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Dust storms and Chinese loess sources over the last 22 million years

Dust storms and Chinese loess sources over the last 22 million years
过去2200万年的沙尘暴与中国黄土来源
批准号:
NE/I008918/1
负责人:
Randall Parrish
金额:
$9.3万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2011
资助国家:
英国
项目状态:
已结题
起止时间:
2011 至 --

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中文摘要
翻译
尘埃循环是气候的一个基本组成部分,但仍然是地球系统中最不被了解的方面之一。大气中的尘埃影响海洋生产力和大气二氧化碳水平、云的形成以及大气吸收或反射的辐射量,所有这些都推动了气候变化。然而,过去人们对环境变化如何控制粉尘的产生和排放知之甚少,这阻碍了对其对气候影响的量化,这一事实在政府间气候变化专门委员会2007年报告中得到承认。该项目试图通过准确定位世界上最大、最长的活动尘埃汇--中国黄土高原--的准确来源来解决这一问题。中国黄土高原拥有2200万年的黄土(沉积尘埃)沉积档案,涵盖了理解地球历史最重要的时期之一。中国黄土对了解过去亚洲季风和沙尘暴的变化做出了重要贡献,是现有的最有价值的气候档案之一。然而,它的解释依赖于对这种尘埃的确切来源以及它到达黄土高原的路径的详细限制。不幸的是,尽管利用大块样品的地球化学性质进行了研究,但在1)精确的黄土源区域,2)对尘埃产生的环境控制,3)源是否随时间变化,4)大气机制是为了尘埃输送,以及5)记录中最古老的部分(8-22 Ma)是否真的是风吹的情况下,存在着多种相互竞争的假设。这些分歧严重限制了我们对这些沉积物的真正来源的理解,使我们无法限制过去导致粉尘排放和运输的大气、构造和海洋条件,并破坏了某些气候指标在黄土中的使用。这反过来又限制了我们对中国过去主要运行的环境过程的理解,以及当前大气环流系统的起源。克服这一差距的关键是适当限制黄土的来源。我们的试点工作表明,广泛应用的黄土及其源区沉积物的大宗沉积物地球化学分析将掩盖黄土粉尘的多个来源的细节。只有某些重矿物(比重2.8)的单个颗粒才能进行来源诊断,因为每个颗粒都有一个来源,其某些地球化学和地质年代学特征可能是这方面的诊断。因此,从黄土和邻近的沙漠沉积物中分离出来的多个单颗粒锆石和其他重矿物的分析将使用多代理单颗粒地球化学方法进行,以最大限度地提高成功的可能性。在我们的试点工作之前,这还没有在中国黄土上进行过。这些分析的样本将取自中国多个典型的黄土序列,从而能够确定来源的时间和空间差异。采样将集中在关键时段,如西藏的隆升、冰河时代冰川的开始和近代冰川强度的增强。这一结果将使我们能够检验关于黄土粉尘来源和输送的相互矛盾的假设,从而能够约束对粉尘排放的基本控制和涉及其输送的大气机制。反过来,通过与独立记录的比较,这将使我们能够评估全球和区域气候、构造和海洋变化对尘埃的影响。目前,这是地球系统中一个知之甚少但却至关重要的组成部分。最后,这些结果将检验广泛使用的沉积速率和粒度等沉积指标在从黄土中恢复过去环境变化方面的有效性。
英文摘要
The dust cycle is a fundamental component of climate, but remains one of the least understood aspects of the Earth-system. Dust in the atmosphere affects oceanic productivity and atmospheric carbon dioxide levels, cloud formation and the amount of radiation absorbed or reflected by the atmosphere, all driving climatic change. However, how dust production and emission is controlled by environmental change in the past is poorly understood, preventing quantification of its effects on climate, fact acknowledged in the recent IPCC 2007 report. This project addresses this gap by attempting to pinpoint the precise sources of the world's largest and longest active dust sink, the Chinese Loess Plateau. The Chinese Loess Plateau contains a 22 million year archive of loess (deposited dust) deposition, covering one of the most significant time periods for understanding the Earth's history. Chinese loess has made crucial contributions to understanding past changes in the Asian monsoon and dust storms and is one of the most valuable climate archives available. However, its interpretation relies on detailed constraint of the precise sources of this dust, and the pathways by which it reaches the Loess Plateau. Unfortunately, despite investigation using the geochemical properties of bulk samples there are multiple competing hypotheses over 1) the precise loess source regions, 2) the environmental controls on dust production, 3) whether sources shift through time, 4) the atmospheric mechanisms are for dust transport and indeed 5) whether the oldest part of the record (8-22 Ma) is indeed wind-blown at all. These disagreements severely limit our understanding of the very origin of these deposits, preventing us from constraining the past atmospheric, tectonic and oceanographic conditions responsible for the emission and transport of dust and undermining the use of certain climate proxies in loess. In turn this restricts our understanding of the dominant environmental processes operating in China in the past, and the origin of the current atmospheric circulation systems. Key to overcoming this gap is to properly constrain the sources of loess. Our pilot work has demonstrated that widely applied bulk sediment geochemical analysis of sediment from loess and source regions will mask the detail of the multiple sources of loess dust. Only individual grains of certain heavy minerals (> 2.8 specific gravity) can be source diagnostic as each grain will have one source and certain of its geochemical and geochronological characteristics may be diagnostic of this. Thus analysis of multiple single grains of zircons and other heavy minerals isolated from loess and adjacent desert deposits will be undertaken using a multi-proxy single-grain geochemical approach to maximise the likelihood of success. Until our pilot work this has not been conducted on Chinese loess previously. Samples for these analyses will be taken from multiple, typical loess sequences in China, allowing determination of source variance through time and space. Sampling will concentrate on key intervals, such as the uplift of Tibet, the onset of Ice Age glaciation and the enhanced intensity of glaciation in more recent times. The results will allow us to test between conflicting hypotheses of loess dust source and transport, enabling constraint of the fundamental controls on dust emission and the atmospheric mechanisms involved in their transport. In turn and through comparison with independent records, this will allow us to assess the effect of global and regional climatic, tectonic and oceanographic changes on dust. This is currently a poorly understood yet critical component of the Earth-system. Finally, the results will test the validity of widely used sedimentary proxies such as mass accumulation rates and grain size in reconstructing past environmental changes from loess.
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  • 批准号:
    NE/H011102/1
  • 项目类别:
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  • 资助金额:
    $3.0万
  • 财政年份:
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  • 依托单位:
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  • 项目类别:
    Research Grant
  • 资助金额:
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  • 财政年份:
    2009
  • 负责人:
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