Using Noble Gases to Assess the Ocean's Carbon Pumps

Author:

Hamme Roberta C.1,Nicholson David P.2,Jenkins William J.2,Emerson Steven R.3

Affiliation:

1. School of Earth and Ocean Sciences, University of Victoria, Victoria, British Columbia V8W 2Y2, Canada;

2. Marine Chemistry and Geochemistry Department, Woods Hole Oceanographic Institution, Woods Hole, Massachusetts 02540, USA;,

3. School of Oceanography, University of Washington, Seattle, Washington 98195, USA;

Abstract

Natural mechanisms in the ocean, both physical and biological, concentrate carbon in the deep ocean, resulting in lower atmospheric carbon dioxide. The signals of these carbon pumps overlap to create the observed carbon distribution in the ocean, making the individual impact of each pump difficult to disentangle. Noble gases have the potential to directly quantify the physical carbon solubility pump and to indirectly improve estimates of the biological organic carbon pump. Noble gases are biologically inert, can be precisely measured, and span a range of physical properties. We present dissolved neon, argon, and krypton data spanning the Atlantic, Southern, Pacific, and Arctic Oceans. Comparisons between deep-ocean observations and models of varying complexity enable the rates of processes that control the carbon solubility pump to be quantified and thus provide an important metric for ocean model skill. Noble gases also provide a powerful means of assessing air–sea gas exchange parameterizations.

Publisher

Annual Reviews

Subject

Oceanography

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