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Variable ageing and storage of dissolved organic components in the open ocean

Author

Listed:
  • Ai Ning Loh

    (School of Marine Science, College of William and Mary
    Florida Gulf Coast University)

  • James E. Bauer

    (School of Marine Science, College of William and Mary)

  • Ellen R. M. Druffel

    (University of California at Irvine)

Abstract

Seawater dissolved organic matter (DOM) is the largest reservoir of exchangeable organic carbon in the ocean, comparable in quantity to atmospheric carbon dioxide1,2. The composition, turnover times and fate of all but a few planktonic constituents of this material are, however, largely unknown3,4. Models of ocean carbon cycling are thus limited by the need for information on temporal scales of carbon storage in DOM subcomponents, produced via the ‘biological pump’, relative to their recycling by bacteria3,4. Here we show that carbohydrate- and protein-like substances in the open Atlantic and Pacific oceans, though often significantly aged, comprise younger fractions of the DOM, whereas dissolved lipophilic material exhibits up to ∼90 per cent fossil character. In contrast to the millennial mean ages of DOM observed throughout the water column, weighted mean turnover times of DOM in the surface ocean are only decadal in magnitude. An observed size–age continuum further demonstrates that small dissolved molecules are the most highly aged forms of organic matter, cycling much more slowly than larger, younger dissolved and particulate precursors, and directly links oceanic organic matter age and size with reactivity3,5.

Suggested Citation

  • Ai Ning Loh & James E. Bauer & Ellen R. M. Druffel, 2004. "Variable ageing and storage of dissolved organic components in the open ocean," Nature, Nature, vol. 430(7002), pages 877-881, August.
  • Handle: RePEc:nat:nature:v:430:y:2004:i:7002:d:10.1038_nature02780
    DOI: 10.1038/nature02780
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    Cited by:

    1. Mengfan Chu & Rui Bao & Michael Strasser & Ken Ikehara & Yang Ding & Kejian Liu & Mingzhi Liu & Li Xu & Yonghong Wang & Piero Bellanova & Troy Rasbury & Martin Kölling & Natascha Riedinger & Min Luo &, 2025. "Removal of dissolved organic carbon in the West Pacific hadal zones," Nature Communications, Nature, vol. 16(1), pages 1-10, December.

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