Carbon Dioxide Emissions from Icelandic Geothermal Areas

Halldór Ármannsson
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引用次数: 8

Abstract

The origin of CO2 in fluids from Icelandic high-temperature geothermal systems is predominantly magmatic. Emissions from producing areas have risen with increased production. Abnormal rises have been recorded due to magmatic activity and the onset of boiling due to increase in production. Natural flow is predominantly through soil but to a small extent via steam vents and steam heated pools. The extent of natural steam flow varies considerably between areas apparently due to the formation of carbonate deposits (mainly calcite) in relatively cool liquid dominated aquifers at shallow depths where these are present. The CO2 concentration of fluids from aquifers at higher temperatures apparently decreases with temperature and is for instance very low (<1000 ppm) in fluid from IDDP-1, Krafla where the source temperature is 450 °C.

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冰岛地热区的二氧化碳排放
冰岛高温地热系统的流体中二氧化碳的来源主要是岩浆。产区的排放量随着产量的增加而增加。由于岩浆活动和由于产量增加而开始沸腾,已经记录了异常的上升。自然流动主要通过土壤,但也有少量通过蒸汽喷口和蒸汽加热池。自然蒸汽流动的程度在不同地区之间差别很大,这显然是由于碳酸盐岩矿床(主要是方解石)在相对较冷的液体占主导地位的浅层含水层中形成的。在较高温度下,来自含水层的流体的CO2浓度明显随温度降低,例如,在源温度为450°C的Krafla IDDP-1的流体中,CO2浓度非常低(<1000 ppm)。
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