Royal Holloway University of London, Egham Hill, Egham, UK, TW20 0EX, United Kingdom.
Imperial College London, Kensington, London, SW7 2AZ, UK.
Sci Rep. 2017 Jul 7;7(1):4854. doi: 10.1038/s41598-017-04802-6.
A thorough understanding of methane sources is necessary to accomplish methane reduction targets. Urban environments, where a large variety of methane sources coexist, are one of the most complex areas to investigate. Methane sources are characterised by specific δC-CH signatures, so high precision stable isotope analysis of atmospheric methane can be used to give a better understanding of urban sources and their partition in a source mix. Diurnal measurements of methane and carbon dioxide mole fraction, and isotopic values at King's College London, enabled assessment of the isotopic signal of the source mix in central London. Surveys with a mobile measurement system in the London region were also carried out for detection of methane plumes at near ground level, in order to evaluate the spatial allocation of sources suggested by the inventories. The measured isotopic signal in central London (-45.7 ±0.5‰) was more than 2‰ higher than the isotopic value calculated using emission inventories and updated δC-CH signatures. Besides, during the mobile surveys, many gas leaks were identified that are not included in the inventories. This suggests that a revision of the source distribution given by the emission inventories is needed.
要实现甲烷减排目标,就必须深入了解甲烷的来源。城市环境中存在着多种甲烷来源,是最复杂的研究领域之一。甲烷来源具有特定的δC-CH 特征,因此对大气甲烷进行高精度稳定同位素分析可以更好地了解城市来源及其在源混合中的分配。在伦敦国王学院进行的甲烷和二氧化碳摩尔分数以及同位素值的日变化测量,评估了伦敦市中心源混合的同位素信号。还在伦敦地区使用移动测量系统进行了调查,以检测近地面的甲烷羽流,从而评估清单中建议的源的空间分配。在伦敦市中心测量到的同位素信号(-45.7 ±0.5‰)比使用排放清单和更新的 δC-CH 特征计算出的同位素值高 2‰以上。此外,在移动调查期间,发现了许多清单中未包含的气体泄漏。这表明需要对排放清单给出的源分布进行修订。