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Climate Change in the Pacific North America Region Over the Past Millennium: Development and Application of Novel Geochemical Tracers.

机译:过去千年中北美太平洋地区的气候变化:新型地球化学示踪剂的开发和应用。

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摘要

Decadal climate variability in the Pacific North America (PNA) region largely determines the fresh-water supply of the western United States and fisheries production of the northeast Pacific Ocean through tightly coupled ocean-atmosphere interactions. Documenting the historical manifestations of these interactions, over at least the past millennium, is an essential step towards anticipating the ramifications of future climate change on these resources. This dissertation aims to extend efforts at PNA paleoclimate reconstruction through the development of interannually resolved geochemical proxy records from annually laminated marine and lacustrine sediments. Comparison with instrumental climate measurements provides constraint on the driving mechanisms for observed geochemical variability in each record. The radiocarbon content (Delta 14C) of benthic foraminiferal tests in the Santa Barbara Basin (SBB) proves a sensitive tracer for decadal fluctuations in vertical density structure along the southern California margin that are forced by north Pacific ocean-atmosphere interactions and tropical-midlatitude teleconnections. Enumeration of cosmopolitan benthic foraminifera in the SBB over the past ∼250 years suggests that, on decadal time scales, the overall size and distribution of the SBB benthic foraminiferal community is largely a function of benthic carbon oxidation rate---a property previously linked to regional surface productivity. In the terrestrial realm, stable hydrogen isotope ratios (deltaD) of plant lipid biomarkers preserved in the sediments of Swamp Lake, Yosemite National Park, were measured over the 20th century and late medieval period (1160-1432 A.D). Plant lipid deltaD exhibits a complex relationship with environmental parameters but nevertheless reflects interannual to multidecadal changes in amount of wintertime precipitation in the Sierra Nevada Mountains over the 20th century. Consistent with this observation, multidecadal deltaD variability during the late medieval generally follows that of concomitant tree ring-derived hydrologic reconstructions and captures droughts of greater severity than any witnessed in the Sierra Nevada over the past 100 years. Comparison of the two isotopic records in terms of medieval vs. modern drought severity, however, requires further constraint on the driving mechanisms for long-term shifts in plant lipid deltaD. Overall, this dissertation documents the novel application of benthic foraminiferal Delta14 C and plant lipid deltaD as a means for reconstructing decadal scale PNA climate from high-resolution sedimentary archives.
机译:北美太平洋(PNA)地区的年代际气候多变性在很大程度上决定了美国西部的淡水供应和东北太平洋的渔业生产,这是通过紧密的海洋-大气相互作用来实现的。至少在过去的千年中,记录这些相互作用的历史表现是朝着预期未来气候变化对这些资源的后果迈出的重要一步。本文的目的是通过发展每年叠层的海洋和湖相沉积物的年解析地球化学代用记录来扩大PNA古气候的重建工作。与仪器气候测量值的比较为每个记录中观察到的地球化学变化的驱动机制提供了限制。在圣塔芭芭拉盆地(SBB)的底栖有孔虫试验的放射性碳含量(Delta 14C)证明了北太平洋海洋-大气相互作用和热带-中纬度遥相关联造成的加利福尼亚南部边缘垂直密度结构年代际波动的灵敏示踪剂。在过去约250年中对SBB大都会底栖有孔虫的计数表明,在十年的时间尺度上,SBB底栖有孔虫群落的总体规模和分布在很大程度上是底栖碳氧化率的函数-这种特性先前与区域表面生产力。在陆地领域,在20世纪和中世纪晚期(公元1160-1432年)测量了保存在优胜美地国家公园沼泽湖沉积物中的植物脂质生物标记物的稳定氢同位素比率(deltaD)。植物脂质deltaD与环境参数显示出复杂的关系,但是仍然反映了20世纪内华达山脉冬季冬季降水量的年际变化到数十年变化。与该观察结果一致,中世纪晚期的年代际三角洲多变性通常遵循伴随的年轮引起的水文重建,并捕获了比过去100年来内华达山脉更大的干旱。但是,就中世纪和现代干旱的严重程度比较这两个同位素记录,就需要进一步限制植物脂质δ长期变化的驱动机制。总体而言,本文记录了底栖有孔虫Delta14 C和植物脂质deltaD在高分辨率沉积档案中重建年代际尺度PNA气候的新应用。

著录项

  • 作者

    Roach, Lydia Darcy.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Climate Change.;Geochemistry.;Environmental Sciences.;Paleoclimate Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 255 p.
  • 总页数 255
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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