课题基金 / 基金详情

High-resolution, quantitative records of temperature and effective precipitation for the past 25kyr from Lake Qinghai

High-resolution, quantitative records of temperature and effective precipitation for the past 25kyr from Lake Qinghai
青海湖近25公里温度和有效降水的高分辨率定量记录
批准号:
0902805
负责人:
Yongsong Huang
金额:
$35.27万
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:
2009-09-01 至 2013-08-31

项目摘要

项目成果

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中文摘要
翻译
该奖项是根据2009年美国复苏和再投资法案(公法111-5)资助的。青藏高原位于地球大陆上海拔最高的地区,以其非凡的季风气候而闻名。它是对全球气候变化最敏感的地区之一。高分辨率,定量和长期的古气候记录,从这个地区是非常有价值的,我们了解的机制控制季风变化,无论是区域和全球。该地区现有的记录由于持续时间短而受到阻碍(例如,树木年轮),多个影响因素(例如,高海拔冰芯,花粉,湖泊碳酸盐del-18 O),和定性性质(例如,沉积物岩相)。该基金将利用国际大陆钻探计划最近在青海湖采集的沉积物岩心,重建过去25,000年来数十年至百年尺度的温度和有效降水记录。青海湖沉积物中罕见的烯酮类生物标志物,为定量研究大陆古气候提供了可能。利用青海湖沉积物中陆地和水生生物标志物的烯酮分布和化合物特异性氢同位素比值,独立重建了青海湖沉积物的温度、盐度和水文平衡。它还分离出湖泊沉积物中的单个木质素酚,用于放射性碳测年,以获得可靠的年代学。该小组假设,在过去的25,000年中,青海湖周围温度和降水变化的幅度,时间,快速性和周期性对关键气候强迫因子(如日照,太阳活动和温室气体)表现出异常敏感性,并显示出与北大西洋和热带过程的明显联系。通过与模拟人员的密切合作,将这一综合古气候数据集与模拟结果进行转化性综合,以揭示气候变化的潜在驱动机制。PI被一个国际研究人员小组指定负责青海湖的有机地球化学研究。他的工作代表了美国参与青海钻探项目,该项目从一个具有重要战略意义的大陆地区获得了高质量的古气候记录。这项研究促进了多学科方法(有机地球化学,同位素地球化学和古气候学)来研究突出的气候问题,并允许学生进行跨学科培训。PI已经证明了他的承诺,提供尖端的研究经验,以本科生每年监督几个本科毕业生的高级论文。该项目促进研究生参与普罗维登斯公立学校的科学教学,并通过布朗大学正在进行的NSF GK-12教育计划,促进普罗维登斯学校教师参与研究。
英文摘要
This award is funded under the American Recovery and Reinvestment Act of 2009 (Public Law 111-5).The Qinghai-Tibetan Plateau occupies the highest elevation on the continental Earth and is renowned for its extraordinary monsoonal climate. It is among the most sensitive regions to global climate change. High resolution, quantitative and long term paleoclimate records from this region are extremely valuable to our understanding of the mechanisms controlling monsoon variability, both regionally and globally. Existing records in the region are hampered by their short duration (e.g., tree rings), multiple influencing factors (e.g., high-altitude ice cores, pollen, lake carbonate del-18O), and qualitative nature (e.g., sediment lithofacies). This grant will reconstruct decadal to centennial scale records of temperature and effective precipitation for the past 25,000 years from the recently recovered sediment cores of Lake Qinghai by the International Continental Drilling Program. Lake Qinghai sediments are rare in that they contain alkenone biomarkers, providing an opportunity for quantitative continental paleoclimate research. This study uses alkenone distributions and compound-specific H isotope ratios of terrestrial and aquatic biomarkers in Lake Qinghai sediments to independently reconstruct temperature, salinity and hydrological balance. It also isolates individual lignin phenols in lake sediments for radiocarbon dating to obtain a robust chronology. The group hypothesize that the amplitude, timing, abruptness and periodicity of temperature and precipitation changes around Lake Qinghai for the past 25,000 yrs display exceptional sensitivity to key climate forcing factors such as insolation, solar activities and greenhouse gases, and show clear linkages to North Atlantic and tropical processes. Close collaboration with modelers will permit transformative synthesis of this comprehensive paleoclimate data set with modeling outcomes to unravel the underlying driving mechanisms of climatic variations.The PI was designated to be in charge of organic geochemical studies for Lake Qinghai by an international group of reserchers. His work represents the United States' participation in the Qinghai drilling project, which obtained high quality paleoclimate records from a strategically important continental region. This study promotes multidisciplinary approaches (organic geochemistry, isotope geochemistry and paleoclimatology) to studying prominent climatic problems, and allows cross-discipline training of students. The PI has demonstrated his commitment to provide cutting edge research experience to undergraduate students by supervising on several under-graduate senior theses per year. This project facilitates participation of graduate students in teaching science in Providence public schools and involvement of Providence school teachers in research through the ongoing NSF GK-12 Education Program at Brown University.
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会议论文
Comprehensive analysis of alkenones and alkenoates by reversed phase HPLC-MS with unprecedented sensitivity and selectivity
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Acquisition of a continuous flow isotope ratio mass spectrometer (IRMS) system for the Organic Geochemistry Core Facility at Brown University
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Acquisition of a gas chromatograph-mass spectrometer system at Department of Earth, Environmental and Planetary Sciences, Brown University
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Beyond the unsaturation ratios (UK37' or UK37) of long chain alkenones: unlocking the hidden treasure trove of alkenone-producing haptophytes
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