<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE article PUBLIC "-//NLM//DTD Journal Publishing DTD v3.0 20080202//EN" "https://jats.nlm.nih.gov/nlm-dtd/publishing/3.0/journalpublishing3.dtd">
<article xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" article-type="research-article" dtd-version="3.0" xml:lang="en">
<front>
<journal-meta>
<journal-id journal-id-type="publisher">BG</journal-id>
<journal-title-group>
<journal-title>Biogeosciences</journal-title>
<abbrev-journal-title abbrev-type="publisher">BG</abbrev-journal-title>
<abbrev-journal-title abbrev-type="nlm-ta">Biogeosciences</abbrev-journal-title>
</journal-title-group>
<issn pub-type="epub">1726-4189</issn>
<publisher><publisher-name>Copernicus Publications</publisher-name>
<publisher-loc>Göttingen, Germany</publisher-loc>
</publisher>
</journal-meta>
<article-meta>
<article-id pub-id-type="doi">10.5194/bg-4-233-2007</article-id>
<title-group>
<article-title>An oceanic fixed nitrogen sink exceeding 400 Tg N a&lt;sup&gt;&amp;minus;1&lt;/sup&gt; vs the concept of homeostasis in the fixed-nitrogen inventory</article-title>
</title-group>
<contrib-group><contrib contrib-type="author" xlink:type="simple"><name name-style="western"><surname>Codispoti</surname>
<given-names>L. A.</given-names>
</name>
<xref ref-type="aff" rid="aff1">
<sup>1</sup>
</xref>
</contrib>
</contrib-group><aff id="aff1">
<label>1</label>
<addr-line>University of Maryland Center for Environmental Science, Horn Point Laboratory, P.O. Box 775, Cambridge, MD 21613, USA</addr-line>
</aff>
<pub-date pub-type="epub">
<day>07</day>
<month>05</month>
<year>2007</year>
</pub-date>
<volume>4</volume>
<issue>2</issue>
<fpage>233</fpage>
<lpage>253</lpage>
<permissions>
<copyright-statement>Copyright: &#x000a9; 2007 L. A. Codispoti</copyright-statement>
<copyright-year>2007</copyright-year>
<license license-type="open-access">
<license-p>This work is licensed under the Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Generic License. To view a copy of this licence, visit <ext-link ext-link-type="uri"  xlink:href="https://creativecommons.org/licenses/by-nc-sa/2.5/">https://creativecommons.org/licenses/by-nc-sa/2.5/</ext-link></license-p>
</license>
</permissions>
<self-uri xlink:href="https://bg.copernicus.org/articles/4/233/2007/bg-4-233-2007.html">This article is available from https://bg.copernicus.org/articles/4/233/2007/bg-4-233-2007.html</self-uri>
<self-uri xlink:href="https://bg.copernicus.org/articles/4/233/2007/bg-4-233-2007.pdf">The full text article is available as a PDF file from https://bg.copernicus.org/articles/4/233/2007/bg-4-233-2007.pdf</self-uri>
<abstract>
<p>Measurements of the N&lt;sub&gt;2&lt;/sub&gt; produced by denitrification, a better
understanding of non-canonical pathways for N&lt;sub&gt;2&lt;/sub&gt; production such as the
anammox reaction, better appreciation of the multiple environments in which
denitrification can occur (e.g. brine pockets in ice, within particles
outside of suboxic water, etc.) suggest that it is unlikely that the oceanic
denitrification rate is less than 400 Tg N a&lt;sup&gt;&amp;minus;1&lt;/sup&gt;. Because this sink term
far exceeds present estimates for nitrogen fixation, the main source for
oceanic fixed-N, there is a large apparent deficit (~200 Tg N a&lt;sup&gt;&amp;minus;1&lt;/sup&gt;)
in the oceanic fixed-N budget. The size of the deficit
appears to conflict with apparent constraints of the atmospheric carbon
dioxide and sedimentary &amp;delta;&lt;sup&gt;15&lt;/sup&gt;N records that suggest homeostasis
during the Holocene. In addition, the oceanic nitrate/phosphate ratio tends
to be close to the canonical Redfield biological uptake ratio of 16 (by N
and P atoms) which can be interpreted to indicate the existence of a
powerful feed-back mechanism that forces the system towards a balance.
&lt;i&gt;The main point of this paper is that one cannot solve this conundrum
by reducing the oceanic sink term&lt;/i&gt;. To do so would violate an avalanche of
recent data on oceanic denitrification.

&lt;br&gt;&lt;br&gt;
A solution to this problem may be as simple as an upwards revision of the
oceanic nitrogen fixation rate, and it is noted that most direct estimates
for this term have concentrated on nitrogen fixation by autotrophs in the
photic zone, even though nitrogen fixing genes are widespread. Another
simple explanation may be that we are simply no longer in the Holocene and
one might expect to see temporary imbalances in the oceanic fixed-N budget
as we transition from the Holocene to the Anthropocene in line with an
apparent denitrification maximum during the Glacial-Holocene transition.
Other possible full or partial explanations involve plausible changes in the
oceanic nitrate/phosphate and N/C ratios, an oceanic phosphorus budget that
may also be in deficit, and oscillations in the source and sink terms that
are short enough to be averaged out in the atmospheric and geologic records,
but which could, perhaps, last long enough to have significant impacts.</p>
</abstract>
<counts><page-count count="21"/></counts>
</article-meta>
</front>
<body/>
<back>
<ref-list>
<title>References</title>
<ref id="ref1">
<label>1</label><mixed-citation publication-type="other" xlink:type="simple"> Altabet, M. A.: Constraints on oceanic N balance/imbalance from sedimentary $^15$N records, Biogeosciences Discuss., 3, 1121&amp;ndash;1155, 2006. </mixed-citation>
</ref>
<ref id="ref2">
<label>2</label><mixed-citation publication-type="other" xlink:type="simple"> Altabet, M. A., Higginson, M. J., and Murray, D. W.: The effect of millennial-scale changes in Arabian Sea denitrification on atmospheric CO&lt;sub&gt;2&lt;/sub&gt;, Nature, 415, 159&amp;ndash;162, 2002. </mixed-citation>
</ref>
<ref id="ref3">
<label>3</label><mixed-citation publication-type="other" xlink:type="simple"> Altabet, M. A., Pilskaln, C., Thunell, R., Pride, C., Sigman, D., Chavez, F., and Francois, R.: The nitrogen isotope biogeochemistry of sinking particles from the margin of the Eastern North Pacific, Deep-Sea Res. I, 46, 655&amp;ndash;679, 1999. </mixed-citation>
</ref>
<ref id="ref4">
<label>4</label><mixed-citation publication-type="other" xlink:type="simple"> Aluwihare, L. I., Repeta, D. J., Pantoja, S., and Johnson, C. G.: Two chemically distinct pools of organic nitrogen accumulated in the ocean, Science, 308, 1007&amp;ndash;1010, 2005. </mixed-citation>
</ref>
<ref id="ref5">
<label>5</label><mixed-citation publication-type="other" xlink:type="simple"> Arrigo, K. R.: Marine microorganisms and global nutrient cycles, Nature, 437, 349&amp;ndash;355, 2005. </mixed-citation>
</ref>
<ref id="ref6">
<label>6</label><mixed-citation publication-type="other" xlink:type="simple"> Arrigo, K. R., Robinson, D. H., Worthen, D. L., Dunbar, R. B., DiTullio, G. R., Van Woert, M., and Lizotte, M. P.: Phytoplankton community structure and the drawdown of nutrients and CO&lt;sub&gt;2&lt;/sub&gt; in the Southern Ocean, Science, 283, 365&amp;ndash;367, 1999. </mixed-citation>
</ref>
<ref id="ref7">
<label>7</label><mixed-citation publication-type="other" xlink:type="simple"> Babu, C. P. and Nath, B. N.: Processes controlling forms of phosphorus in surficial sediments from the eastern Arabian Sea impinged by varying bottom water oxygenation conditions, Deep-Sea Res. II, 52, 1965&amp;ndash;1980, 2005. </mixed-citation>
</ref>
<ref id="ref8">
<label>8</label><mixed-citation publication-type="other" xlink:type="simple"> Bange, H. W.: New directions: The importance of oceanic nitrous oxide emissions, Atmos. Environ., 40, 198&amp;ndash;199, 2006. </mixed-citation>
</ref>
<ref id="ref9">
<label>9</label><mixed-citation publication-type="other" xlink:type="simple"> Bange, H. W., Naqvi, S. W. A., and Codispoti, L. A.: The nitrogen cycle in the Arabian Sea, Progr. Oceanogr., 65, 145&amp;ndash;158, 2005. </mixed-citation>
</ref>
<ref id="ref10">
<label>10</label><mixed-citation publication-type="other" xlink:type="simple"> Brandes, J. A. and Devol, A. H.: A global marine-fixed nitrogen isotopic budget: Implications for Holocene nitrogen cycling, Global Biogeochem. Cycles, 16, 1120, https://doi.org/10.1029/2001GB001856, 2002. </mixed-citation>
</ref>
<ref id="ref11">
<label>11</label><mixed-citation publication-type="other" xlink:type="simple"> Brandes, J. A., Devol, A. H., Yoshinari, T., Jayakumar, A., and Naqvi, S. W. A.: Isotopic composition of nitrate in the central Arabian Sea and eastern tropical North Pacific: A tracer for mixing and nitrogen cycles, Limnol. Oceanogr., 43, 1680&amp;ndash;1689, 1998. </mixed-citation>
</ref>
<ref id="ref12">
<label>12</label><mixed-citation publication-type="other" xlink:type="simple"> Broecker, W. S. and Henderson, G. M.: The sequence of events surrounding Termination II and their implications for the cause of glacial-interglacial CO$_2 $ changes, Paleoceanogr., 13, 352&amp;ndash;364, 1998. </mixed-citation>
</ref>
<ref id="ref13">
<label>13</label><mixed-citation publication-type="other" xlink:type="simple"> Broecker, W. S. and Peng, T. H.: Tracers in the Sea, Eldigio, New York, 690~pp., 1982. </mixed-citation>
</ref>
<ref id="ref14">
<label>14</label><mixed-citation publication-type="other" xlink:type="simple"> Capone, D. G.: Marine nitrogen fixation: what&apos;s the fuss?, Curr. Opin. Microbiol., 4, 341&amp;ndash;348, 2001. </mixed-citation>
</ref>
<ref id="ref15">
<label>15</label><mixed-citation publication-type="other" xlink:type="simple"> Carpenter, E. J. and Culliney, J. L.: Nitrogen fixation in marine shipworms, Science, 187, 551&amp;ndash;552, 1975. </mixed-citation>
</ref>
<ref id="ref16">
<label>16</label><mixed-citation publication-type="other" xlink:type="simple"> Carpenter, E. J. and Romans, K.: Major role of the cyanobacterium \textitTrichodesmium in nutrient cycling in the North Atlantic, Science, 254, 1356&amp;ndash;1358, 1991. </mixed-citation>
</ref>
<ref id="ref17">
<label>17</label><mixed-citation publication-type="other" xlink:type="simple"> Carritt, D. E. and Carpenter, J. H.: Comparison and evaluation of currently employed modifications of the Winkler method for determining dissolved oxygen in seawater, a NASCO report, J. Mar. Res., 24, 286&amp;ndash;318, 1966. </mixed-citation>
</ref>
<ref id="ref18">
<label>18</label><mixed-citation publication-type="other" xlink:type="simple"> Chavez, F. P., Ryan, J., Lluch-Cota, S. E., and \~Niquen C. M.: From achovies to sardines and back: Multidecadal change in the Pacific Ocean, Science, 299, 217&amp;ndash;221, 2003. </mixed-citation>
</ref>
<ref id="ref19">
<label>19</label><mixed-citation publication-type="other" xlink:type="simple"> Christensen, J. P., Murray, J. W., Devol, A. H., and Codispoti, L. A.: Denitrification in continental shelf sediments has major impact on the oceanic nitrogen budget, Global Biogeochem. Cycles, 1, 97&amp;ndash;116, 1987. </mixed-citation>
</ref>
<ref id="ref20">
<label>20</label><mixed-citation publication-type="other" xlink:type="simple"> Chuck, A. L., Turner, S. M., and Liss, P. S.: Direct evidence for a marine source of C$_1$ and C&lt;sub&gt;2&lt;/sub&gt; alkyl nitrates, Science, 297, 1151&amp;ndash;1154, 2002. </mixed-citation>
</ref>
<ref id="ref21">
<label>21</label><mixed-citation publication-type="other" xlink:type="simple"> Coles, V. J. and R. R. Hood.: Modeling the Impact of Iron and Phosphorus Limitations on Nitrogen Fixation in~ the Atlantic Ocean, Biogeosciences Discuss., 3, 1391&amp;ndash;1451, 2006 </mixed-citation>
</ref>
<ref id="ref22">
<label>22</label><mixed-citation publication-type="other" xlink:type="simple"> Codispoti, L. A.: Denitrification in the eastern tropical North Pacific Ocean. Ph.D. thesis, University of Washington, Seattle, 118 pp., 1973a. </mixed-citation>
</ref>
<ref id="ref23">
<label>23</label><mixed-citation publication-type="other" xlink:type="simple"> Codispoti, L. A.: Some chemical and physical properties of the Eastern Tropical North Pacific with emphasis on the oxygen minimum layer, Univ. of Wash. Dept. Oceanography Technical Report 289, 40 pp., 1973b. </mixed-citation>
</ref>
<ref id="ref24">
<label>24</label><mixed-citation publication-type="other" xlink:type="simple"> Codispoti, L. A.: Phosphorus vs nitrogen limitation of new and export production. in: Productivity of the Ocean: Present and Past, edited by: Berger, W., Smetacek, V., and Wefer, G., John Wiley and Sons, Chichester, 377&amp;ndash;394, 1989. </mixed-citation>
</ref>
<ref id="ref25">
<label>25</label><mixed-citation publication-type="other" xlink:type="simple"> Codispoti, L. A. and Christensen, J. P.: Nitrification, denitrification and nitrous oxide cycling in the eastern tropical South Pacific Ocean, Mar. Chem., 16, 277&amp;ndash;300, 1985. </mixed-citation>
</ref>
<ref id="ref26">
<label>26</label><mixed-citation publication-type="other" xlink:type="simple"> Codispoti, L. A. and Packard, T. T.: Denitrification rates in the eastern tropical South Pacific, J. Mar. Res., 38, 453&amp;ndash;477, 1980. </mixed-citation>
</ref>
<ref id="ref27">
<label>27</label><mixed-citation publication-type="other" xlink:type="simple"> Codispoti, L. A. and Richards, F. A.: An analysis of the horizontal regime of denitrification in the eastern tropical North Pacific, Limnol. Oceanogr., 21, 379&amp;ndash;388, 1976. </mixed-citation>
</ref>
<ref id="ref28">
<label>28</label><mixed-citation publication-type="other" xlink:type="simple"> Codispoti, L. A., Friederich, G. E., Sakamoto, C. M., and Gordon, L. I.: Nutrient cycling and primary production in the marine systems of the Arctic and Antarctic, J. Mar. Sys., 2, 359&amp;ndash;384, 1991. </mixed-citation>
</ref>
<ref id="ref29">
<label>29</label><mixed-citation publication-type="other" xlink:type="simple"> Codispoti, L. A. Friederich, G. E., Packard, T. T., Glover, H. T., Kelly, P. J., Spinrad, R. W., Barber, R. T., Elkins, J. W., Ward, B. B., Lipschultz, F., and Lostanau, N.: High nitrite levels off the coast of Peru: A signal of instability in the marine denitrification rate, Science, 233, 1200&amp;ndash;1202, 1986. </mixed-citation>
</ref>
<ref id="ref30">
<label>30</label><mixed-citation publication-type="other" xlink:type="simple"> Codispoti, L. A., Brandes, J. A., Christensen, J. P., Devol, A. H., Naqvi, S. W. A., Paerl, H. W., and Yoshinari, T.: The oceanic fixed nitrogen and nitrous oxide budgets: Moving targets as we enter the Anthropocene?, Sci. Mar., 65, 85&amp;ndash;105, 2001. </mixed-citation>
</ref>
<ref id="ref31">
<label>31</label><mixed-citation publication-type="other" xlink:type="simple"> Codispoti, L. A., Yoshinari, T., and Devol, A. H.: Suboxic respiration in the oceanic water column, in: Respiration in Aquatic Ecosystems, edited by: del Giorgio, P. A. and Williams, P. J. Le B., Oxford University Press, 225&amp;ndash;247, 2005. </mixed-citation>
</ref>
<ref id="ref32">
<label>32</label><mixed-citation publication-type="other" xlink:type="simple"> Codispoti, L. A., Flagg, C., Kelly, V., and Swift, J. H.: Hydrographic conditions during the 2002 SBI process experiments, Deep-Sea Res. II, 52, 3199&amp;ndash;3226, 2005. </mixed-citation>
</ref>
<ref id="ref33">
<label>33</label><mixed-citation publication-type="other" xlink:type="simple"> Compton, J., Mallinson, D., Glenn, C. R., Filippelli, G., Föllmi, K., Shields, G., and Zanin, Y.: Variations in the global phosphorus cycle, SEPM Special Publication No 66., 2000. </mixed-citation>
</ref>
<ref id="ref34">
<label>34</label><mixed-citation publication-type="other" xlink:type="simple"> Crutzen, P. J.: Geology of mankind, Nature, 415, 23, 2002. </mixed-citation>
</ref>
<ref id="ref35">
<label>35</label><mixed-citation publication-type="other" xlink:type="simple"> Crutzen, P. J. and Ramanathan, V: The ascent of atmospheric sciences, Science, 290, 299&amp;ndash;304, 2000. </mixed-citation>
</ref>
<ref id="ref36">
<label>36</label><mixed-citation publication-type="other" xlink:type="simple"> Daffonchio, D., Borin, S., Brusa, T., Brusetti, L., van der Wiedjen, P. W. J. J., Bolhuis, H., Yakimov, M. M., D&apos;Auria, G., Giuliano, L., Marty, D., Tamburini, C., McGenity, T. J., Hallsworth, J. E., Sass, A. M., Timmis, K. N., Tselepides, A., de Langre, G. J., Hübner, A., Thomson, J., Varnavas, S. P., Gasparoni, F., Gerber, H. W., Malinverno, E., Corselli, C., and Biodeep Scientific Party: Stratified prokaryote network in the oxic-anoxic transition of a deep-sea halocline, Nature, 440, 203&amp;ndash;207, 2006. </mixed-citation>
</ref>
<ref id="ref37">
<label>37</label><mixed-citation publication-type="other" xlink:type="simple"> Dalsgaard, T. and Thamdrup, B.: Factors controlling anaerobic ammonium oxidation with nitrite in marine sediments, Appl. Envrion. Microbiol., 68, 3802&amp;ndash;3808, 2002. </mixed-citation>
</ref>
<ref id="ref38">
<label>38</label><mixed-citation publication-type="other" xlink:type="simple"> Dalsgaard, T., Canfield, D. E., Petersen, J., Thamdrup, B., and Acu&amp;ntilde;a-Gonzalez, J.: N$_2 $ production by the anammox reaction in the anoxic water of Golfo Dulce, Costa Rica, Nature, 422, 606&amp;ndash;608, 2003. </mixed-citation>
</ref>
<ref id="ref39">
<label>39</label><mixed-citation publication-type="other" xlink:type="simple"> Davis, C. S. and McGillicuddy, D. J.: Transatlantic abundance of the N&lt;sub&gt;2&lt;/sub&gt;-fixing colonial cyanobacterium \textitTrichodesmium, Science, 312, 1517&amp;ndash;1520, 2006. </mixed-citation>
</ref>
<ref id="ref40">
<label>40</label><mixed-citation publication-type="other" xlink:type="simple"> Deutsch, C. N., Gruber, R., Key, M., Sarmiento, J. L., and Ganachaud, A.: Denitrification and N&lt;sub&gt;2&lt;/sub&gt; fixation in the Pacific Ocean, Global Biogeochem. Cycles, 15, 483&amp;ndash;506, 2001. </mixed-citation>
</ref>
<ref id="ref41">
<label>41</label><mixed-citation publication-type="other" xlink:type="simple"> Deutsch, C., Sigman, D. M., Thunell, R. C., Meckler, A. N., and Haug, G. H.: Isotopic constraints on glacial/interglacial changes in the oceanic nitrogen budget, Global Biogeoch. Cycles, 18, 4013, https://doi.org/10.1029/2003GB002189, 2004. </mixed-citation>
</ref>
<ref id="ref42">
<label>42</label><mixed-citation publication-type="other" xlink:type="simple"> Deutsch, C., Sarmiento, J., Gruber, N., and Dunne, J.: Diagnosing global oceanic N&lt;sub&gt;2&lt;/sub&gt;-fixation in a General Circulation Model, Abstract Proceedings of the Conference &quot;Significant Processes, Observations, and Transformations in Oceanic Nitrogen&quot;, Institut für Ostseeforschung, Warnemünde, Germany, 2005. </mixed-citation>
</ref>
<ref id="ref43">
<label>43</label><mixed-citation publication-type="other" xlink:type="simple"> Deutsch, C., Sarmiento, J. L., Sigman, D. M., Gruber, N., and Dunne, J. P.: Spatial coupling of nitrogen inputs and losses in the ocean, Nature, 445, 163&amp;ndash;167, 2007. </mixed-citation>
</ref>
<ref id="ref44">
<label>44</label><mixed-citation publication-type="other" xlink:type="simple"> Devol, A .H. : Direct measurement of nitrogen gas fluxes from continental shelf sediments, Nature, 349, 319&amp;ndash;321, 1991. </mixed-citation>
</ref>
<ref id="ref45">
<label>45</label><mixed-citation publication-type="other" xlink:type="simple"> Devol, A. H. and Christensen, J. P.: Benthic fluxes and nitrogen cycling in sediments of the continental margin of the eastern North Pacific, J. Mar. Res., 51, 345&amp;ndash;372, 1993. </mixed-citation>
</ref>
<ref id="ref46">
<label>46</label><mixed-citation publication-type="other" xlink:type="simple"> Devol, A. H., Codispoti, L. A., and Christensen, J. P.: Summer and winter denitrification rates in western arctic shelf sediments, Cont. Shelf Res., 17, 1029&amp;ndash;1050, 1997. </mixed-citation>
</ref>
<ref id="ref47">
<label>47</label><mixed-citation publication-type="other" xlink:type="simple"> Devol, A. H., Naqvi, S. W. A., and Codispoti, L. A.: Nitrogen cycling in the suboxic waters of the Arabian Sea, in: Past and Present Water Column Anoxia. NATO Science Series, IV. Earth and Environmental Sciences &amp;ndash; Vol 64, edited by: Neretin, L., Springer, Dordrecht, 283&amp;ndash;310, 2006a. </mixed-citation>
</ref>
<ref id="ref48">
<label>48</label><mixed-citation publication-type="other" xlink:type="simple"> Devol, A. H., Uhlenhopp, A. G., Naqvi, S. W. A., Brandes, J. A., Jayakumar, A., Codispoti, L. A., Yoshinari, T.: Denitrification rates and excess nitrogen gas concentrations in the Arabian Sea oxygen deficient zone, Deep-Sea Res. I, 53, 1533&amp;ndash;1547, 2006b. </mixed-citation>
</ref>
<ref id="ref49">
<label>49</label><mixed-citation publication-type="other" xlink:type="simple"> Helly, J. J. and Levin, L. A.: Global distribution of naturally occurring marine hypoxia on continental margins, Deep-Sea Res. I, 51, 1159&amp;ndash;1168, 2004. </mixed-citation>
</ref>
<ref id="ref50">
<label>50</label><mixed-citation publication-type="other" xlink:type="simple"> D&apos;Hondt, S., Jørgensen, B. B., Miller, D. J., Batzke, A., Blake, R., Cragg, B. A., Cypionka, H., Dickens, G. R., Ferdelman, T., Hinreichs, K.-U., Holm, N. G., Mitterer, R., Spivack, A., Wang, G., Bekins, B., Engelen, B., Ford, K., Gettemy, G., Rutherford, S. D., Sass, H., Skilbeck, C. G., Aiello, I. W., Guèrin, G., House, C. H., Inagaki, F., Meister, P., Naehr, T., Niitsuma, S., Parkes, R. J., Schippers, A., Smith, D. C., Teske, A., Wiegel, J., Padilla, C. N., and Acosta, J. L. S.: Distributions of microbial activities in deep subseafloor sediments, Science, 306, 2216&amp;ndash;2221, 2004. </mixed-citation>
</ref>
<ref id="ref51">
<label>51</label><mixed-citation publication-type="other" xlink:type="simple"> Falkowski, P. G.: Rationalizing elemental ratios in unicellular algae, J. Phycol., 36, 3&amp;ndash;6, 2000. </mixed-citation>
</ref>
<ref id="ref52">
<label>52</label><mixed-citation publication-type="other" xlink:type="simple"> Farias, L., Graco, M., and Ulloa, O.: Temporal variability of nitrogen cycling in continental-shelf sediments of the upwelling ecosystem off central Chile, Deep-Sea Res. II, 51, 2491&amp;ndash;2505, 2004. </mixed-citation>
</ref>
<ref id="ref53">
<label>53</label><mixed-citation publication-type="other" xlink:type="simple"> Farrenkopf, A. M. and Luther, G. W.: Iodine chemistry reflects productivity and denitrification in the Arabian Sea: evidence for flux of dissolved species from sediments of western India into the OMZ, Deep-Sea Res. II, 49, 2303&amp;ndash;2318, 2002. </mixed-citation>
</ref>
<ref id="ref54">
<label>54</label><mixed-citation publication-type="other" xlink:type="simple"> Fossing, H., Gallardo, V. A., Jorgensen, B. B., Huttel, M., Nielsen, L. P., Schulz, H., Canfield, D. E., Forster, S., Glud, R. N., Gundersen, J. K., Kuver, J., Ramsing, N. B., Teske, A., Thamdrup, B., and Ulloa, O.: Concentrations and transport of nitrate by the mat-forming sulfur bacterium \textitThioploca, Nature, 43, 4043&amp;ndash;4052, 1995. </mixed-citation>
</ref>
<ref id="ref55">
<label>55</label><mixed-citation publication-type="other" xlink:type="simple"> Galbraith, E.: Interactions between climate and the marine nitrogen cycle on glacial-interglacial time scales, Ph.D. Thesis, University of British Columbia, 2006. </mixed-citation>
</ref>
<ref id="ref56">
<label>56</label><mixed-citation publication-type="other" xlink:type="simple"> Ganeshram, R. S., Pedersen, T. F., Calvert, S. E., and Francois, R.: Reduced nitrogen fixation in the glacial ocean inferred from changes in marine nitrogen and phosphorus inventories, Nature, 415, 156&amp;ndash;158, 2002. </mixed-citation>
</ref>
<ref id="ref57">
<label>57</label><mixed-citation publication-type="other" xlink:type="simple"> Gloersen, P., Cambell, W. J., Cavalieri, D. J., Comiso, J. C., Parkinson, C. L., and Zwally, H. J.: Arctic and Antarctic sea ice, 1978&amp;ndash;1987: Satellite passive-microwave observations and analysis, NASA SP-511, National Aeronautics and Space Administration, 1992. </mixed-citation>
</ref>
<ref id="ref58">
<label>58</label><mixed-citation publication-type="other" xlink:type="simple"> Graco, M. I., Farías, L., Molina, V., and Ruiz-Pino, D.: Benthic nitrogen transformations under minimum oxygen conditions in the coastal upwelling system of central Chile, Abstract. Proceedings of the Conference &quot;Significant Processes, Observations, and Transformations in Oceanic Nitrogen&quot;, Institut für Ostseeforschung, Warnemünde, Germany, 2005. </mixed-citation>
</ref>
<ref id="ref59">
<label>59</label><mixed-citation publication-type="other" xlink:type="simple"> Gruber, N.: The dynamics of the marine nitrogen cycle and its influence on atmospheric CO&lt;sub&gt;2&lt;/sub&gt;, in: The Ocean Carbon Cycle and Climate, edited by: Follows, M., and Oguz, T., Kluwer Academic, Dordrecht, 97&amp;ndash;148, 2004. </mixed-citation>
</ref>
<ref id="ref60">
<label>60</label><mixed-citation publication-type="other" xlink:type="simple"> Gruber, N. and Sarmiento, J. L.: Global patterns of marine nitrogen fixation and denitrification, Global Biogeochem. Cycles, 11, 235&amp;ndash;266, 1997. </mixed-citation>
</ref>
<ref id="ref61">
<label>61</label><mixed-citation publication-type="other" xlink:type="simple"> Gruber, N. and Sarmiento, J. L.: Biogeochemical/physical interactions in elemental cycles, in: The Sea: Biological-Physical Interactions in the Oceans, Vol. 12, edited by: Robinson, A. R., McCarthy, J. J., and Rothschild, B. J., John Wiley and Sons, New York, 337&amp;ndash;399, 2002. </mixed-citation>
</ref>
<ref id="ref62">
<label>62</label><mixed-citation publication-type="other" xlink:type="simple"> Grundmanis, V. and Murray, J.W.: Nitrification and denitrification in marine sediments from Puget Sound, Limnol. Oceanogr., 22, 804&amp;ndash;813, 1977. </mixed-citation>
</ref>
<ref id="ref63">
<label>63</label><mixed-citation publication-type="other" xlink:type="simple"> Hedges, J. I., Baldock, J. A., Gélinas, Y., Lee, C., Peterson, M. L., and Wakeham, S. G.: The biochemical and elemental compositions of marine plankton: A NMR perspective, Mar. Chem., 78, 47&amp;ndash;63, 2002. </mixed-citation>
</ref>
<ref id="ref64">
<label>64</label><mixed-citation publication-type="other" xlink:type="simple"> Howarth, R. W.: Nutrient limitation of net primary production in marine ecosystems, Ann. Rev. Ecol. Syst., 19, 89&amp;ndash;110, 1988. </mixed-citation>
</ref>
<ref id="ref65">
<label>65</label><mixed-citation publication-type="other" xlink:type="simple"> Howarth, R. W. and Marino, R.: Nitrogen as the limiting nutrient for eutrophication in coastal marine ecosystems, Limnol. Oceanogr., 51, 364&amp;ndash;376, 2006. </mixed-citation>
</ref>
<ref id="ref66">
<label>66</label><mixed-citation publication-type="other" xlink:type="simple"> Howell, E. A., Doney, S. C., Fine, R. A., and Olson, D. B.: Geochemical estimates of denitrification in the Arabian Sea and the Bay of Bengal during WOCE, Geophys. Res. Lett., 24, 2549&amp;ndash;2552, 1997. </mixed-citation>
</ref>
<ref id="ref67">
<label>67</label><mixed-citation publication-type="other" xlink:type="simple"> Ingall, E. and Jahnke, R.: Evidence for enhanced phosphorus regeneration from marine sediments overlain by oxygen depleted waters, Geochim. Cosmochim. Acta, 58, 2571&amp;ndash;2575, 1994. </mixed-citation>
</ref>
<ref id="ref68">
<label>68</label><mixed-citation publication-type="other" xlink:type="simple"> Jahnke, R. A.: The global ocean flux of particulate organic carbon: areal distribution and magnitude, Global Biogeochem. Cycles, 10, 71&amp;ndash;88, 1996. </mixed-citation>
</ref>
<ref id="ref69">
<label>69</label><mixed-citation publication-type="other" xlink:type="simple"> Jahnke, R. A.: Dynamics of coastal biogeochemical processes: Marching to a different drummer, Eos. Trans. AGU 87(36), Ocean Sci. Meet. Suppl., Abstract OS31A-02, 2006. </mixed-citation>
</ref>
<ref id="ref70">
<label>70</label><mixed-citation publication-type="other" xlink:type="simple"> Jahnke, R. A. and Jahnke, D. B.: Rates of C, N, P and Si recycling and denitrification at the US Mid-Atlantic continental slope depocenter, Deep-Sea Res. I, 47, 1405&amp;ndash;1428, 2000. </mixed-citation>
</ref>
<ref id="ref71">
<label>71</label><mixed-citation publication-type="other" xlink:type="simple"> Jickells, T.: The role of air-sea exchange in the marine nitrogen cycle, Biogeosciences Discuss., 3, 183&amp;ndash;210, 2006. </mixed-citation>
</ref>
<ref id="ref72">
<label>72</label><mixed-citation publication-type="other" xlink:type="simple"> Jørgensen, B. B. and Gallardo, V. A.: \textitThioploca spp: filamentous sulfur bacteria with nitrate vacuoles, FEMS Microbiol. Ecol., 28, 301&amp;ndash;313, 1999. </mixed-citation>
</ref>
<ref id="ref73">
<label>73</label><mixed-citation publication-type="other" xlink:type="simple"> Kaartokallio, H.: Evidence for active microbial nitrogen transformations in sea ice (Gulf of Bothnia, Baltic Sea) in midwinter, Polar Biol., 24, 21&amp;ndash;28, 2001. </mixed-citation>
</ref>
<ref id="ref74">
<label>74</label><mixed-citation publication-type="other" xlink:type="simple"> Kaartokallio, H.: Sea-ice ecology in the Baltic Sea with special emphasis on bacteria, Academic Dissertation in Hydrobiology, University of Helsinki, 2005. </mixed-citation>
</ref>
<ref id="ref75">
<label>75</label><mixed-citation publication-type="other" xlink:type="simple"> Karl, D. M., Björkman, K. M., Dore, J. E., Fujieki, L., Hebel, D. V., Houlihan, T., Letelier, R. M., and Tupas, L. M.: Ecological nitrogen-to-phosphorus stoichiometry at station ALOHA, Deep-Sea Res. II, 48, 1529&amp;ndash;1566, 2001. </mixed-citation>
</ref>
<ref id="ref76">
<label>76</label><mixed-citation publication-type="other" xlink:type="simple"> Karl, D., Letellier, R., Tupas, L., Dore, J., Christian, J., and Hebel, D.: The role of nitrogen fixation in biogeochemical cycling in the subtropical North Pacific Ocean, Nature, 388, 533&amp;ndash;538, 1997. </mixed-citation>
</ref>
<ref id="ref77">
<label>77</label><mixed-citation publication-type="other" xlink:type="simple"> Klausmeier, C. A. and Litchamn, E.: Phytoplankton growth and stoichiometry under multiple nutrient limitation, Limnol. Oceanogr., 49, 1463&amp;ndash;1470, 2004. </mixed-citation>
</ref>
<ref id="ref78">
<label>78</label><mixed-citation publication-type="other" xlink:type="simple"> Klausmeier, C. A., Litchman, E., Daufresne, T., and Levin, S. A.: Optimal nitrogen-to-phosphorus stoichiometry of phytoplankton, Nature, 429, 171&amp;ndash;174, 2004. </mixed-citation>
</ref>
<ref id="ref79">
<label>79</label><mixed-citation publication-type="other" xlink:type="simple"> Krom, M. D., Kress, N., and Brenner, S.: Phosphorus limitation of primary productivity in the eastern Mediterranean Sea, Limnol. Oceanogr., 36, 424&amp;ndash;432, 1991. </mixed-citation>
</ref>
<ref id="ref80">
<label>80</label><mixed-citation publication-type="other" xlink:type="simple"> Krom, M. D., Mantoura, R. F. C., and Herut, B.: Why is the eastern Mediterranean P Limited?, Geophys. Res. Abstr., 6, 00302, 2004. </mixed-citation>
</ref>
<ref id="ref81">
<label>81</label><mixed-citation publication-type="other" xlink:type="simple"> Krom, M. D., Thingstad, T. F., Brenner, S., Carbo, P., Drakopoulos, P., Fileman, T. W., Flaten, G. A. F., Groom, S., Herut, B., Kitidis, V., Kress, N., Law, C. S., Liddicoat, M. I., Mantoura, R. F. C., Pasternak, A., Pitta, P., Polychronaki, T., Psarra, S., Rassoulzadegan, F., Skoldal, E. F., Spyres, G., Tanaka, T., Tselepides, A., Wassmann, P., Wexels Riser, C., Woodward, E. M. S., Zodiatis, G., and Zohary, T.: Summary and overview of the CYCLOPS P addition Lagrangian experiment in the Eastern Mediterranean, Deep-Sea Res. II, 52, 3090&amp;ndash;3108, 2005. </mixed-citation>
</ref>
<ref id="ref82">
<label>82</label><mixed-citation publication-type="other" xlink:type="simple"> Kuypers, M. M. M., Lavik, G., and Thamdrup, B.: Anaerobic ammonium oxidation in the marine envrionment, in: Past and Present Water Column Anoxia. NATO Science Series, IV. Earth and Environmental Sciences &amp;ndash; Vol 64, edited by: Neretin, L., Springer, Dordrecht, 311&amp;ndash;335, 2006. </mixed-citation>
</ref>
<ref id="ref83">
<label>83</label><mixed-citation publication-type="other" xlink:type="simple"> Kuypers, M. M. M., Lavik, G., Woebken, D., Schmid, M., Fuchs, B. M., Amann, R., Jørgensen, B. B., and Jetten, M. S. M.: Massive nitrogen loss from the Benguela upwelling system through anaerobic ammonium oxidation, Proc. Nat. Acad. Sci., 102, 6478&amp;ndash;6483, 2005. </mixed-citation>
</ref>
<ref id="ref84">
<label>84</label><mixed-citation publication-type="other" xlink:type="simple"> Laursen, A. E. and Seitzinger, S. P.: The role of denitrification in nitrogen removal and carbon mineralization in Mid-Atlantic Bight sediments, Cont. Shelf Res., 22, 1397&amp;ndash;1416, 2002. </mixed-citation>
</ref>
<ref id="ref85">
<label>85</label><mixed-citation publication-type="other" xlink:type="simple"> Lehmann, M. F., Sigman, D. M., and Berelson, W. M.: Coupling the $^15$N/$^14$N and $^18$O/$^16$O of nitrate as a constraint on benthic nitrogen cycling, Mar. Chem., 88, 1&amp;ndash;20, 2004. </mixed-citation>
</ref>
<ref id="ref86">
<label>86</label><mixed-citation publication-type="other" xlink:type="simple"> Lehmann, M. F., Sigman, D. M., McCorkle, D. C., Brunelle, B. G., Hoffmann, S., Kienast, M., Cane, G., and Clement, J.: Origin of the deep Bering Sea nitrate deficit: Constraints from the nitrogen and oxygen isotopic composition of water column nitrate and benthic nitrate fluxes, Global Biogeochem. Cycles, 19, 4005, https://doi.org/10.1029/2005GB002508, 2005. </mixed-citation>
</ref>
<ref id="ref87">
<label>87</label><mixed-citation publication-type="other" xlink:type="simple"> Li, Y-H., Menviel, L., and Peng, T.-H.: Nitrate deficits by nitrification and denitrification processes in the Indian Ocean, Deep-Sea Res. I, 53, 94&amp;ndash;110, 2006. </mixed-citation>
</ref>
<ref id="ref88">
<label>88</label><mixed-citation publication-type="other" xlink:type="simple"> Liu, K.-K. and I.R. Kaplan: The eastern tropical Pacific as a source of $^15$N-enriched nitrate in seawater off southern California, Limnol. Oceanogr., 34, 820&amp;ndash;830, 1989. </mixed-citation>
</ref>
<ref id="ref89">
<label>89</label><mixed-citation publication-type="other" xlink:type="simple"> Luther, G. W., Sundby, B., Lewis, B. L., Brendel, P. J., and Silverberg, N.: Interactions of manganese with the nitrogen cycle: Alternative pathways to dinitrogen, Geochim. Cosmochim Acta, 61, 4043&amp;ndash;4052, 1997. </mixed-citation>
</ref>
<ref id="ref90">
<label>90</label><mixed-citation publication-type="other" xlink:type="simple"> Mantoura, R. F. C., Law, C. S., Owens, N. J. P., Burkill, P. H., Woodward, E. M. S., Howland, R. J. M., and Llewellyn, C. N.: Nitrogen biogeochemical cycling in the northwestern Indian Ocean, Deep-Sea Res., 40, 651&amp;ndash;671, 1993. </mixed-citation>
</ref>
<ref id="ref91">
<label>91</label><mixed-citation publication-type="other" xlink:type="simple"> Mehta, M. P. and Baross, J. A.: Nitrogen fixation at 92&amp;deg;C by a hydrothermal vent archaeon, Science, 314, 1783&amp;ndash;1786, 2006. </mixed-citation>
</ref>
<ref id="ref92">
<label>92</label><mixed-citation publication-type="other" xlink:type="simple"> Mehta, M. P., Butterfield, D. A., and Baross, J. A.: Phylogenetic diversity of nitrogenase (\textitnifH) genes in deep-sea and hydrothermal vent environments of the Juan de Fuca Ridge, Appl. Environ. Microbiol., 69, 960&amp;ndash;970, 2003. </mixed-citation>
</ref>
<ref id="ref93">
<label>93</label><mixed-citation publication-type="other" xlink:type="simple"> Menard, H. W. and Smith, S. M.: Hypsometry of Ocean Basin Provinces, J. Geophys. Res., 71, 4305&amp;ndash;4325, 1966. </mixed-citation>
</ref>
<ref id="ref94">
<label>94</label><mixed-citation publication-type="other" xlink:type="simple"> Michael, H. A., Mulligan, A. E., and Harvey, C. F.: Seasonal oscillations in water exchange between aquifers and the coastal ocean, Nature, 436, 1145&amp;ndash;1148, 2005. </mixed-citation>
</ref>
<ref id="ref95">
<label>95</label><mixed-citation publication-type="other" xlink:type="simple"> Michotey, V. and Bonin, P.: Evidence for anaerobic bacterial processes in the water column: denitrification and dissimilatory nitrate ammonification in the northwestern Mediterranean Sea, Mar. Ecol. Prog. Ser., 160, 47&amp;ndash;56, 1997. </mixed-citation>
</ref>
<ref id="ref96">
<label>96</label><mixed-citation publication-type="other" xlink:type="simple"> Middelburg, J. J., Duarte, C. M., and Gattuso, J.-P.: Respiration in coastal benthic communities, in: Respiration in Aquatic Ecosystems, edited by: del Giorgio, P. A. and Williams, P. J. leB., Oxford University Press, 206&amp;ndash;224, 2005. </mixed-citation>
</ref>
<ref id="ref97">
<label>97</label><mixed-citation publication-type="other" xlink:type="simple"> Middelburg, J. J., Soetaert, K., Herman, P. M. J., and Heip, C. H. R.: Denitrification in marine sediments: A model study, Global Biogeochem. Cycles, 10, 661&amp;ndash;673, 1996. </mixed-citation>
</ref>
<ref id="ref98">
<label>98</label><mixed-citation publication-type="other" xlink:type="simple"> Mills, M. M., Ridame, C., Davey, M., La Roche, J., and Gelder, R. J.: Iron and phosphorus co-limit nitrogen fixation in the eastern tropical North Atlantic, Nature, 429, 292&amp;ndash;294, 2004. </mixed-citation>
</ref>
<ref id="ref99">
<label>99</label><mixed-citation publication-type="other" xlink:type="simple"> Montoya, J. P., Holl, C. M., Zehr, J. P., Hansen, A., Villareal, T. A., and Capone, D. G.: High rates of N&lt;sub&gt;2&lt;/sub&gt; fixation by unicellular diazotrophs in the oligotrophic Pacific Ocean, Nature, 430, 1027&amp;ndash;1031, 2004. </mixed-citation>
</ref>
<ref id="ref100">
<label>100</label><mixed-citation publication-type="other" xlink:type="simple"> Morrison, J. M., Codispoti, L. A., Gaurin, S., Jones, B., Manghnani, V., and Zheng, Z.: Seasonal variation of hydrographic and nutrient fields during the US JGOFS Arabian Sea process study, Deep-Sea Res. II, 45, 2053&amp;ndash;2101, 1998. </mixed-citation>
</ref>
<ref id="ref101">
<label>101</label><mixed-citation publication-type="other" xlink:type="simple"> Nakagawa, S., Takai, K., Horikoshi, K., and Sako, Y.: \textitPersephonella hydrogeniphila sp. nov., a novel thermophilic, hydrogen-oxidizing bacterium from a deep-sea hydrothermal vent chimney, Int. J. Syst. Evol. Microbiol., 53, 863&amp;ndash;869, 2003. </mixed-citation>
</ref>
<ref id="ref102">
<label>102</label><mixed-citation publication-type="other" xlink:type="simple"> Naqvi, S. W. A.: Denitrification processes in the Arabian Sea, Proc. Indian Acad. Sci. (Earth Planet. Sci.), 103, 279&amp;ndash;300, 1994. </mixed-citation>
</ref>
<ref id="ref103">
<label>103</label><mixed-citation publication-type="other" xlink:type="simple"> Naqvi, S. W. A.: The Indian Ocean, in: Nitrogen in the Marine Environment, edited by: Capone, D. G., Bronk, D. A., Mulholland, M. R., and Carpenter, E. J., Academic Press, in press, 2007. </mixed-citation>
</ref>
<ref id="ref104">
<label>104</label><mixed-citation publication-type="other" xlink:type="simple"> Naqvi, S. W. A. and Sen Gupta, R.: &quot;NO&quot;, a useful tool for the estimation of nitrate deficits in the Arabian Sea, Deep-Sea Res., 32, 665&amp;ndash;674, 1990. </mixed-citation>
</ref>
<ref id="ref105">
<label>105</label><mixed-citation publication-type="other" xlink:type="simple"> Naqvi, S. W. A. and Shailaja, M. S.: Activity of the respiratory electron transport system and respiration rates within the oxygen minimum layer of the Arabian Sea, Deep Sea Res. II, 40, 687&amp;ndash;695, 1993. </mixed-citation>
</ref>
<ref id="ref106">
<label>106</label><mixed-citation publication-type="other" xlink:type="simple"> Naqvi, S. W. A., Hansen, H. P., and Kureishy, T. W.: Nutrient uptake and regeneration ratios in the Red Sea with reference to the nutrient budgets, Oceanolog. Acta, 9, 271&amp;ndash;275, 1986. </mixed-citation>
</ref>
<ref id="ref107">
<label>107</label><mixed-citation publication-type="other" xlink:type="simple"> Naqvi, S. W. A., Jayakumar, D. A., Narvekar, P. V., Naik, H., Sarma, V. V. S. S., D&apos;Souza, W., Joseph, S., and George, M. D.: Increased marine production of N&lt;sub&gt;2&lt;/sub&gt;O due to intensifying anoxia on the Indian continental shelf, Nature, 408, 346&amp;ndash;349, 2000. </mixed-citation>
</ref>
<ref id="ref108">
<label>108</label><mixed-citation publication-type="other" xlink:type="simple"> Naqvi, S.W.A., Naik, H., Jayakumar, D.A., Shailaja, M.S., and Narvekar, P.V.: Seasonal oxygen deficiency over the western continental shelf of India. in: Past and Present Water Column Anoxia. NATO Science Series, IV. Earth and Environmental Sciences &amp;ndash; Vol. 64, edited by: Neretin, L., Springer, Dordrecht, 195&amp;ndash;224, 2006a. </mixed-citation>
</ref>
<ref id="ref109">
<label>109</label><mixed-citation publication-type="other" xlink:type="simple"> Naqvi, S. W. A., Naik, H., Pratihary, A., D&apos; Souza, W., Narvekar, P. V., Jayakumar, D. A., Devol, A. H., Yoshinari, T., and Saino, T.: Coastal versus open-ocean denitrification in the Arabian Sea, Biogeosciences Discuss., 3, 665&amp;ndash;695, 2006b. </mixed-citation>
</ref>
<ref id="ref110">
<label>110</label><mixed-citation publication-type="other" xlink:type="simple"> Paerl, H. W. and Priscu, J. C.: Microbial phototrophic, heterotrophic, and diazotrophic activities associated with aggegates in the permanent ice cover of Lake Bonney, Antarctica, Microb. Ecol., 36, 221&amp;ndash;230, 1998. </mixed-citation>
</ref>
<ref id="ref111">
<label>111</label><mixed-citation publication-type="other" xlink:type="simple"> Peinert, R., von Bodungen, B., and Smetacek, V. S.: Food web structure and loss rate, in: Productivity of the Ocean: Present and Past, edited by: Berger, W. H., Smetacek, V. S., and Wefer, G., John Wiley and Sons, Chichester, 35&amp;ndash;48, 1989 </mixed-citation>
</ref>
<ref id="ref112">
<label>112</label><mixed-citation publication-type="other" xlink:type="simple"> Piper, D. Z. and Codispoti, L. A.: Marine phosphorite deposits and the nitrogen cycle, Science, 188, 15&amp;ndash;18, 1975. </mixed-citation>
</ref>
<ref id="ref113">
<label>113</label><mixed-citation publication-type="other" xlink:type="simple"> Quigg, A., Finkel, Z. V., Irwin, A. J., Rosenthal, Y., Ho, T-Y., Reinfelder, J. R., Schofield, O., Morel, F. M. M., and Falkowski, P. G.: The evolutionary inheritance of elemental stoichiometry in marine phytoplankton, Nature, 425, 291&amp;ndash;294, 2003. </mixed-citation>
</ref>
<ref id="ref114">
<label>114</label><mixed-citation publication-type="other" xlink:type="simple"> Rabalis, N. N. and Turner, R. E.: Oxygen depletion in the Gulf of Mexico adjacent to the Mississippi River, in: Past and Present Water Column Anoxia. NATO Science Series, IV. Earth and Environmental Sciences &amp;ndash; Vol. 64, edited by: Neretin, L., Springer, Dordrecht, 225&amp;ndash;245, 2006 </mixed-citation>
</ref>
<ref id="ref115">
<label>115</label><mixed-citation publication-type="other" xlink:type="simple"> Rabalais, N. N., Turner, R. E., Justic, D., Dortch, Q., Wiseman, W. J., and Sen Gupta, B. K.: Gulf of Mexico biological system responses to nutrient changes in the Mississippi River, in: Estuarine Science: A Synthesis Approach to Research and Practice, edited by: Hobbie, J. W., Island Press, Washington, D.C., 241&amp;ndash;268, 2000. </mixed-citation>
</ref>
<ref id="ref116">
<label>116</label><mixed-citation publication-type="other" xlink:type="simple"> Rao, A. F. and Jahnke, R. A.: Nitrogen cycling in permeable continental shelf sediments of the South Atlantic Bight, Eos. Trans. AGU 87(36), Ocean Sci. Meet. Suppl., Abstract OS25G-13, 2006. </mixed-citation>
</ref>
<ref id="ref117">
<label>117</label><mixed-citation publication-type="other" xlink:type="simple"> Redfield, A. C.: The biological control of chemical factors in the environment, Amer. Scient., 46, 205&amp;ndash;221, 1958. </mixed-citation>
</ref>
<ref id="ref118">
<label>118</label><mixed-citation publication-type="other" xlink:type="simple"> Redfield, A. C., Ketchum, B. H., and Richards, F. A.: The influence of organisms on the composition of seawater, in: The Sea, Vol 2, edited by: Hill, M. N., Academic Press, N.Y., 26&amp;ndash;77, 1963. </mixed-citation>
</ref>
<ref id="ref119">
<label>119</label><mixed-citation publication-type="other" xlink:type="simple"> Rysgaard, S. and Glud, R. N.: Anaerobic N&lt;sub&gt;2&lt;/sub&gt; production in Arctic Sea Ice, Limnol. Oceanogr., 49, 86&amp;ndash;94, 2004. </mixed-citation>
</ref>
<ref id="ref120">
<label>120</label><mixed-citation publication-type="other" xlink:type="simple"> Sambrotto, R. N., Savidge, G., Robinson, C., Boyd, P., Takahasahi, T., Karl, D. M., Langdon, C., Chipman, D., Marra, J., and Codispoti, L.: Net organic carbon production of marine plankton exceeds estimates based on nitrate limitation, Nature, 363, 248&amp;ndash;250, 1993. </mixed-citation>
</ref>
<ref id="ref121">
<label>121</label><mixed-citation publication-type="other" xlink:type="simple"> San&amp;ntilde;udo-Wilhelmy, S. A., Kustka, A. B., Gobler, C. J., Hutchins, D. A., Yang, M., Lwiza, K., Burns, L., Capone, D. G., Raven, J. A., and Carpenter, E. J.: Phosphorus limitation of nitrogen fixation by \textitTrichodesmium in the central Atlantic Ocean, Nature, 411, 66&amp;ndash;69, 2001. </mixed-citation>
</ref>
<ref id="ref122">
<label>122</label><mixed-citation publication-type="other" xlink:type="simple"> Shaffer, G. and Rönner, U.: Denitrification in the Baltic proper deep water, Deep-Sea Res., 31, 197&amp;ndash;220, 1984. </mixed-citation>
</ref>
<ref id="ref123">
<label>123</label><mixed-citation publication-type="other" xlink:type="simple"> Schultz, A. and Elderfield, H.: Controls on the physics and chemistry of seafloor hydrothermal circulation, in: Mid-Ocean Ridges: Dynamics of Processes Associated with Creation of New Ocean Crust, Philosophical Transactions: Mathematical, Phys. Eng. Sci., l, 387&amp;ndash;425, 1997. </mixed-citation>
</ref>
<ref id="ref124">
<label>124</label><mixed-citation publication-type="other" xlink:type="simple"> Schulz, H. N. and Schulz, H. D.: Large sulfur bacteria and the formation of phosphorite, Science, 307, 416&amp;ndash;418, 2005. </mixed-citation>
</ref>
<ref id="ref125">
<label>125</label><mixed-citation publication-type="other" xlink:type="simple"> Scientific Committeee on Oceanic Research (SCOR): Global ocean productivity and the fluxes of carbon and nutrients: Combining observations and models, JGOFS Report No 38, 75~pp., 2003. </mixed-citation>
</ref>
<ref id="ref126">
<label>126</label><mixed-citation publication-type="other" xlink:type="simple"> Scranton, M. I., McIntyre, M., Astor, Y., Taylor, G. T., Müller-Karger, G., and Fanning, K.: Temporal variability in the nutrient chemistry of the Cariaco Basin, in: Past and Present Water Column Anoxia. NATO Science Series, IV. Earth and Environmental Sciences &amp;ndash; Vol. 64, edited by: Neretin, L., Springer, Dordrecht, 139&amp;ndash;160, 2006. </mixed-citation>
</ref>
<ref id="ref127">
<label>127</label><mixed-citation publication-type="other" xlink:type="simple"> Sigman, D. M., Robinson, R., Knapp, A. N., van Geen, A., McCorkle, D. C., Brandes, J. A., and Thunell, R. C.: Distinguishing between water column and sedimentary denitrification in the Santa Barbara Basin using the stable isotopes of nitrate, Geochem. Geophys. Geosyst., 4, 1040, https://doi.org/10.1029/2002GC000384, 2003. </mixed-citation>
</ref>
<ref id="ref128">
<label>128</label><mixed-citation publication-type="other" xlink:type="simple"> Sweeney, C., Smith, W. O., Hales, B., Bidigare, R. R., Carlson, C. A., Codispoti, L. A., Gordon, L. I., Hansell, D. A., Millero, F. J., Park, M.-O., and Takahashi, T.: Nutrient and carbon removal ratios and fluxes in the Ross Sea, Antarctica, Deep-Sea Res. II, 47, 3395&amp;ndash;3421, 2000. </mixed-citation>
</ref>
<ref id="ref129">
<label>129</label><mixed-citation publication-type="other" xlink:type="simple"> Thamdrup, B. and Dalsgaard, T.: Production of N&lt;sub&gt;2&lt;/sub&gt; through anaerobic ammonium oxidation coupled to nitrate reduction in marine sediments, Appl. Environ. Microbiol., 68, 1312&amp;ndash;1318, 2002. </mixed-citation>
</ref>
<ref id="ref130">
<label>130</label><mixed-citation publication-type="other" xlink:type="simple"> Thamdrup, B., Dalsgaard, T., Jensen, M. M., Ulloa, O., Farias, L., and Escribano, R.: Anaerobic ammonium oxidation in the oxygen-deficient waters off northern Chile, Limnol. Oceanogr., 51(5), 2145&amp;ndash;2156, 2006. </mixed-citation>
</ref>
<ref id="ref131">
<label>131</label><mixed-citation publication-type="other" xlink:type="simple"> Thingstad, T. F., Krom, M. D., Mantoura, R. F. C., Flaten, G. A. F., Groom, S., Herut, B., Kress, N., Law, C. S., Pasternak, A., Pitta, P., Psarra, S., Rassoulzadegan, F., Tanaka, T., Tselepides, A., Wassmann, P., Woodward, E. M. S., Wexels Riser, C., Zodiatis, G., and Zohary, T.: Nature of phosphorus limitation in the ultraoligotrophic eastern Mediterranean, Science, 309, 1068&amp;ndash;1071, 2005. </mixed-citation>
</ref>
<ref id="ref132">
<label>132</label><mixed-citation publication-type="other" xlink:type="simple"> Tyrell, T.: The relative influences of nitrogen and phosphorus on oceanic primary production, Nature, 400, 525&amp;ndash;531, 1999. </mixed-citation>
</ref>
<ref id="ref133">
<label>133</label><mixed-citation publication-type="other" xlink:type="simple"> Van Cappellen, P., Viollier, E., and Roychoudhury, A.: Biogeochemical cycles of manganese and iron at the oxic anoxic transition of a stratified marine basin (Orca Basin, Gulf of Mexico), Environ. Sci. Technol., 32, 2931&amp;ndash;2939, 1998. </mixed-citation>
</ref>
<ref id="ref134">
<label>134</label><mixed-citation publication-type="other" xlink:type="simple"> Van Mooy, B. A. S., Keil, R. G., and Devol, A. H.: Impact of suboxia on sinking particulate organic carbon: Enhanced carbon flux and preferential degradation of amino acids via denitrification, Geochim. Cosmochim. Acta, 66, 457&amp;ndash;465, 2002. </mixed-citation>
</ref>
<ref id="ref135">
<label>135</label><mixed-citation publication-type="other" xlink:type="simple"> Voss, M., Emeis, K.-C., Hille, S., Neumann, T., and Dippner, J. W.: Nitrogen cycle of the Baltic Sea from an isotopic perspective, Global Biogeochem. Cycles, 19, GB3001, https://doi.org/10.1029/2004GB002338, 2005. </mixed-citation>
</ref>
<ref id="ref136">
<label>136</label><mixed-citation publication-type="other" xlink:type="simple"> Watling, L. and Norse, E. A.: Disturbance of the seabed by mobile fishing gear: A comparison to forest clearcutting, Cons. Biol., 5, 1180&amp;ndash;1197, 1998. </mixed-citation>
</ref>
<ref id="ref137">
<label>137</label><mixed-citation publication-type="other" xlink:type="simple"> Wheat, G. C., Feely, R. A., and Mottle, M. J.: Phosphate removal by oceanic hydrothermal processes: An update of the phosphorus budget in the oceans, Geochim. Cosmochim. Acta, 60, 3593&amp;ndash;3608, 1996. </mixed-citation>
</ref>
<ref id="ref138">
<label>138</label><mixed-citation publication-type="other" xlink:type="simple"> Wheat, G. C., McManus, J., Mottle, M. J., and Giambalvo, E.: Oceanic phosphorus imbalance: Magnitude of the mid-ocean ridge flank hydrothermal sink, Geophys. Res. Lett., 30, 1895, https://doi.org/10.1029/2003GLO17318, 2003. </mixed-citation>
</ref>
<ref id="ref139">
<label>139</label><mixed-citation publication-type="other" xlink:type="simple"> Wolff, E. W., Fischer, H., Fundel, F., Ruth, U., Twarloh, B., Littot, G. C., Mulvaney, R., Röthlisbergr, R., De Angelis, M., Boutron, C. F., Hansson, M., Jonsell, U., Hutterli, M. A., Lambert, F., Kaufmann, P., Stauffer, B., Stocker, T. F., Steffensen, J. P., Bigler, M., Siggaard-Andersen, M.L., Udisti, R., Becagli, S., Castellano, E., Severi, M., Wagenbach, D., Barbante, C., Gabrielli, P., and Gaspari, V.: Southern Ocean sea-ice extent, productivity and iron flux over the past eight glacial cycles, Nature, 440, 491&amp;ndash;496, 2006. </mixed-citation>
</ref>
<ref id="ref140">
<label>140</label><mixed-citation publication-type="other" xlink:type="simple"> Wu, J., Sunda, W., Boyle, E. A., and Karl, D. M.: Phosphate depletion in the western North Atlantic Ocean, Science, 289, 759&amp;ndash;762, 2000. </mixed-citation>
</ref>
<ref id="ref141">
<label>141</label><mixed-citation publication-type="other" xlink:type="simple"> Yamamoto-Kawai, M., Carmack, E., and McLaughlin, F.: Nitrogen balance and Arctic throughflow, Nature, 443, 43, https://doi.org/10.1038/443043a, 2006. </mixed-citation>
</ref>
<ref id="ref142">
<label>142</label><mixed-citation publication-type="other" xlink:type="simple"> Zaitsev, Yu. P.: Ecological consequences of anoxic events at the north-western Black Sea Shelf, in: Past and Present Water Column Anoxia. NATO Science Series, IV. Earth and Environmental Sciences &amp;ndash; Vol. 64, edited by: Neretin, L., Springer, Dordrecht, 247&amp;ndash;256, 2006. </mixed-citation>
</ref>
<ref id="ref143">
<label>143</label><mixed-citation publication-type="other" xlink:type="simple"> Zehr, J. P. and Ward, B. B.: Nitrogen cycling in the ocean: New perspectives on processes and paradigms, Appl. Environ. Microbiol., 68, 1015&amp;ndash;1024, 2002. </mixed-citation>
</ref>
<ref id="ref144">
<label>144</label><mixed-citation publication-type="other" xlink:type="simple"> Zehr, P. J., Mellon, M. T., and Zani, S.: New nitrogen-fixing microorganisms detected in oligotrophic oceans by amplification of nitrogenase (\textitnifH) genes, Appl. Environ. Microbiol., 64, 3444&amp;ndash;3450, 1998. </mixed-citation>
</ref>
<ref id="ref145">
<label>145</label><mixed-citation publication-type="other" xlink:type="simple"> Zehr, J. P., Church, M. J., and Moisander, P. H.: Diversity, distribution and biogeochemical significance of nitrogen-fixing microorganisms in anoxic and suboxic ocean environments., in: Past and Present Water Column Anoxia, edited by: Neretin, L. N., NATO Science Series, IV. Earth and Environmental Sciences, Vol 64, Springer, Dordrecht 337&amp;ndash;369, 2006. </mixed-citation>
</ref>
<ref id="ref146">
<label>146</label><mixed-citation publication-type="other" xlink:type="simple"> Zitsman, S. and Brüchert, V.: Nitrogen dynamics in organic rich sediments of the Namibian Shelf, [abstract], ASLO Summer Meeting 2005. </mixed-citation>
</ref>
</ref-list>
</back>
</article>