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Acquisition of a MC-ICPMS for Earth Sciences Research in New Mexico

Acquisition of a MC-ICPMS for Earth Sciences Research in New Mexico
购买 MC-ICPMS 用于新墨西哥州的地球科学研究
批准号:
0326902
负责人:
Yemane Asmerom
金额:
$0.0万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-08-15 至 2007-12-31

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中文摘要
翻译
地球科学的新分析能力可能使我们对重要过程的理解取得根本性突破,从发生在表面的过程,如气候变化,到发生在地球深处的过程,如融化和融化转移。基于新一代磁扇区多收集器电感耦合等离子体质谱计(MC-ICP-MS)的自然发生重同位素测量的最新进展,在时间尺度和地质变化领域的精细分辨率方面提供了前所未有的成果。例如,我们了解大陆年尺度气候变化的努力,对快速气候变化的机制理解是必不可少的,目前由于我们现有仪器缺乏精度而受到挫折。在新墨西哥大学的资助下,美国国家科学基金会拨款购买了一台MC-ICP-MS,这将为我们提供获得所需精度的工具。同样,我们在岩浆生成、分化和运移的时间尺度上,利用铀衰变系列同位素的数据,将受益于新的仪器,既可以获得我们有能力获得的更精确的核素数据,也可以让我们进行其他基本核素的测量,如镤的同位素。其他将受到影响的研究兴趣领域包括陆地和行星项目,这些项目利用我们目前的仪器无法测量的长寿命同位素系统,如锇同位素,或那些难以测量的同位素,包括铪同位素。最近资助的环境同位素示踪项目需要高通量的数据,将大大受益于增加的能力。该实验室还深入参与培训来自新墨西哥州各大学的各级学生和来自不同社会背景的学生。这些新的分析能力将对新墨西哥州高等教育机构的广泛研究、培训和推广活动产生深远的影响。
英文摘要
EAR-0326902AsmeromNew analytical capabilities in Earth Sciences have made possible fundamental breakthroughs in our understanding of vital processes, ranging from those occurring at the surface, such as climate change, to those that occur deep within the earth, such as melting and melt transfer. Recent developments in the measurement of naturally occurring heavy isotopes, based on new-generation magnetic sector multi-collector inductively coupled plasma mass spectrometer (MC-ICP-MS), stand to provide unprecedented gains in fine-scale resolution of time-scales and domains of geological change. For example, our effort to understand annual scale climate variability in continents, which is essential for arriving at a mechanistic understanding of rapid climate change, is currently frustrated by the lack of precision of our current instrumentation. The acquisition of a MC-ICP-MS through this NSF grant, with contribution from the University of New Mexico, will provide us the tool by which to gain the needed precision. Similarly, our work on time-scale of magma generation, differentiation and transport, which utilizes data of uranium decay series isotopes, will benefit from the new instrumentation, both with respect to getting more precise data for those nuclides for which we have capabilities, and also allow us to do measurement of other essential nuclides, such as the isotopes of protactinium. Other areas of research interests that will be impacted include terrestrial and planetary projects that utilize long-lived isotopic systems that our current instrumentation can not measure, such as osmium isotopes, or those that are difficult to do, including hafnium isotopes. Recently funded environmental isotope tracer projects, which require high throughput of data, will greatly benefit from the added capabilities. The Laboratory is also deeply involved in training students from New Mexico universities at all levels and from very diverse social backgrounds. These new analytical capabilities stand to profoundly benefit a wide range of research, training and outreach activities at these New Mexico institutions of higher learning.
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