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Field assessment of sensor technology for environmental monitoring using a process -based soil gas method at geologic CO2 storage sites

机译:在地质二氧化碳储存网站下使用过程的土壤气体法对环境监测传感器技术的现场评估

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A process-based approach to soil gas monitoring at geologic CO2 storage sites is an accurate, simple, and cost-effective alternative to other "concentration-based" soil gas methods which require complicated long-term baseline data collection and analysis. The current limitation to implementing a process-based method on an industrial scale (e.g. gigatons of storage) is a lack of technology for economical field-deployable smart data collection of all required gas concentrations (CO2, CH4, O-2, N-2). To address this gap, the Carbon Transport and Storage Corporation Pty Ltd (CTSCo) deployed commercially-available automated sensors at their proposed future Glenhaven CO2 storage site, located 21 km SW of the town of Wandoan, Queensland, Australia. The goal was to assess the suitability of currently-available sensors for implementing a process-based monitoring approach with the aim of providing real-time answers on source attribution of surface anomalies that could represent CO2 migration to surface. Here we report the results of a first-ever long-term (2 years) test of commercially available sensors for the purpose of process-based soil gas environmental monitoring. The accuracy and precision of data collected with an array of sensors for measuring CO2, CH4, and O-2, with additional sensors for measuring temperature, relative humidity, and pressure were compared against the current method using gas chromatography. The results indicate that currently-available sensors are not adequate for attaining the long-term monitoring goals set forth by a process-based monitoring approach and additional technology development is recommended.
机译:基于过程的地质二氧化碳储存部位的土壤气体监测方法是对其他“基于浓度的”土壤气体方法进行准确,简单,具有成本效益的替代方法,其需要复杂的长期基线数据收集和分析。在工业规模上实施基于过程的方法的电流限制(例如存储的Gigatons)是缺乏用于所有所需气体浓度的经济现场可部署的智能数据收集技术(CO2,CH4,O-2,N-2 )。为了解决这一差距,碳运输和储存公司PTY Ltd(CTSCO)在其拟议的未来格伦班堡二氧化碳储存网站上部署商业可用的自动传感器,位于澳大利亚昆士兰州昆士兰州万卫镇21公里。目标是评估目前可用的传感器的适用性,以实现基于过程的监测方法,目的是提供关于可以代表到表面二氧化碳迁移的表面异常的实时答案的实时答案。在这里,我们报告了用于基于过程的土壤气体环境监测的商业上可获得的传感器的首次长期(2年)测试的结果。使用气相色谱法测定用于测量温度,相对湿度和压力的附加传感器的传感器阵列收集的数据的准确性和精度。结果表明,当前可用的传感器不足以获得基于过程的监测方法和建议的额外技术开发的长期监控目标。

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