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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Diffuse emission of CO_2 and convective heat release at Nisyros caldera (Greece)
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Diffuse emission of CO_2 and convective heat release at Nisyros caldera (Greece)

机译:尼西罗斯卡尔德州(希腊)的CO_2和对流热释放的弥漫声

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摘要

The diffuse emission of CO2 from the south east sector of Nisyros caldera (Lakki plain) has been measured during a detailed survey (similar to 1400 soil CO2 flux measurements) performed in October 2018. The gas emissions are fed by hydrothermal sources and, in minor part, by the soil biogenic activity whose mean CO2 flux (4 g m (2 )d(-1))is here estimated for the first time. The total amount of hydrothermal CO2 reaches 92 +/- 8 t/d, a value that is slightly higher than that estimated with the same method between 1999 and 2001 (74 +/- 7 t/d). The gas is emitted by different diffuse degassing structures (DDSs), including volcanic-hydrothermal structures (craters and domes) and NE-SW and NW-SE-trending tectonic lineaments.Even if the total CO2 emission is not particularly high at Nisyros (close to the median of CO2 emissions measured in volcanoes worldwide), the process is very energetic. The thermal energy associated with the shallow condensation of the steam in the DDSs reaches similar to 60 MW, while we estimate at 134-270 MW the total amount of thermal energy involved in the convective rising of the deep geothermal liquids that transport the gas from the depth toward the surface. This large flux of energy could dramatically increase during future earthquakes by addition of heat and mass from a deep hydrothermal reservoir, potentially triggering hydrothermal explosions, as it happened several times in the past few centuries. (C) 2019 Elsevier B.V. All rights reserved.
机译:在2018年10月进行的详细调查(类似于1400土壤二氧化碳磁通测量)的详细调查(类似于1400土壤二氧化碳磁通测量)期间已经测量了来自尼西群岛南东部部门的二氧化碳排放。气体排放由水热源和未成年人进给部分,由土壤生物活性,其平均CO 2通量(4GM(2)D(-1))首次估计。水热量CO 2的总量达到92 +/- 8吨/天,该值略高于1999年至2001之间的相同方法估计(74 +/- 7 T / D)。该气体由不同的漫反应结构(DDS)发出,包括火山 - 水热结构(Craters和圆顶)和Ne-SW和NW-SE-Trending构造线系。如果总共二氧化碳排放在尼西斯(Nisyros)没有特别高(关闭)在全世界火山中测量的二氧化碳排放的中位数),该过程非常精力充沛。与DDS中蒸汽的浅凝结相关的热能达到类似于60兆瓦,同时我们估计在134-270 MW的热能总量,涉及将气体运输气体的深层地热液体的对流升高深度朝向表面。在未来的地震期间,通过添加深层热水储层的热量和质量可能会发生大量的地震,可能会引发水热爆炸,因此在过去的几个世纪过去发生了几次的情况下,这种大量的能量可能会显着增加。 (c)2019 Elsevier B.v.保留所有权利。

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