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Measurement of methane emissions from abandoned oil and gas wells in Hillman State Park, Pennsylvania

机译:测量宾夕法尼亚州希尔曼州立公园废弃油气井的甲烷排放量

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Abandoned oil and gas wells, improperly plugged or unplugged, present a risk to current and future oil and gas development because they provide a potential pathway for unwanted gas and fluid migration to the surface. The appropriate emission factor for gaseous emissions from these wells is uncertain, as a limited number of studies have reported abandoned wells as a methane emissions source. A helicopter-based survey that mapped methane concentration and located wells by detecting magnetic anomalies was conducted in Hillman State Park in southwestern Pennsylvania. Although well finding via aerial survey was successful, elevated methane concentrations due to emissions from wells in the survey area were not detected by helicopter as abandoned wells were likely too small a source of methane to detect from elevations that helicopters fly at (tens of meters). Measurement of methane emission rates from 31 wells were collected using several techniques that are compared and evaluated for their effectiveness: Hi Flow sampler, field-portable flame ionization detector, infrared camera, dynamic flux chamber and bag sampling. Nine of the 31 wells were buried; average methane flux for these wells was not statistically different from the background. Mass flow rate from the remaining 22 wells ranged from non-detection (less than 0.09kg CH4/day) to 4.18kg CH4/day with a mean of 0.70 kg/well/day (median of 0.24kg CH4/day/well) and a sample standard of error of 0.21kg CH4/well/day. This emission factor, while not intended for exclusive use in developing a methane emissions inventory for abandoned oil and gas wells, contributes to the growing amount of methane emissions data for this source category. The results from the aerial survey, ground-based well location verification and emissions measurements, and the evaluation of measurement approaches described here, provide a comprehensive characterization of abandoned wells in one field that can inform future measurement studies.
机译:废弃的油气井,如果堵塞或拔除不当,将会给当前和未来的油气开发带来风险,因为它们为有害气体和流体迁移到地面提供了潜在的途径。这些井中的气体排放的合适排放因子尚不确定,因为有限的研究报告说废弃井是甲烷排放源。在宾夕法尼亚州西南部的希尔曼州立公园进行了一次基于直升机的调查,该调查通过探测磁异常来绘制甲烷浓度并定位井的位置。尽管通过空中勘测成功进行了测井,但是由于被测井的甲烷排放量太小,无法从直升机在数十米高空飞行的高海拔区域进行检测,因此直升飞机并未检测到由于调查区域的井中甲烷排放而导致的甲烷浓度升高。 。使用几种技术收集并测量了31口井的甲烷排放速率,并对其有效性进行了评估:Hi Flow采样器,现场便携式火焰电离检测器,红外热像仪,动态通量室和布袋采样。 31口井中有9口被埋。这些井的平均甲烷通量与背景没有统计学差异。其余22口井的质量流速范围为未检测到(小于0.09kg CH4 /天)到4.18kg CH4 /天,平均为0.70 kg /孔/天(中位数为0.24kg CH4 /天/孔),样品标准误为0.21kg CH4 /孔/天。该排放因子虽然并非专门用于为废弃的油气井开发甲烷排放清单,但却导致该来源类别的甲烷排放数据量不断增加。航测,基于地面的井位验证和排放测量以及此处描述的测量方法的评估结果,可以在一个领域中全面描述废弃井的特征,可以为将来的测量研究提供参考。

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