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首页> 外文期刊>Elementa: science of the anthropocene >Comparison of methane emission estimates from multiple measurement techniques at natural gas production pads
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Comparison of methane emission estimates from multiple measurement techniques at natural gas production pads

机译:天然气生产区多种测量技术甲烷排放估算值的比较

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This study presents the results of a campaign that estimated methane emissions at 268 gas production facilities in the Fayetteville shale gas play using onsite measurements (261 facilities) and two downwind methods – the dual tracer flux ratio method (Tracer Facility Estimate – TFE, 17 facilities) and the EPA Other Test Method 33a (OTM33A Facility Estimate – OFE, 50 facilities). A study onsite estimate (SOE) for each facility was developed by combining direct measurements and simulation of unmeasured emission sources, using operator activity data and emission data from literature. The SOE spans 0–403 kg/h and simulated methane emissions from liquid unloadings account for 88% of total emissions estimated by the SOE, with 76% (95% CI [51%–92%]) contributed by liquid unloading at two facilities. TFE and SOE show overlapping 95% CI between individual estimates at 15 of 16 (94%) facilities where the measurements were paired, while OFE and SOE show overlapping 95% CI between individual estimates at 28 of 43 (65%) facilities. However, variance-weighted least-squares (VWLS) regressions performed on sets of paired estimates indicate statistically significant differences between methods. The SOE represents a lower bound of emissions at facilities where onsite direct measurements of continuously emitting sources are the primary contributor to the SOE, a sub-selection of facilities which minimizes expected inter-method differences for intermittent pneumatic controllers and the impact of episodically-emitting unloadings. At 9 such facilities, VWLS indicates that TFE estimates systematically higher emissions than SOE (TFE-to-SOE ratio = 1.6, 95% CI [1.2 to 2.1]). At 20 such facilities, VWLS indicates that OFE estimates systematically lower emissions than SOE (OFE-to-SOE ratio of 0.41 [0.26 to 0.90]). Given that SOE at these facilities is a lower limit on emissions, these results indicate that OFE is likely a less accurate method than SOE or TFE for this type of facility.
机译:这项研究提出了一项运动的结果,该运动使用现场测量(261处设施)和两种顺风方法(双重示踪剂通量比法(示踪剂设施估算– TFE,17处设施),估算了费耶特维尔页岩气中268个天然气生产设施的甲烷排放量。 )和EPA其他测试方法33a(OTM33A设施估算– OFE,50个设施)。通过使用操作员活动数据和文献中的排放数据,将直接测量与未测量排放源的模拟相结合,为每个设施开发了一项现场评估研究(SOE)。 SOE跨度为0–403 kg / h,来自液体卸载的模拟甲烷排放量占SOE估算的总排放量的88%,其中两个设施的液体卸载贡献了76%(95%CI [51%–92%]) 。 TFE和SOE显示,在将测量值配对的16个设施中的15个(94%)设施之间,单个估计值重叠95%CI,而OFE和SOE显示43个设施(65%)中的28个设施之间的单个估计值重叠95%CI。但是,对成对估计值集执行的方差加权最小二乘(VWLS)回归表明,方法之间存在统计学上的显着差异。 SOE代表设施的排放下限,在这些设施中,现场直接测量连续排放源是SOE的主要贡献,是设施的子选择,可最大程度地减少间歇性气动控制器的预期方法间差异以及间歇性排放的影响卸货。在9个这样的设施中,VWLS表示TFE系统地估算出的排放量要高于SOE(TFE与SOE之比= 1.6,95%CI [1.2至2.1])。在20个这样的设施中,VWLS表明,OFE估算的排放量总体上低于SOE(OFE与SOE的比值为0.41 [0.26至0.90])。鉴于这些设施的SOE是排放的下限,这些结果表明,对于此类设施,OFE的准确性可能不如SOE或TFE。

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