All about nitrite: exploring nitrite sources and sinks in the eastern tropical North Pacific oxygen minimum zone
-
Published:2023-06-30
Issue:12
Volume:20
Page:2499-2523
-
ISSN:1726-4189
-
Container-title:Biogeosciences
-
language:en
-
Short-container-title:Biogeosciences
Author:
Tracey John C.ORCID, Babbin Andrew R., Wallace Elizabeth, Sun XinORCID, DuRussel Katherine L., Frey Claudia, Martocello III Donald E., Tamasi Tyler, Oleynik Sergey, Ward Bess B.ORCID
Abstract
Abstract. Oxygen minimum zones (OMZs), due to their large volumes of perennially deoxygenated waters, are critical regions for understanding how the interplay between anaerobic and aerobic nitrogen (N) cycling microbial pathways affects the marine N budget. Here, we present a suite of measurements of the most significant OMZ N cycling rates, which all involve nitrite (NO2-) as a product, reactant, or intermediate, in the eastern tropical North Pacific (ETNP) OMZ. These measurements and comparisons to data from previously published OMZ cruises
present additional evidence that NO3- reduction is the predominant OMZ N flux, followed by NO2- oxidation back to NO3-. The combined rates of both of these N recycling processes were observed to be much greater (up to nearly 200 times) than
the combined rates of the N loss processes of anammox and denitrification, especially in waters near the anoxic–oxic interface. We also show
that NO2- oxidation can occur when O2 is maintained near 1 nM by a continuous-purge system, NO2-
oxidation and O2 measurements that further strengthen the case for truly anaerobic NO2- oxidation. We also evaluate the
possibility that NO2- dismutation provides the oxidative power for anaerobic NO2- oxidation. The partitioning of
N loss between anammox and denitrification differed widely from stoichiometric predictions of at most 29 % anammox; in fact,
N loss rates at many depths were entirely due to anammox. Our new NO3- reduction, NO2- oxidation, dismutation, and
N loss data shed light on many open questions in OMZ N cycling research, especially the possibility of truly anaerobic
NO2- oxidation.
Funder
Schmidt Ocean Institute Simons Foundation Directorate for Geosciences
Publisher
Copernicus GmbH
Subject
Earth-Surface Processes,Ecology, Evolution, Behavior and Systematics
Reference107 articles.
1. Anderson, J. J., Okubo, A., Robbins, A. S., and Richards, F. A.:
A model for nitrate distributions in oceanic oxygen minimum zones, Deep-Sea Res. Pt. I, 29, 1113–1140, https://doi.org/10.1016/0198-0149(82)90031-0, 1982. 2. ASTM international:
Standard Guide for Spiking into Aqueous Samples, West Conshohocken, PA, https://compass.astm.org/document/?contentCode=ASTM7CD5810-96R067Cen-US&proxycl=https3A2F2Fsecure.astm.org&fromLogin=true (last access: 9 March 2018.), 2006. 3. Babbin, A. R., Keil, R. G., Devol, A. H., and Ward, B. B.:
Organic matter stoichiometry, flux, and oxygen control nitrogen loss in the ocean, Science, 344, 406–408, https://doi.org/10.1126/science.1248364, 2014. 4. Babbin, A. R., Peters, B. D., Mordy, C. W., Widner, B., Casciotti, K. L., and Ward, B. B.:
Multiple metabolisms constrain the anaerobic nitrite budget in the Eastern Tropical South Pacific, Global Biogeochem. Cy., 31, 258–271, https://doi.org/10.1002/2016GB005407, 2017. 5. Babbin, A. R., Buchwald, C., Morel, F. M. M., Wankel, S. D., and Ward, B. B.:
Nitrite oxidation exceeds reduction and fixed nitrogen loss in anoxic Pacific waters, Mar. Chem., 224, 103814, https://doi.org/10.1016/J.MARCHEM.2020.103814, 2020.
Cited by
5 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|