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Synthesis of recent ground-level methane emission measurements from the US natural gas supply chain

机译:来自美国天然气供应链的最新地面甲烷排放量测量结果的综合

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A synthesis of new methane (CH4) emission data from a recent series of ground-based field measurements shows that 1.7% of the methane in natural gas is emitted between extraction and delivery (with a 95% confidence interval from 1.3% to 2.2%). This synthesis was made possible by a recent series of methane emission measurement campaigns that focused on the natural gas supply chain, production through distribution. The new data were translated to a standard basis, augmented with other data sources as needed, and simulated using a Monte Carlo-enabled, life cycle model. Gathering facilities and production pneumatics are the top methane emission reduction opportunities for the natural gas sector, but there are knowledge gaps and sources of uncertainty that merit further research. In particular, "unassigned" emissions that were measured at the site level, as opposed to component-level emissions measured directly at the device level, account for 19% of supply chain methane emissions. By definition, unassigned emissions cannot be attributed to specific emission sources, and the current data do not provide insight into how they vary geographically. The inclusion of unassigned emissions makes the bottom-up compilation of emission sources more complete, but is a source of uncertainty that points to opportunities for further research. Further research should include geographically diverse measurement studies that provide a better understanding of regional variability and validate emission measurements by using a combination of component- and site-level measurements. (C) 2017 The Authors. Published by Elsevier Ltd.
机译:根据最近一系列地面实地测量得出的新甲烷(CH4)排放数据的综合显示,天然气中甲烷的1.7%是在提取和输送之间排放的(95%置信区间为1.3%至2.2%) 。最近的一系列甲烷排放量测量活动使这种合成成为可能,这些活动关注天然气供应链,即通过分销进行生产。将新数据转换为标准数据,并根据需要添加其他数据源,并使用启用了蒙特卡洛的生命周期模型进行仿真。收集设备和生产用气动装置是天然气行业减少甲烷排放的最佳机会,但存在知识空白和不确定性来源,值得进一步研究。特别是,在站点级别测量的“未分配”排放与直接在设备级别测量的组件级别排放相比,占供应链甲烷排放的19%。根据定义,未分配的排放不能归因于特定的排放源,并且当前数据无法提供关于它们在地理上如何变化的见解。包含未分配的排放量使排放源的自下而上汇编更加完整,但它是不确定性的来源,这表明有进一步研究的机会。进一步的研究应包括地理上不同的测量研究,这些研究可以更好地理解区域变异性,并结合使用组件级和站点级测量来验证排放测量。 (C)2017作者。由Elsevier Ltd.发布

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