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Nitrogen—Isotope‐Ratio Analysis

R. D. Hauck

Open publisher page 239 citations

Abstract

This chapter focuses on certain problems associated with the nontracer methods, on methods for analysis of samples low in N content, on the analysis of 15N-depleted vs. 15N-enriched samples, and on optical spectroscopy vs. mass spectroscopy for N isotope-ratio analysis. Nitrogen isotope-ratio analysis of gases that are evolved from soils as a result of denitrification, N02 - reactions, or other processes is accomplished after purifying the gas of interest from other gases. Isotope-ratio analysis of sample N often involves: conversion of sample N to NH4 +-N by means of acid digestion, oxidation of NH4 +-N to N2 and determination of the isotopic composition of the N2. In N tracer experiments, the N forms have N isotopic compositions substantially different from the isotopic composition of the total soil N. Conversion of NH4 +-N to N2 for mass spectrometer analysis usually is done by reacting NH4 +-N with alkaline sodium hypobromite in the absence of air.

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What this paper is about

This chapter focuses on certain problems associated with the nontracer methods, on methods for analysis of samples low in N content, on the analysis of 15N-depleted vs. 15N-enriched samples, and on optical spectroscopy vs. mass spectroscopy for N isotope-ratio analysis. Nitrogen isotope-ratio analysis of gases that are evolved from soils as a result of denitrification, N02 - reactions, or other processes is accomplished after purifying the gas of interest from other gases. Isotope-ratio analysis of sample N often involves: conversion of sample N to NH4 +-N by means of acid digestion, oxidation of NH4 +-N to N2 and determination of the isotopic composition of the N2. In N tracer experiments, the N forms have N isotopic compositions substantially different from the isotopic composition of the total soil N. Conversion of NH4 +-N to N2 for mass spectrometer analysis usually is done by reacting NH4 +-N with alkaline sodium hypobromite in the absence of air.

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Available abstract

This chapter focuses on certain problems associated with the nontracer methods, on methods for analysis of samples low in N content, on the analysis of 15N-depleted vs. 15N-enriched samples, and on optical spectroscopy vs. mass spectroscopy for N isotope-ratio analysis. Nitrogen isotope-ratio analysis of gases that are evolved from soils as a result of denitrification, N02 - reactions, or other processes is accomplished after purifying the gas of interest from other gases. Isotope-ratio analysis of sample N often involves: conversion of sample N to NH4 +-N by means of acid digestion, oxidation of NH4 +-N to N2 and determination of the isotopic composition of the N2. In N tracer experiments, the N forms have N isotopic compositions substantially different from the isotopic composition of the total soil N. Conversion of NH4 +-N to N2 for mass spectrometer analysis usually is done by reacting NH4 +-N with alkaline sodium hypobromite in the absence of air.

Key concepts: Isotope-ratio mass spectrometry, Isotopes of nitrogen, Isotope analysis, Nitrogen, Chemistry, Mass spectrometry, Isotope, Analytical Chemistry (journal)

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