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Using the Suess effect on the stable carbon isotope to distinguish the future from the past in radiocarbon

机译:利用Suess效应对稳定碳同位素进行区分以区分放射性碳的未来与过去

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The depletion of 14C due to the emission of radiocarbon-free fossil fuels (14C Suess effect) might lead to similar values in future and past radiocarbon signatures potentially introducing ambiguity in dating. I here test if a similar impact on the stable carbon isotope via the 13C Suess effect might help to distinguish between ancient and future carbon sources. To analyze a wide range of possibilities, I add to future emission scenarios carbon dioxide reduction (CDR) mechanisms, which partly enhance the depletion of atmospheric already caused by the 14C Suess effect. The 13C Suess effect leads to unprecedented depletion in shifting the carbon cycle to a phase space in , in which the system has not been during the last 50 000 years and therefore the similarity in past and future (the ambiguity in 14C dating) induced by fossil fuels can in most cases be overcome by analyzing 13C. Only for slow changing reservoirs (e.g. deep Indo-Pacific Ocean) or when CDR scenarios are dominated by bioenergy with capture and storage the effect of anthropogenic activities on 13C does not unequivocally identify between past and future carbon cycle changes.
机译:由于释放无放射性碳的化石燃料而导致的14 C枯竭(14 C Suess效应)可能会导致将来和过去的放射性碳特征值具有相似的值,从而可能在测年中引起歧义。我在这里测试通过13C Suess效应对稳定碳同位素的类似影响是否可能有助于区分古老的碳源和未来的碳源。为了分析各种可能性,我在未来的排放情景中增加了二氧化碳减排(CDR)机制,这部分增强了14C Suess效应已经造成的大气消耗。 13C Suess效应导致将碳循环转移到其中的相空间的空前消耗,在该相空间中,该系统在过去的50 000年中没有出现,因此化石在过去和将来具有相似性(14C年代不确定)。在大多数情况下,可通过分析13C来克服燃料不足。仅对于缓慢变化的储层(例如印度洋深部海域)或当CDR情景被具有捕获和存储功能的生物能源主导时,人为活动对13C的影响并不能明确地确定过去和将来的碳循环变化。

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