,分别为〜180–200和〜100 MPa。在这些压力下,可以估算出不同岩浆成分的喷发前最大水含量。获得的结果在很大程度上与当前文献一致,因此证实了该方法的有效性。 Cl气压计可以帮助科学家确定岩浆储层位置随时间的变化,从而对喷发前的状况提供强大的约束,这对于火山危机的管理至关重要。

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