Literature DB >> 19908214

Removal of nitrite with sulfamic acid for nitrate N and O isotope analysis with the denitrifier method.

Julie Granger1, Daniel M Sigman.   

Abstract

In environmental water samples that contain both nitrate (NO3-) and nitrite (NO2-), isotopic analysis of nitrate alone by all currently available methods requires pretreatment to remove nitrite. Sulfamic acid addition, used previously for this purpose (Wu JP, Calvert SE, Wong CS. Deep-Sea Research Part I - Oceanographic Research Papers 1997; 44: 287), is shown here to be compatible with the denitrifier method for both N and O isotope analysis of nitrate. Sulfamic acid at a pH of approximately 1.7 reduces nitrite to N2. Samples are then neutralized with base prior to isotope analysis, to alleviate the buffering demands of the bacterial media and as a precaution to prevent modification of nitrate during storage with the residual sulfamic acid at low pH. Under appropriate reaction conditions, nitrite is completely removed within minutes. Sulfamic acid treatment does not compromise the completeness of the conversion of nitrate into N2O or the precision and accuracy of N and O isotope measurements by the denitrifier method. Nitrite concentrations upwards of 7 times the ambient nitrate can be removed without affecting the isotope composition of nitrate. The method is applied to analyses of the coupled N and O isotopes of nitrate and nitrite in waters of the Mexican Margin, to illustrate its efficacy and utility when employed either in the field upon sample collection or in the lab after months of frozen sample storage. Copyright 2009 John Wiley & Sons, Ltd.

Entities:  

Year:  2009        PMID: 19908214     DOI: 10.1002/rcm.4307

Source DB:  PubMed          Journal:  Rapid Commun Mass Spectrom        ISSN: 0951-4198            Impact factor:   2.419


  19 in total

1.  Cyanate and urea are substrates for nitrification by Thaumarchaeota in the marine environment.

Authors:  Katharina Kitzinger; Cory C Padilla; Hannah K Marchant; Philipp F Hach; Craig W Herbold; Abiel T Kidane; Martin Könneke; Sten Littmann; Maria Mooshammer; Jutta Niggemann; Sandra Petrov; Andreas Richter; Frank J Stewart; Michael Wagner; Marcel M M Kuypers; Laura A Bristow
Journal:  Nat Microbiol       Date:  2018-12-10       Impact factor: 17.745

2.  An oligotrophic deep-subsurface community dependent on syntrophy is dominated by sulfur-driven autotrophic denitrifiers.

Authors:  Maggie C Y Lau; Thomas L Kieft; Olukayode Kuloyo; Borja Linage-Alvarez; Esta van Heerden; Melody R Lindsay; Cara Magnabosco; Wei Wang; Jessica B Wiggins; Ling Guo; David H Perlman; Saw Kyin; Henry H Shwe; Rachel L Harris; Youmi Oh; Min Joo Yi; Roland Purtschert; Greg F Slater; Shuhei Ono; Siwen Wei; Long Li; Barbara Sherwood Lollar; Tullis C Onstott
Journal:  Proc Natl Acad Sci U S A       Date:  2016-11-21       Impact factor: 11.205

3.  Nitrite oxidation in the upper water column and oxygen minimum zone of the eastern tropical North Pacific Ocean.

Authors:  J Michael Beman; Joy Leilei Shih; Brian N Popp
Journal:  ISME J       Date:  2013-06-27       Impact factor: 10.302

4.  Nitrite oxidation in the Namibian oxygen minimum zone.

Authors:  Jessika Füssel; Phyllis Lam; Gaute Lavik; Marlene M Jensen; Moritz Holtappels; Marcel Günter; Marcel M M Kuypers
Journal:  ISME J       Date:  2011-12-15       Impact factor: 10.302

5.  Meteorological influences on nitrogen dynamics of a coastal onsite wastewater treatment system.

Authors:  M A O'Driscoll; C P Humphrey; N E Deal; D L Lindbo; M A Zarate-Bermudez
Journal:  J Environ Qual       Date:  2014-11       Impact factor: 2.751

6.  Determination of 15N/14N of Ammonium, Nitrite, Nitrate, Hydroxylamine, and Hydrazine Using Colorimetric Reagents and Matrix-Assisted Laser Desorption Ionization-Time-of-Flight Mass Spectrometry (MALDI-TOF MS).

Authors:  Mamoru Oshiki; Komei Nagai; Satoshi Ishii; Yoshiyuki Suzuki; Nobuo Saito; Takashi Yamaguchi; Nobuo Araki; Satoshi Okabe
Journal:  Appl Environ Microbiol       Date:  2022-03-14       Impact factor: 5.005

7.  Nitrogen isotope effects induced by anammox bacteria.

Authors:  Benjamin Brunner; Sergio Contreras; Moritz F Lehmann; Olga Matantseva; Mark Rollog; Tim Kalvelage; Gabriele Klockgether; Gaute Lavik; Mike S M Jetten; Boran Kartal; Marcel M M Kuypers
Journal:  Proc Natl Acad Sci U S A       Date:  2013-11-04       Impact factor: 11.205

8.  Placing an upper limit on cryptic marine sulphur cycling.

Authors:  D T Johnston; B C Gill; A Masterson; E Beirne; K L Casciotti; A N Knapp; W Berelson
Journal:  Nature       Date:  2014-09-07       Impact factor: 49.962

9.  Acidification Enhances Hybrid N2O Production Associated with Aquatic Ammonia-Oxidizing Microorganisms.

Authors:  Caitlin H Frame; Evan Lau; E Joseph Nolan; Tyler J Goepfert; Moritz F Lehmann
Journal:  Front Microbiol       Date:  2017-01-09       Impact factor: 5.640

10.  Nitrate reductase (15)N discrimination in Arabidopsis thaliana, Zea mays, Aspergillus niger, Pichea angusta, and Escherichia coli.

Authors:  Eli Carlisle; Chris Yarnes; Michael D Toney; Arnold J Bloom
Journal:  Front Plant Sci       Date:  2014-07-02       Impact factor: 5.753

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