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Record of the 17O-excess of H2O in the WAIS Ice Core

Record of the 17O-excess of H2O in the WAIS Ice Core
WAIS冰芯中17O-过量H2O的记录
批准号:
0837990
负责人:
Eric Steig
金额:
$37.67万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-06-01 至 2013-05-31
关键词:

项目摘要

项目成果

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中文摘要
翻译
Steig/0837990该奖项由2009年美国复苏和再投资法案(公法111-5)资助。该奖项支持一个项目,以获得目前正在南极洲西部钻探的WAIS分水岭冰芯中约10万年的17 O过量记录。迄今为止,仅在一个冰芯上获得了17 O过量记录?东方号的WAIS分水岭与沃斯托克分水岭相比很有吸引力,因为它位于一个非常不同的水分输送体系中,并且会受到海冰和大气环流可能完全不同的变化的影响。这项工作的智力价值在于,从冰芯H2O中的18 O/16 O和17 O/16 O的高精度测量中获得的17 O过量提供了与氘过量高度互补的信息,氘过量用于提供对过去气候条件的有用洞察,因为它依赖于极地降水最终来源的海洋表面源区的蒸发条件。与氘过量不同,17 O过量与源温度无关,并且在从源到冰盖的运输过程中只受到分馏的微弱影响。因此,17 O过量与传统测量相结合,提供了巨大的潜力,成为评估过去气候条件的强大新工具。特别是,它提供了一个机会,解开源湿度,风速,温度,当地的站点温度和分馏过程中的运输,冰芯水同位素记录的影响。这项工作更广泛的影响是,它有助于发展冰川学和古气候学以及其他研究领域所需的基础设施和专业知识。一名研究生将致力于方法开发以及冰芯剖面的分析和解释,为全面而新颖的博士学位提供大量材料。论文
英文摘要
Steig/0837990This award is funded under the American Recovery and Reinvestment Act of 2009 (Public Law 111-5).This award supports a project to obtain a ~100,000-year record of 17O-excess from the WAIS Divide ice core, currently being drilled in West Antarctica. To date, a 17O-excess record has been obtained only on one ice core ? from Vostok. WAIS Divide is appealing for comparison with Vostok because it is located in a very different moisture transport regime, and will be influenced by potentially quite different changes in sea ice and atmospheric circulation. The intellectual merit of the work is that 17O-excess, obtained from the high-precision measurement of both 18O/16O and 17O/16O in ice core H2O, provides information highly complementary to deuterium excess which is used to provide useful insight into past climate conditions because of its dependence on evaporative conditions at the ocean surface source regions where polar precipitation is ultimately derived. Unlike deuterium excess, 17O-excess is independent of source temperature, and is only weakly influenced by fractionation during transport from source to ice sheet. 17O-excess therefore offers great potential, in combination with traditional measurements, as a powerful new tool for evaluating climate conditions in the past. In particular, it provides the opportunity to disentangle the effects of source humidity, wind speed, and temperature, local site temperature and fractionation during transport, on ice core water isotope records. The broader impacts of the work are that it contributes to the development of infrastructure and expertise needed both for glaciology and paleoclimatology, as well as for other research areas. A graduate student will work on both the method development and the analysis and interpretation of the ice core profile, providing plenty of material for a well-rounded and novel Ph.D. thesis.
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国内基金
海外基金
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