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A determination of air-sea gas exchange and upper ocean biological production from five noble gasses and tritiugenic helium-3

机译:利用五种惰性气体和三原子氦-3测定海气交换和上层海洋生物生产

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摘要

The five noble gases (helium, neon, argon, krypton, and xenon) are biologically and chemically inert, making them ideal oceanographic tracers. Additionally, the noble gases have a wide range of solubilities and molecular diffusivities, and thus respond differently to physical forcing. Tritium, an isotope of hydrogen, is useful in tandem with its daughter helium-3 as a tracer for water mass ages. In this thesis, a fourteen month time-series of the five noble gases, helium-3 and tritium was measured at the Bermuda Atlantic Time-series Study (BATS) site. The time-series of five noble gases was used to develop a parameterization of air-sea gas exchange for oligotrophic waters and wind speeds between 0 and 13 m s-1 that explicitly includes bubble processes and that constrains diffusive gas exchange to ± 6% and complete and partial air injection processes to ± 15%. Additionally, the parameterization is based on weeks to seasonal time scales, matching the time scales of many relevant biogeochemical cycles. The time-series of helium isotopes, tritium, argon, and oxygen was used to constrain upper ocean biological production. Specifically, the helium flux gauge technique was used to estimate new production, apparent oxygen utilization rates were used to quantify export production, and euphotic zone seasonal cycles of oxygen and argon were used to determine net community production. The concurrent use of these three methods allows examination of the relationship between the types of production and begins to address a number of apparent inconsistencies in the elemental budgets of carbon, oxygen, and nitrogen.
机译:五个稀有气体(氦气,氖气,氩气,k气和氙气)具有生物和化学惰性,因此使其成为理想的海洋示踪剂。另外,稀有气体具有广泛的溶解度和分子扩散性,因此对物理强迫有不同的反应。 hydrogen是氢的同位素,可与它的子氦3一起用作水质年龄的示踪剂。在本文中,在百慕大大西洋时间序列研究(BATS)站点测量了三种稀有气体氦3和tri的14个月时间序列。使用五个稀有气体的时间序列来为贫营养水和风速在0到13 m s-1之间的空气-海气体交换建立参数化,其中明确包括气泡过程,并将扩散气体交换限制为±6%和完全和部分空气注入过程达到±15%。此外,参数化是基于几周到季节性的时标,与许多相关生物地球化学循环的时标相匹配。氦同位素,tri,氩和氧的时间序列被用来限制上层海洋生物的生产。具体而言,使用氦通量计技术估算新产量,使用表观氧气利用率来量化出口产量,并使用富氧区季节性的氧气和氩气周期确定净群落产量。同时使用这三种方法可以检查生产类型之间的关系,并开始解决碳,氧和氮元素预算中许多明显的矛盾之处。

著录项

  • 作者

    Stanley Rachel H. R;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 eng
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