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Monitoring dissolved carbon dioxide and methane in brine environments at high pressure using IR-ATR spectroscopy

机译:使用IR-ATR光谱仪在高压下监测盐水环境中的溶解二氧化碳和甲烷

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摘要

Obtaining in situ information on greenhouse gases arising from deepwater environments is a challenge that has not been satisfactorily resolved to date. An infrared attenuated total reflection (IR-ATR) based on-line sensor system for detecting, monitoring, and differentiating carbon dioxide and methane in dissolved and gaseous states at different pressures (i.e., up to 6 MPa) in saline aquifer and/or synthetic brine environments is presented. It is demonstrated that the detection of dissolved CO2 next to (CO2)-C-13 and methane under pressurized conditions is possible under saline downhole conditions, and that gaseous vs. dissolved states of methane and CO2 in aqueous environments may be differentiated using IR-ATR sensing techniques. Finally, it is shown for the first time that there are observable changes associated with distinctive infrared signatures of methane under the conditions of greenhouse gas storage mechanisms. These are of particular importance for advancing carbon capture and storage processes and fundamentally understanding the impact of emissions during the extraction of fossil-based fuels (i.e., shale, petroleum, etc.) from offshore environments.
机译:获得有关深水环境产生的温室气体的原位信息是一项挑战,迄今为止尚未得到令人满意的解决。基于红外衰减全反射(IR-ATR)的在线传感器系统,用于检测,监测和区分盐水和/或合成含水层中处于不同压力(即最高6 MPa)的溶解态和气态二氧化碳和甲烷介绍了盐水环境。结果表明,在井下盐水条件下,在加压条件下检测(CO2)-C-13和甲烷旁边的溶解CO2是可行的,并且可以使用IR-色谱法区分含水环境中甲烷和CO2的气态与溶解态ATR感应技术。最后,这是首次表明在温室气体存储机制下,甲烷的独特红外特征存在可观察到的变化。这些对于推进碳捕获和储存过程以及从根本上了解从近海环境中提取化石燃料(即页岩,石油等)期间的排放影响尤为重要。

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