Estimating Methane Emission Durations Using Continuous Monitoring Systems.

IF 8.9 2区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
William S Daniels, Meng Jia, Dorit M Hammerling
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引用次数: 0

Abstract

We propose a method for estimating methane emission durations on oil and gas sites, referred to as the Probabilistic Duration Model (PDM), that uses concentration data from continuous monitoring systems (CMS). The PDM probabilistically addresses a key limitation of CMS: nondetect times, or the times when wind blows emitted methane away from the CMS sensors (resulting in no detections). Output from the PDM can be used to bound the duration of emissions detected by survey-based technologies, such as plane or satellites, that have limited ability to characterize durations due to the typically low temporal frequency (e.g., quarterly) at which they observe a given source. Linear regression indicates that the PDM has a bias of -4.9% (R2 = 0.80) when evaluated on blinded controlled releases at the Methane Emissions Technology Evaluation Center (METEC), with 86.8% of estimates within a factor of 2× error from the true duration. We apply the PDM to a typical production site in the Appalachian Basin and use it to bound the duration of survey-based measurements. We find that failing to account for CMS nondetect times results in underestimated emission durations of up to a factor of 65× (6400%) on this site.

利用连续监测系统估算甲烷排放持续时间。
我们提出了一种估算油气田甲烷排放持续时间的方法,称为概率持续时间模型 (PDM),该方法使用连续监测系统 (CMS) 的浓度数据。PDM 从概率上解决了 CMS 的一个主要局限性:无检测时间,或风吹走排放的甲烷远离 CMS 传感器的时间(导致无检测)。PDM 的输出结果可用于约束飞机或卫星等基于勘测的技术所探测到的排放持续时间,这些技术由于观测特定源的时间频率通常较低(如每季度一次),因此描述持续时间的能力有限。线性回归表明,在甲烷排放技术评估中心(METEC)对盲目受控释放进行评估时,PDM 的偏差为 -4.9%(R2 = 0.80),86.8% 的估计值与真实持续时间的误差在 2 倍以内。我们将 PDM 应用于阿巴拉契亚盆地的一个典型生产现场,并用它来约束基于调查的测量持续时间。我们发现,如果不考虑 CMS 的非检测时间,则该生产基地的排放持续时间被低估了高达 65 倍(6400%)。
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来源期刊
Environmental Science & Technology Letters Environ.
Environmental Science & Technology Letters Environ. ENGINEERING, ENVIRONMENTALENVIRONMENTAL SC-ENVIRONMENTAL SCIENCES
CiteScore
17.90
自引率
3.70%
发文量
163
期刊介绍: Environmental Science & Technology Letters serves as an international forum for brief communications on experimental or theoretical results of exceptional timeliness in all aspects of environmental science, both pure and applied. Published as soon as accepted, these communications are summarized in monthly issues. Additionally, the journal features short reviews on emerging topics in environmental science and technology.
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