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RAPID Response in Gulf of Mexico: Sediment Trap Investigations

RAPID Response in Gulf of Mexico: Sediment Trap Investigations
墨西哥湾的快速响应:沉积物收集器调查
批准号:
1044289
负责人:
Chris German
金额:
$19.39万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-08-01 至 2014-01-31

项目摘要

项目成果

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中文摘要
翻译
知识价值:2009年9月,在墨西哥湾北部部署了两个时间序列沉淀物捕集器和海流计系泊设备,以调查在两个特征良好和重要的深水珊瑚和化学合成管虫群落结合地点向海底沉降的生物通量(和幼虫招募)(Fisher等人,2007年)。自2009年9月11日以来,每个设置在海床上方、水深400-450米的诱捕器每两周收集一次新的沉淀物样本,并将继续这样做,直到2010年7月2日,最后一个样本瓶将被旋转关闭,诱捕器将等待回收,这是计划于11月实施的已获资助的实地计划(NOAA-MMS)的一部分。然而,巧合的是,这两个圈闭位于最近深水地平线事件和海底持续漏油事件的东北方向32英里和西南偏西方向81英里处。美国国家海洋和大气局的持续监测表明,到4月底,这两个研究地点中至少有一个被海洋表面的石油排放覆盖,这两个地点现在都被至少轻到中等浓度的碳氢化合物±分散剂覆盖。然而,目前尚未确定的是,深海正在发生什么,以及对墨西哥湾海底,特别是其原始和独特的深水珊瑚/化学合成管虫群落可能产生什么影响。因此,这项提议的目的有两个。首先,我们寻求加入到该地区的快速反应研究游轮,部署另外两个短沉积物捕集器和海流计系泊设备,以确保我们保持在事件发生前6个月开始的采样的连续性,并继续在我们之前目标为对深水珊瑚/化学合成管虫生态系统最重要的两个地点进行采样。如果我们不能做到这一点,我们的时间序列将在7月2日结束。其次,我们预计将会有大量其他私人投资机构希望进行的其他研究,因此我们寻求足够的资金,在这些样本(加上我们之前部署的样本)被找回后立即进行初步鉴定(2010年11月已经资助的巡航)。具体地说,我们预计将生成一套存档样本,其中包含关于质量和生物通量(包括无机和有机碳含量)的共同注册信息,以及初步的指纹?广泛的影响:墨西哥湾正在出现的环境影响是巨大的社会关切,并对国家未来的深水资源开采和能源供应产生影响。但是,目前对全球海洋观测系统的大部分注意力必然集中在最容易获得数据的浅海上层。巧合的是,这项工作代表了一个项目,它可以为深水地平线井口附近非凡的、以前的原始深水生态系统带来的影响提供独特的解释。由于我们的联合分析只需要我们收集的样本的一小部分,我们将仔细存档每个样本的其余部分,以便进行更广泛的调查,此外,我们将广泛和迅速地公布我们的结果,以产生此类增值研究。例如,这项工作显然将对(例如)正在开发的其他项目具有相关性和潜力。R.Camilli(WHOI)和C.Fisher(宾夕法尼亚州)。我们的团队随时准备与所有感兴趣的科学团体合作,并与一个对响应努力感兴趣的电影团队(位于圣巴巴拉的Mike deGruy)联系(尽管我们不能向他们承诺,如果另一个团队被证明更适合这项工作)。
英文摘要
Intellectual Merit: In September 2009, two time-series sediment trap and current meter moorings were deployed in the northern Gulf of Mexico to investigate biogenic fluxes settling to the seafloor (and larval recruitment) at two well-characterized and significant sites of combined deep-water coral and chemosynthetic tube-worm colonies (Fisher et al., 2007). Each of thesetraps, set just above the seabed and in water depths of 400-450m, have been collecting a new sample of settling material every two weeks since 11 September 2009 and will continue to do so until 2nd July 2010 when their last sample bottle will be rotated shut and the traps will awaitrecovery as part of an already-funded field program (NOAA-MMS) scheduled for November. Serendipitously, however, these two traps are located just 32 nmiles to the NE and 81 nmiles to the WSW of the recent Deepwater Horizon incident and continuing oil release from the seafloor. Continuous monitoring by NOAA has shown that at least one of these two study sites became overlain by oil discharge at the ocean surface by the end of April and that both sites are nowoverlain by at least light to medium concentrations of hydrocarbons ± dispersant. What remains unestablished at this point, however, is what is happening at depth and what impacts there may be at the Gulf of Mexico seafloor and, specifically, its pristine and unique deepwater coral/chemosynthetic tube-worm colonies. The purpose of this proposal, therefore, is two-fold. First we seek to join a rapid response research cruise to the area to deploy two additional short sediment trap and current meter moorings to ensure that we maintain continuity in the sampling that began 6 months before the incident and remains ongoing at each of the two sites that we hadpreviously targeted as being of most significance in terms of deepwater coral/chemosynthetic tubeworm ecosystems. If we do not achieve that, our time series will end on July 2nd. Second, and anticipating that there will be a wealth of additional studies that many other PIs will wish to pursue, we seek sufficient funds to conduct initial characterization from these samples (plus those from our earlier deployments) as soon as they are recovered (already-funded cruise in November 2010). Specifically, we anticipate generating a suite of archived samples with coregistered information on mass and biogenic flux (to include inorganic and organic carbon content) and preliminary ?finger-printing? of any hydrocarbon signatures present in each sample.Broader Impacts: The emerging environmental impact in the Gulf of Mexico is of great societal concern and has implications for both future deepwater resource extraction and energy supply for the nation. But the majority of the attention currently being paid to the GoM system is, of necessity, focused on the shallow upper ocean where data is most readily obtained. Serendipitously, this work represents a project that can shed unique light on the effects that maybe being imparted upon remarkable and formerly pristine deepwater ecosystems in close proximity to the Deepwater Horizon well-head. Because our combined analyses will only require a small fraction of the samples we collect we will archive the remainder of each sample carefully for broader investigations and, further, we will publicize our results widely and promptly to engender such value-added research. For example, this work will clearly be of relevance and potential to other projects also being developed by (e.g.) R.Camilli (WHOI) andC.Fisher (Penn.State). Our group stands ready to work with all such interested scientific parties and is also in contact with a film team (Mike deGruy, based in Santa Barbara) interested in a response effort (although we have no commitments to them should another team prove more suitable for that work).
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会议论文
Collaborative Research: US GEOTRACES GP17-OCE and GP17-ANT: Properties and processes impacting other trace element and isotope cycles using noble gas and stable isotope tracers
  • 批准号:
    2148626
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    Continuing Grant
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    2022
  • 负责人:
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  • 依托单位:
EAGER: Collaborative Research: Has Recent Tectono-Magmatic Activity at Lō'ihi (Kama’ehuakanaloa) Seamount perturbed vent-fluid circulation and hydrothermal Fe export to the oce
Collaborative Research: Hydrothermal Estuaries: What Sets the Hydrothermal Flux of Fe and Mn to the Oceans?
Collaborative Research: Are Low-Temperature Hydrothermal Vents an Important but Overlooked Source of Stabilized Dissolved Iron to the Ocean?
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