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Effects of postdepositional processing on nitrogen isotopes of nitrate in the Greenland Ice Sheet Project 2 ice core

机译:沉积过程对格陵兰冰原项目2冰芯中硝酸盐氮同位素的影响

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摘要

Records of ice core nitrate and its isotopes hold the potential to assess past atmospheric conditions regarding NOx and oxidant levels. However, relating such records to past atmospheric conditions requires a site-specific understanding of the postdepositional processing of snow nitrate. We report δ15N(NO3−) records from the Greenland Ice Sheet Project 2 (GISP2) ice core over major climate transitions. Model calculations and comparison with records of parameters influencing UV-driven postdepositional processing of snow nitrate suggest that the observed variability in GISP2 δ15N(NO3−) over major climate transitions is primarily driven by changes in the degree of postdepositional loss of snow nitrate. Estimates of the fractional loss of snow nitrate is (16–23)% in the Holocene and (45–53)% in the glacial period, suggesting a (41 ± 32)% lower nitrate depositional flux to Greenland during the glacial period relative to the Holocene.
机译:冰芯硝酸盐及其同位素的记录具有评估过去大气条件中NOx和氧化剂水平的潜力。但是,将此类记录与过去的大气条件相关联需要对硝酸雪片的沉积后处理有特定的现场了解。我们报告了格陵兰冰原项目2(GISP2)冰芯在主要气候过渡期间的δ15N(NO3-)记录。模型计算和与影响紫外线驱动的硝酸雪沉积后处理参数记录的比较表明,在主要气候过渡期间,GISP2δ15N(NO3-)的观测变化主要是由硝酸雪沉积后损失程度的变化驱动的。在全新世期间,硝酸雪的损失百分比估计为(16–23)%,在冰川期为(45–53)%,这表明相对于冰川期,格陵兰的硝酸盐沉积通量要低(41±32)%。全新世。

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