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Reappraisal of the fossil methane budget and related emission from geologic sources

机译:重新评估化石甲烷预算和地质来源的相关排放

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Converging evidence from new top-down and bottom-up estimates of fossil "radiocarbon-free" methane emissions indicates that natural geologic sources account for a substantial component of the atmospheric methane budget. Comparing emission estimates based on atmospheric (CH4)-C-14 ("radiomethane") with geologic emissions from seepage, including terrestrial macroseeps, microseepage, marine seeps, and geothermal/volcanic emissions from the Earth's crust, shows that such "geo-CH4" sources can be conservatively estimated at 53 +/- 11 Tg yr(-1) globally. This makes geo-CH4 second in importance to wetlands as a natural methane source. Such a new appraisal can easily be accommodated within the uncertainty of the global methane budget as recently compiled, and recognizes the importance of geophysical out-gassing of methane generated within the lithosphere. We propose a new coherent contemporary budget in which 30 +/- 5% (based on atmospheric radiomethane measurements) of the global source of 582 +/- 87 Tg yr(-1) has fossil origin, both natural and anthropogenic.
机译:从化石“无放射性碳”甲烷排放的新的自上而下和自下而上的估算得出的越来越多的证据表明,自然地质来源占大气甲烷预算的很大一部分。将基于大气(CH4)-C-14(“甲烷”)的排放估算与渗漏产生的地质排放进行比较,包括地壳宏观渗漏,微渗漏,海洋渗漏以及地壳的地热/火山排放,表明此类“ geo-CH4据保守估计,全球来源为53 +/- 11 Tg yr(-1)。这使得Geo-CH4作为天然甲烷源仅次于湿地。可以很容易地将这种新评估纳入新近编制的全球甲烷预算的不确定性之内,并认识到岩石圈内产生的甲烷进行地球物理放气的重要性。我们提出了一个新的,连贯的当代预算,其中582 +/- 87 Tg yr(-1)的全球来源中,有30 +/- 5%(基于大气中的放射性甲烷测量)具有自然和人为来源的化石。

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