Sulfur Impurities: The Overlooked Process in Volcanic Hazard Assessment

T. Scolamacchia
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Abstract

One of the most intriguing questions of modern volcanology is the inception of an eruption. Despite efforts to detect premonitory signals, numerous unpredicted eruptions have occurred recently. It has been suggested that these unpredicted eruptions might be explained by viscosity variations in elemental sulfur accumulated within the hydrothermal systems present in several volcanic settings under the influence of organics, hydrocarbons, hydrogen sulfide, halogens, and ammonia. Changes in impure sulfur viscosity are more complex than those in pure S, invoked decades ago to trigger eruptions by system sealing in volcanoes hosting a crater lake. Growing evidence suggests that sulfur accumulation is a common process, not restricted to crater lakes. Moreover, both types and amounts of gas species released at the surface, critical for volcano monitoring, would be altered, following chemical reactions involving impure S, invalidating signals used to issue alerts. Impure sulfur behavior may explain puzzling degassing and contrasting signals reported at volcanoes and restless calderas worldwide, with implications for hazard assessment and volcanic-risk-mitigation strategies.
硫杂质:火山危害评估中被忽视的过程
现代火山学最引人入胜的问题之一是火山爆发的开始。尽管人们努力探测前兆信号,但最近还是发生了许多无法预测的喷发。有人认为,在有机物、碳氢化合物、硫化氢、卤素和氨的影响下,一些火山环境中存在的热液系统中积累的元素硫的粘度变化可以解释这些未预测到的喷发。不纯硫粘度的变化比纯硫粘度的变化更为复杂,几十年前,人们曾利用火山口湖所在火山的系统密封引发火山爆发。越来越多的证据表明,硫积累是一个常见的过程,并不局限于火山口湖。此外,在涉及不纯硫的化学反应之后,对火山监测至关重要的地表释放气体种类和数量都会发生变化,从而使用于发出警报的信号失效。不纯净硫的行为可以解释世界各地的火山和躁动的破火山口所报告的令人费解的脱气现象和截然不同的信号,并对危害评估和火山风险缓解战略产生影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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