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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >CO2 emissions and heat flow through soil, fumaroles, and steam heated mud pools at the Reykjanes geothermal area, SW Iceland
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CO2 emissions and heat flow through soil, fumaroles, and steam heated mud pools at the Reykjanes geothermal area, SW Iceland

机译:冰岛西南部雷克雅尼斯地热区的土壤,喷气孔和蒸汽加热的泥浆池中的二氧化碳排放量和热量流

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摘要

Carbon dioxide emissions and heat flow through soil, steam vents and fractures, and steam heated mud pools were determined in the Reykjanes geothermal area, SW Iceland. Soil diffuse degassing of CO2 was quantified by soil flux measurements on a 600 m by 375 m rectangular grid using a portable closed chamber soil flux meter and the resulting data were analyzed by both a graphical statistical method and sequential Gaussian simulations. The soil temperature was measured in each node of the grid and used to evaluate the heat flow. The heat flow data were also analyzed by sequential Gaussian simulations. Heat flow from steam vents and fractures was determined by quantifying the amount of steam emitted from the vents by direct measurements of steam flow rate. The heat loss from the steam heated mud pools was determined by quantifying the rate of heat loss from the pools by evaporation, convection, and radiation. The steam flow rate into the pools was calculated from the observed heat loss from the pools, assuming that steam flow was the only mechanism of heat transport into the pool. The CO2 emissions from the steam vents and mud pools were determined by multiplying the steam flow rate from the respective sources by the representative CO2 concentration of steam in the Reykjanes area. The observed rates of CO2 emissions through soil, steam vents, and steam heated mud pools amounted to 13.5 +/- 1.7, 0.23 +/- 0.05, and 0.13 +/- 0.03 tons per day, respectively. The heat flow through soil, steam vents, and mud pools was 16.9 +/- 1.4, 2.2 +/- 0.4, and 1.2 +/- 0.1 MW, respectively. Heat loss from the geothermal reservoir, inferred from the CO2 emissions through the soil amounts to 130 +/- 16 MW of thermal energy. The discrepancy between the observed heat loss and the heat loss inferred from the CO2 emissions is attributed to steam condensation in the subsurface due to interactions with cold ground water. These results demonstrate that soil diffuse degassing can be a more reliable proxy for heat loss from geothermal systems than soil temperatures. The soil diffuse degassing at Reykjanes appears to be strongly controlled by the local tectonics. The observed diffuse degassing defines 3-5 elongated N-S trending zones (000-020 degrees). The orientation of the diffuse degassing structures at Reykjanes is consistent with reported trends of right lateral strike slip faults in the area. The natural CO2 emissions from Reykjanes under the current low-production conditions are about 16% of the expected emissions from a 100 MWe power plant, which has recently been commissioned at Reykjanes. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在冰岛西南部的雷克雅尼斯地热区确定了通过土壤,蒸汽喷口和裂缝以及蒸汽加热的泥浆池的二氧化碳排放量和热流。使用便携式密闭室土壤通量计,通过在600 m x 375 m矩形网格上进行土壤通量测量,对土壤中的CO2扩散脱气进行了定量,并通过图形统计方法和顺序高斯模拟对所得数据进行了分析。在网格的每个节点上测量土壤温度,并将其用于评估热流。还通过顺序高斯模拟分析了热流数据。通过直接测量蒸汽流量来量化从排气孔排放的蒸汽量,从而确定蒸汽排气孔和裂缝产生的热流量。蒸汽加热的泥浆池的热损失是通过量化蒸发,对流和辐射产生的热损失率来确定的。假设观察到蒸汽是唯一的热量传递到池中的机制,则根据观察到的池中的热量损失来计算流入池中的蒸汽流量。通过将来自各个排放源的蒸汽流量乘以雷克雅尼斯地区的代表性蒸汽CO2浓度,即可确定蒸汽喷口和泥浆池的CO2排放量。每天通过土壤,蒸汽出口和蒸汽加热的泥浆池观测到的CO2排放量分别为每天13.5 +/- 1.7、0.23 +/- 0.05和0.13 +/- 0.03吨。通过土壤,蒸汽喷口和泥浆池的热量分别为16.9 +/- 1.4、2.2 +/- 0.4和1.2 +/- 0.1 MW。由土壤中的CO2排放推断出的地热库产生的热损失为130 +/- 16 MW热能。观测到的热损失与由CO2排放推断出的热损失之间的差异,归因于地下蒸汽与冷地下水的相互作用而产生的冷凝水。这些结果表明,与土壤温度相比,土壤扩散脱气可以更可靠地替代地热系统的热量散失。雷克雅尼斯的土壤弥散除气似乎受到当地构造的强烈控制。观察到的扩散脱气定义了3-5个伸长的N-S趋势区(000-020度)。雷克雅内斯的分散脱气结构的方向与该地区右旋走滑断层的报道趋势一致。在目前的低产量条件下,雷克雅未克的自然CO2排放量约为100兆瓦发电厂的预期排放量的16%,该电厂最近已在雷克雅尼斯投产。 (c)2006 Elsevier Ltd.保留所有权利。

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