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Quantification of UV-B flux through time using UV-B-absorbing compounds contained in fossil Pinus sporopollenin.

机译:使用松子孢粉中包含的吸收UV-B的化合物定量分析UV-B的时间变化。

摘要

UV-B radiation currently represents c. 1.5% of incoming solar radiation. However, significant changes are known to have occurred in the amount of incoming radiation both on recent and on geological timescales. Until now it has not been possible to reconstruct a detailed measure of UV-B radiation beyond c. 150 yr ago. Here, we studied the suitability of fossil Pinus spp. pollen to record variations in UV-B flux through time. In view of the large size of the grain and its long fossil history, we hypothesized that this grain could provide a good proxy for recording past variations in UV-B flux. Two key objectives were addressed: to determine whether there was, similar to other studied species, a clear relationship between UV-B-absorbing compounds in the sporopollenin of extant pollen and the magnitude of UV-B radiation to which it had been exposed; and to determine whether these compounds could be extracted from a small enough sample size of fossil pollen to make reconstruction of a continuous record through time a realistic prospect. Preliminary results indicate the excellent potential of this species for providing a quantitative record of UV-B through time. Using this technique, we present the first record of UV-B flux during the last 9500 yr from a site near Bergen, Norway.
机译:目前,UV-B辐射代表c。太阳辐射的1.5%。但是,在最近和地质时间尺度上,入射辐射的数量都发生了重大变化。到现在为止,尚不可能重建超过c的UV-B辐射的详细度量。 150年前。在这里,我们研究了化石松属植物的适宜性。花粉记录随时间变化的UV-B流量。考虑到谷物的大尺寸和悠久的化石历史,我们假设该谷物可以很好地替代过去记录UV-B通量的变化。解决了两个关键目标:与其他研究物种相似,确定现存花粉孢粉中吸收UV-B的化合物与暴露于其中的UV-B辐射的强度之间是否存在明确的关系;并确定是否可以从足够小的样本化石花粉中提取这些化合物,从而使重建连续记录成为现实。初步结果表明,该物种具有极好的潜力,可以随时间提供定量的UV-B记录。使用这项技术,我们展示了挪威卑尔根附近一个站点在过去9500年中的UV-B通量的第一个记录。

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