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Interannual Variability in the Antarctic-Ross Sea (IVARS): Nutrients and Seasonal Production

Interannual Variability in the Antarctic-Ross Sea (IVARS): Nutrients and Seasonal Production
南极罗斯海(IVARS)的年际变化:营养物和季节性生产
批准号:
0087401
负责人:
Walker Smith
金额:
$56.13万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-04-01 至 2006-03-31

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中文摘要
翻译
在过去几十年的海洋学研究中,人们认识到,海洋地球化学过程在不同年份之间存在着重大变化。 南大洋的年际变化表现在冰的范围和密集程度、食草动物群落的组成、鸟类和海洋哺乳动物的分布和繁殖成功率。然而,人们对浮游植物生产的年际变化或这些变化在食物网中的作用知之甚少。 该项目将收集南极罗斯海南部浮游植物季节性生产的时间序列数据。 此外,它将评估该系统的两个主要功能群体,硅藻和南极棕囊藻(一种群体附着植物)的生产的年际变化。 罗斯海为这种类型的调查提供了一个独特的环境,原因有很多。例如,在过去十年中,通过集中一些方案,罗斯海已经开始了事实上的时间序列。众所周知,物种多样性相对于其他系统减少,其季节性产量与南极任何地方一样大。最重要的是,总浮游植物群落(以及其两个功能组)的季节性生产可以从夏末营养概况估计。 该项目将涉及在罗斯海南部的美国海岸警卫队破冰船上进行短期巡航,这将允许在五年的夏末在特定位置收集水柱营养物质和颗粒物数据。 此外,将部署两个停泊在15号的硝酸盐分析仪,从而在南极首次收集整个生长季节真光层营养物质浓度的时间序列。 所有营养数据将用于计算罗斯海南部每年的季节性产量,并与以前收集的信息进行比较,从而评估群落净产量的年际变化。颗粒物数据将使我们能够估计夏末从表层输出的量,从而计算出这一生态系统过程的年际变化。 季节性生产(和生产者的主要类群)的年际变化是罗斯海食物网内较高营养级的生长和生存的一个潜在的重要特征。它们对于了解该区域地球化学过程的自然变化也很重要。由于预计罗斯海等极地地区将受到未来气候变化的影响,因此也预计会发生生物变化。 将这些变化置于自然变异的背景下是理解和预测这种变化的一个基本要素。因此,这项研究旨在量化南极海岸系统的自然变化,并最终了解其原因和对罗斯海食物网和生物地球化学循环的影响。
英文摘要
During the past few decades of oceanographic research, it has been recognized that significant variations in biogeochemical processes occur among years. Interannual variations in the Southern Ocean are known to occur in ice extent and concentration, in the composition of herbivore communities, and in bird and marine mammal distributions and reproductive success. However, little is known about the interannual variations in production of phytoplankton or the role that these variations play in the food web. This project will collect time series data on the seasonal production of phytoplankton in the southern Ross Sea, Antarctica. Furthermore, it will assess the interannual variations of the production of the two major functional groups of the system, diatoms and Phaeocystis Antarctica, a colonial haptophyte. The Ross Sea provides a unique setting for this type of investigation for a number of reasons. For example, a de facto time-series has already been initiated in the Ross Sea through the concentration of a number of programs in the past ten years. It also is well known that the species diversity is reduced relative to other systems and its seasonal production is as great as anywhere in the Antarctic. Most importantly, seasonal production of both the total phytoplankton community (as well as its two functional groups) can be estimated from late summer nutrient profiles. The project will involve short cruises on the US Coast Guard ice breakers in the southern Ross Sea that will allow the collection of water column nutrient and particulate after data at specific locations in the late summer of each of five years. Additionally, two moorings with in situ nitrate analyzers moored at fifteen will be deployed, thus collecting for the first time in the in the Antarctic a time-series of euphotic zone nutrient concentrations over the entire growing season. All nutrient data will be used to calculate seasonal production for each year in the southern Ross Sea and compared to previously collected information, thereby providing an assessment of interannual variations in net community production. Particulate matter data will allow us to estimate the amount of export from the surface layer by late summer, and therefore calculate the interannual variability of this ecosystem process. Interannual variations of seasonal production (and of the major taxa of producers) are a potentially significant feature in the growth and survival of higher trophic levels within the food web of the Ross Sea. They are also important in order to understand the natural variability in biogeochemical processes of the region. Because polar regions such as the Ross Sea are predicted to be impacted by future climate change, biological changes are also anticipated. Placing these changes in the context of natural variability is an essential element of understanding and predicting such alterations. This research thus seeks to quantify the natural variability of an Antarctic coastal system, and ultimately understand its causes and impacts on food webs and biogeochemical cycles of the Ross Sea.
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会议论文
NSFGEO-NERC: Collaborative Research – P2P: Predators to Plankton — Biophysical Controls in Antarctic Polynyas
Collaborative Research: The effect of carbonate chemistry on the sea ice community in the High Arctic
Collaborative Research: Shelfbreak frontal dynamics: mechanisms of upwelling, net community production, and ecological implications
Effects of Temperature on Phytoplankton Growth Rates
国内基金
海外基金
Accretion variability and its consequences: from protostars to planet-forming disks
  • 批准号:
    12173003
  • 项目类别:
    面上项目
  • 资助金额:
    60万元
  • 批准年份:
    2021
  • 负责人:
    沈雷歌
  • 依托单位: