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Field demonstration of a 1 x 4 fiber sensor array for subsurface carbon dioxide monitoring for carbon sequestration

机译:1 x 4光纤传感器阵列的现场演示,用于监测地下二氧化碳以隔离碳

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A fiber sensor array for subsurface CO2 concentration measurements was developed for monitoring geologic carbon sequestration sites. The fiber sensor array uses a single temperature-tunable distributed feedback (DFB) laser operating with a nominal wavelength of 2.004 mu m. Light from this DFB laser is directed to one of the four probes via an inline 1 x 4 fiber optic switch. Each of the four probes is buried and allows the subsurface CO2 to enter the probe through Millipore filters that allow the soil gas to enter the probe but keeps out the soil and water. Light from the DFB laser interacts with the CO2 before it is directed back through the inline fiber optic switch. The DFB laser is tuned across two CO2 absorption features, where a transmission measurement is made allowing the CO2 concentration to be retrieved. The fiber optic switch then directs the light to the next probe where this process is repeated, allowing subsurface CO2 concentration measurements at each of the probes to be made as a function of time. The fiber sensor array was deployed for 58 days beginning from June 19, 2012 at the Zero Emission Research Technology field site, where subsurface CO2 concentrations were monitored. Background measurements indicate that the fiber sensor array can monitor background levels as low as 1000 parts per million (ppm). A 34-day subsurface release of 0.15 tones CO2/day began on July 10, 2012. The elevated subsurface CO2 concentration was easily detected by each of the four probes with values ranging over 60,000 ppm, a factor of greater than 6 higher than background measurements. (C) The Authors. Published by SPIE under a Creative Commons Attribution 3.0 Unported License. Distribution or reproduction of this work in whole or in part requires full attribution of the original publication, including its DOI.
机译:开发了用于地下二氧化碳浓度测量的光纤传感器阵列,用于监测地质碳固存点。光纤传感器阵列使用标称波长为2.004μm的单个温度可调分布式反馈(DFB)激光器。来自此DFB激光器的光通过一个内嵌的1 x 4光纤开关被引导到四个探头之一。四个探针中的每一个都被掩埋,并允许地下CO2通过Millipore过滤器进入探针,该过滤器允许土壤气体进入探针,但阻止土壤和水进入。来自DFB激光器的光与CO2相互作用,然后再通过内联光纤开关导回。 DFB激光器可在两个CO2吸收特征之间进行调谐,在此进行透射测量,以检索CO2浓度。然后,光纤开关将光引导至下一个探针,在该探针处重复此过程,从而允许根据时间对每个探针处的地下CO2浓度进行测量。从2012年6月19日开始,光纤传感器阵列在零排放研究技术现场进行了58天的部署,该现场监测了地下CO2浓度。背景测量表明,光纤传感器阵列可以监视低至百万分之1000(ppm)的背景水平。从2012年7月10日开始,地下表面释放0.15吨二氧化碳/天的天数为34天,这四个探针中的每一个都能轻易检测到地下二氧化碳浓度的升高,其值范围超过60,000 ppm,比背景测量值高6倍。 。 (C)作者。由SPIE根据Creative Commons Attribution 3.0 Unported License发布。分发或复制此作品的全部或部分,需要对原始出版物(包括其DOI)进行完全归因。

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