Collaborative Research: The Cold Late Oligocene Arctic Ocean and its Unique Biota
Collaborative Research: The Cold Late Oligocene Arctic Ocean and its Unique Biota
批准号:
0425869
负责人:
Louie Marincovich
金额:
$0.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-08-15 至 2010-07-31
中文摘要
这是加州科学院和佛罗里达大西洋大学的主要研究人员的合作提案。这项研究是一个综合评估的软体动物,微体化石,氧同位素,这将被用来记录目前未知的晚渐新世海洋古气候的北冰洋。化石将首先从阿拉斯加东北部Sagavanirktok地层的Nuwok成员中收集,这是已知在北冰洋地区出现的唯一上渐新世海洋沉积物。在实地考察之后,主要调查员将进行分类和氧同位素分析,以产生构成其结论基础的信息。根据对软体动物壳中氧同位素的初步研究,第一个需要检验的假设是,北冰洋在渐新世晚期几乎和今天一样冷,比同时期的中低纬度海洋更冷,但没有南极洲那么冷。如果这是真的,这将是地球渐新世从温室世界向冰屋世界过渡期间半球气候不对称的第一个证据。试点d18 O值Nuwok软体动物意味着更大的季节性比发生在邻近的北冰洋今天。第二个假设是,Nuwok晚渐新世软体动物和介形类是现代北冰洋生物群的最早表现。在渐新世晚期的努沃克生物群中,全球唯一存在的似乎是完全现存的属,而在这样一个渐新世动物群中,始新世遗留的软体动物也同样独特,这为这一想法提供了一个令人信服的理由。Nuwok生物群提供了一个独特的机会,在全球气候迅速变化的时期,将北极置于新生代海洋演变和多样化的全球模式的背景下。 第三种假设是,渐新世晚期的努沃克软体动物和介形类进化得很少,这是基于它们与现存的北冰洋物种惊人的相似。拟议活动的知识价值:这项研究将是第一个根据软体动物壳的氧同位素分析记录目前未知的渐新世晚期古气候和北冰洋季节性温度波动的研究。近几十年来,渐新世全球变冷的知识急剧增加,主要是由于深海岩心中微体化石的氧同位素研究,但在北冰洋海洋动物群中没有这样的工作。这项研究将利用同位素和古生物学分析,首次将北冰洋渐新世晚期的古气候置于全球背景下,并将这一古气候因素纳入从温室世界向冰屋世界过渡期间的全球气候模型中。这项拟议活动产生的更广泛影响:北冰洋的气候历史是地球历史上最后一个未解的史诗之一。 记录渐新世晚期(2600 - 2700万年前)的古气候,包括现代冰屋世界开始期间的季节性极端气候,将独特地增加对全球气候历史的全面了解。这项研究将提供从温室到冰屋世界戏剧性转变期间北冰洋领域的第一个见解,并将对海洋和大陆地球科学的许多古气候相关领域产生影响。这些来自世界上最敏感但最不为人所知的环境之一的新数据将有助于考虑全球气候变化的规模,速度和潜在影响。
英文摘要
This is a collaborative proposal from Principal Investigators at the California Academy of Sciences and Florida Atlantic University. This study is an integrated assessment of mollusks, microfossils, and oxygen isotopes which will be used to document the presently unknown late Oligocene marine paleoclimate of the Arctic Ocean. Fossils will first be collected from the Nuwok Member of the Sagavanirktok Formation, in northeastern Alaska, the only upper Oligocene marine sediments known to crop out in the Arctic Ocean region. After fieldwork, the Principal Investigators will undertake taxonomic and oxygen isotopic analyses to generate information that will form the basis for their conclusions. Based on a pilot study of oxygen isotopes derived from mollusk shells, the first hypothesis to be tested is that the Arctic Ocean was almost as cold in the late Oligocene as it is today, that it was colder than contemporaneous mid- and low-latitude seas, but that it was not as cold as Antarctica. If true, this would be the first evidence of hemispheric climatic asymmetry during the Earth's Oligocene transition from a Greenhouse to an Icehouse world. Pilot d18O values from Nuwok mollusks imply greater seasonality than occurs in the adjacent Arctic Ocean today. A second hypothesis is that Nuwok late Oligocene mollusks and ostracodes are the earliest manifestation of the modern Arctic Ocean biota. The globally unique presence of what appear to be entirely extant genera in the late Oligocene Nuwok biota, and the equally unique absence of Eocene holdover mollusks in such an Oligocene fauna, make a compelling case for this idea. The Nuwok biota provides a unique opportunity to place the Arctic within the context of global patterns of Cenozoic marine evolution and diversification during a time of rapid global climate change. A third hypothesis is that late Oligocene Nuwok mollusks and ostracodes evolved very little, based on their uncanny resemblance to extant Arctic Ocean species. This will be addressed in comparative taxonomic analysis of fossil and modern arctic and North Atlantic faunas.The intellectual merit of the proposed activity: This study will be the first to document the presently unknown late Oligocene paleoclimate and seasonal temperature fluctuations of the Arctic Ocean, based on oxygen isotope analysis of mollusk shells. Knowledge of Oligocene global cooling has dramatically increased in recent decades, mainly due to oxygen isotope studies of microfossils in deep-sea cores, but no such work has been done on Arctic Ocean marine faunas. This proposed study, using coordinated isotopic and paleontological analyses, will be the first to place the Arctic Ocean's late Oligocene paleoclimate into a global context, and allow factoring this paleoclimate into global climate models during the transition from a Greenhouse to an Icehouse world.The broader impacts resulting from the proposed activity: The climate history of the Arctic Ocean is one of the last unsolved epics of Earth history. Documenting its late Oligocene (26-27 million years ago) paleoclimate, including seasonal extremes, during initiation of the modern Icehouse world will uniquely add to overall understanding of global climate history. This study will provide the first insights from the Arctic Ocean realm during the dramatic transition from a Greenhouse to an Ice House world, and will have implications for many paleoclimate-related fields of marine and continental geoscience. These new data from one of the world's most sensitive, but least known, environments will be useful in considering the scale, rate, and potential effects of global climate change.
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Collaborative Research: Documenting the Global Middle Miocene Climatic Optimum in the High-Latitude North Pacific
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批准号:0095147
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项目类别:Standard Grant
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资助金额:$16.19万
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财政年份:2001
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负责人:Louie Marincovich
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依托单位:
Paleogeography and paleoclimate of a unique Paleogene biota in arctic Canada
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项目类别:Standard Grant
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资助金额:$2.45万
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财政年份:2001
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负责人:Louie Marincovich
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依托单位:
Documenting the Age of the Bering Strait
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批准号:9806461
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项目类别:Standard Grant
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资助金额:$45.38万
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财政年份:1998
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负责人:Louie Marincovich
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依托单位:
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