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The effect of submarine CO2vents on seawater: Implications for detection of subsea carbon sequestration leakage

机译:海底二氧化碳排放对海水的影响:对检测海底碳封存泄漏的意义

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摘要

The effect of submarine carbon dioxide (CO2) vents on seawater carbonate chemistry have been determined using hydrographical and marine carbonate data obtained from two submarine hydrothermal vent fields, as well as a reference station, all near the Jan Mayen Island in the Norwegian-Greenland Sea. We have shown that one can successfully determine the excess carbon that enters the seawater from the vents by applying a modified version of a back-calculation technique, which is traditionally used to study the invasion of excess atmospheric CO2 in the surface ocean. As a result of this excess carbon, total dissolved inorganic carbon (CT) in the seawater surrounding the vents was on average 12 μmol kg−1 (1-30 μmol kg−1) higher compared to samples obtained from a reference station outside the venting areas. The observed excess CT was most significant between 100 m and 200 m but was noticeable in all depths with the exception of the upper 10-20 m. The absence of a venting CO2 signal in the surface water and the realism of the results are discussed. We believe the present method is promising for monitoring (detection and quantification) of CO2 leakage into the water column due to its high sensitivity and readiness for automation.
机译:使用从两个海底热液喷口场以及一个参考站获得的水文和海洋碳酸盐数据,确定了海底二氧化碳(CO2)排放口对海水碳酸盐化学的影响,这些数据均位于挪威格陵兰海的Jan Mayen岛附近。我们已经表明,通过应用改进的反算技术,可以成功地确定从通风孔进入海水的过量碳,该方法通常用于研究过量的大气CO2在地表海洋中的入侵。由于这种过量的碳,与从通风口外的参考站获得的样品相比,通风口周围海水中的总溶解无机碳(CT)平均平均高12μmolkg-1(1-30μmolkg-1)地区。观察到的多余CT在100 m至200 m之间最为显着,但在10mm至20 m的上部除外的所有深度上都非常明显。讨论了地表水中没有排放的CO2信号及其结果的真实性。我们认为,由于本方法具有很高的灵敏度和自动化程度,它有望用于监测(检测和定量)CO 2泄漏到水柱中。

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