New constraints on 14C reservoirs around the Antarctic Peninsula and the Southern Ocean based on historically-harvested whale bones
New constraints on 14C reservoirs around the Antarctic Peninsula and the Southern Ocean based on historically-harvested whale bones
批准号:
2200448
负责人:
Alexander Simms
金额:
$5.89万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2022
资助国家:
美国
项目状态:
已结题
起止时间:
2022-08-01 至 2024-07-31
中文摘要
我们对气温变暖引起的冰盖行为的大部分理解都是基于过去的冰盖如何对与20,000年前最后一个冰河时代结束相关的变暖做出反应。 这些研究依赖于对过去冰盖留下的特征进行准确的年代测定。 在过去的40,000年中,确定这些特征年龄的最常用方法是放射性碳测年。 然而,放射性碳测年并非没有其细微差别,这在南极洲周围特别明显。 这些细微差别之一是确定材料测量的放射性碳年龄与其真实年龄之间的偏移。 这项研究的目的是使用历史上从南极半岛收获的鲸鱼骨头,其年龄是独立已知的,以确定这种偏移。 更好地了解这种偏移将有助于更准确地估计过去4万年来南极半岛冰盖和海平面变化的速度。 我们对南极冰盖将如何应对未来气候变化的理解,大部分是基于对其过去行为的研究。 这些研究通常依赖于重建自20,000年前末次盛冰期以来的演变。 放射性碳测年是这些重建中最常用的第四纪沉积物测年方法。 然而,南极洲放射性碳的使用受到地球上一些最大和最不受限制的放射性碳库的阻碍。 这项研究的目的是确定鲸骨的放射性碳储量。 这项研究将利用现有的25个鲸鱼骨骼的收集用于先前的DNA研究,以确定晚全新世放射性碳水库的南极半岛。 这些鲸骨来自于20世纪50年代核试验之前的世纪之交收获的标本。 因此,它们的放射性碳年龄将为南极洲周围浅水沃茨的放射性碳库提供有价值的新限制。 这种方法的另一个好处是,考虑到DNA测定,我们还将能够确定放射性碳库是否在三种鲸鱼中存在差异,这一奖项反映了美国国家科学基金会的法定使命,并被认为是值得通过利用基金会的知识价值和更广泛的影响审查进行评估来支持的的搜索.
英文摘要
Much of our understanding of ice sheet behavior due to warming temperatures is based on how past ice sheets responded to warming associated with the end of the last ice age, 20,000 years ago. These studies rely on accurate dating of features left behind by the past ice sheets. The most commonly used method for determining the age of these features over the last ~40,000 years is radiocarbon dating. However, radiocarbon dating is not without its nuances, which are particularly pronounced around Antarctica. One of these nuances is determining the offset between the materials measured radiocarbon age and its true age. The purpose of this research is to use historically harvested whale bones from the Antarctic Peninsula, whose age is independently known, to determine that offset. A better understanding of that offset will allow more accurate estimates of past rates of ice sheet and sea-level changes across the Antarctic Peninsula over the last ~40,000 years. Much of our understanding of how the Antarctic Ice Sheet will respond to future climate changes is based on studies of its past behavior. Those studies often rely on reconstructing its evolution since the Last Glacial Maximum, 20,000 years ago. Radiocarbon dating is the most commonly used method of dating Quaternary deposits for these reconstructions. However, the use of radiocarbon in Antarctica is hampered by some of the largest and least constrained radiocarbon reservoirs on the planet. The purpose of this research is to determine the radiocarbon reservoir for whale bones. This research will leverage an existing collection of 25 whale bones used for prior DNA research to determine the late Holocene radiocarbon reservoir for the Antarctic Peninsula. The whale bones are from specimens harvested at the turn of the 20th century prior to nuclear testing in the 1950s. Thus, their radiocarbon age will provide valuable new constraints on the radiocarbon reservoir for shallow waters around Antarctica. An added benefit of this approach is that given the DNA determination, we will also be able to determine if that radiocarbon reservoir varies across three species of whales, thus testing the common assumption that the radiocarbon reservoir does not vary significantly across different species.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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