Sulfur Cycling Through the Neoproterozoic Interglacial Interval: An Integrated Field and Geochemical Study of the Abenab Subgroup in Northern Namibia
Sulfur Cycling Through the Neoproterozoic Interglacial Interval: An Integrated Field and Geochemical Study of the Abenab Subgroup in Northern Namibia
批准号:
0720045
负责人:
Matthew Hurtgen
金额:
$19.0万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-08-01 至 2011-07-31
中文摘要
新元古代晚期见证了地球历史上最极端的气候事件,可能包括两次雪球冰川(斯特里安冰川和马里诺冰川)。最近,人们把相当多的注意力集中在检验雪球地球假说的有效性、对冰川沉积物进行放射性测年以及了解哪些地质条件导致了新元古代中期全球变冷。然而,在Sturtian和Marinoan冰期之间沉积的沉积物的地球化学方面只做了有限的工作,尽管这些工作保存了新元古代地球系统在这个动荡的气候时代最直接和最连续的记录。这项提议是对大约55Myr间冰期期间全球硫循环动力学的一次无与伦比的研究,利用了碳酸盐-易解合硫酸盐(CAS)的硫和氧同位素组成以及纳米比亚北部Abenab亚群沉积物中沉积黄铁矿的硫同位素组成。该提案的主要目标是限制斯特尔丁冰川事件后的海洋化学,研究海洋氧化还原与新元古代中期碳和硫的地球化学循环之间的关系,并测试关于马里奥南冰川可能触发机制的假设。近年来,通过对中国科学院硫同位素组成的研究,人们对前寒武纪外生硫循环的认识有了很大的进步。通常,这些研究工作通过在一个地点的单一地层剖面评估CAS的硫同位素组成来表征给定时间段的硫同位素演化。在这项提案中,采取了一种不同的方法。利用与古岸线垂直的断面上多个剖面的CAS和黄铁矿的硫同位素组成,评价间冰期海水硫酸盐的硫同位素演化。最近的研究表明,较大的横向d34S硫酸盐梯度是在马里诺冰川之后形成的(Hurtgen等人,2006年)。这些结果对恢复新元古代~(34)S硫酸盐记录和确定海相硫酸盐岩成藏的时间具有重要意义。该项目将侧重于CAS d34S和d18O数据的时间和空间变异性,以确定CAS保存的同位素组成的内在散布,评估成岩作用和海平面对海洋硫同位素组成的影响,并确定横向d34S梯度是间冰期的特征还是仅是冰期后海洋的典型特征。串联的d34S-d18O数据将被用来比较斯特尔蒂冰川和马里诺冰川之后的海洋条件,并限制冰川开始的触发机制。该项目的结果还将建立D34 S(硫酸盐-黄铁矿),并有助于确定将海洋氧化还原与碳和硫的地球化学循环联系起来的复杂反馈集,以及这些反馈可能如何影响新元古代中期的气候。广泛影响:(1)该项目将为一名研究生提供野外研究技术和分析同位素地球化学方面的培训,并为该学生提供与另一机构的同事合作的机会。(2)该项目产生的数据将成为一个新网站的核心,该网站专门存储通过公共资助项目产生的所有新元古代硫磺数据。将鼓励外地其他工作人员提供其发布的数据,以便以易于获取和一致的方式存档。(3)为了吸引未被充分代表的青年投身地球科学,国际学生联合会将参与项目EXPITE项目,该项目将西北大学人才发展中心与当地学校联系起来,以确定有科学倾向的少数民族学生,并支持他们在高中期间发展数学和科学技能。PI将招募一名兴奋的学生参与这个项目。
英文摘要
The late Neoproterozoic witnessed among the most extreme climatic events in Earth history, including perhaps two snowball glaciations (Sturtian and Marinoan). Considerable attention has been focused recently on testing the validity of the snowball Earth hypothesis, radiometrically dating the glacial deposits, and understanding what geological conditions were responsible for the onset of global cooling in the middle Neoproterozoic. However, only limited work has been done on the geochemistry of sediments deposited between the Sturtian and Marinoan ice ages, despite the fact that these preserve the most direct and continuous record of the Neoproterozoic Earth system during this tumultuous climatic epoch. This proposal represents an unparalleled investigation into dynamics of the global sulfur cycle during the ca.55 Myr interglacial interval, using both the sulfur and oxygen isotope composition of carbonateassociated sulfate (CAS) and the sulfur isotope composition of sedimentary pyrite from sediments of the Abenab Subgroup in northern Namibia. The principal objectives of the proposal are to constrain ocean chemistry in the aftermath of the Sturtian glacial event, examine the relationship between ocean redox and the geochemical cycles of carbon and sulfur for the middle Neoproterozoic, and test hypotheses regarding possible trigger mechanisms for the Marionan glaciation. In recent years, significant improvements to the understanding of the Precambrian exogenic sulfur cycle have been made possible by advances involving the sulfur isotope composition of CAS. Typically, these research efforts characterize sulfur isotope evolution for a given time period by assessing the sulfur isotope composition of CAS through a single stratigraphic section at one locality. In this proposal, a different approach is taken. The sulfur isotope evolution of interglacial seawater sulfate will be evaluated using the sulfur isotope composition of CAS and pyrite in multiple sections along a transect perpendicular to the paleo-shoreline. Recent work has shown that large lateral d34Ssulfate gradients developed in the aftermath of the Marinoan glaciation (Hurtgen et al., 2006). These results have important implications for the reconstruction of the Neoproterozoic 34Ssulfate record and the timing of the growth of the marine sulfate reservoir. This project will focus on both the temporal and spatial variability of CAS d34S and d18O data to establish the intrinsic scatter in isotopic compositions preserved in CAS, evaluate the effects diagenesis and of sea level on marine sulfur isotope composition, and determine whether lateral d34S gradients were a feature of interglacial times or if they were typical only of the post-glacial ocean. Tandem d34S-d18O data will be used to compare the oceanographic conditions following the Sturtian and Marinoan glaciations and to constrain the trigger mechanisms for the onset of glaciation. The results of this project will also establish d34 S(sulfate-pyrite) and help to ascertain the complex set of feedbacks that link ocean redox and the geochemical cycles of carbon and sulfur and how these feedbacks may have operated to influence climate in the middle Neoproterozoic.Broader Impacts: (1) This project will provide training to one graduate student in field research techniques and analytical isotope geochemistry and an opportunity for that student to work collaboratively with colleagues from another institution. (2) The data generated from this project will be the nucleus of a new website devoted to the storage of all Neoproterozoic sulfur data generated through publicly funded projects. Other workers in the field will be encouraged to contribute their published data to be archived in an easily accessed and consistent manner. (3) In order to attract under-represented youth to the Earth Sciences, the PI will participate in the Project EXCITE program, which links Northwestern's Center for Talent Development with local schools to identify scientifically-inclined minority students and support the development of their math and science skills through high school. The PI will recruit an EXCITE student to participate in this project.
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会议论文
CAREER: The Role of Sulfur in Regulating the Marine Carbon Cycle: Implications for Understanding Oceanic Anoxic Events
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批准号:0955969
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项目类别:Continuing Grant
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资助金额:$51.19万
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财政年份:2010
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负责人:Matthew Hurtgen
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依托单位:
Collaborative Research: Ocean Oxidation and the Biosphere During Neoproterozoic Glaciation
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批准号:0921913
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项目类别:Standard Grant
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资助金额:$21.92万
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财政年份:2009
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负责人:Matthew Hurtgen
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依托单位:
海外基金