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Updated: Feb 17, 2026

Dynamic Electrochemical Measurement of Chloride Ions
Published on: February 5, 2016
Chloronitramide Anion Quantitation in Tap Waters by Ion Chromatography with Electrical Conductivity and Ultraviolet
Jason A Thornhill1, Juliana R Laszakovits2, Barrett E Johnson1
1Department of Civil Engineering, University of Arkansas, Fayetteville, Arkansas 72701, United States.
None:
Chloronitramide anion (Cl-N-NO2 -) is a recently discovered inorganic chloramine decomposition product, with prior quantitation by hydrophilic interaction liquid chromatography-ultrahigh-resolution mass spectrometry (HILIC-UHRMS). Here, Cl-N-NO2 - quantitation was evaluated by ion chromatography (IC) separation with electrical conductivity (EC) and ultraviolet absorbance at 243 nm (UV243) detection. Using a 5 mL injection loop and a 14.4 mM Na2CO3 eluent, the Cl-N-NO2 - method detection limit was 9.3 μg L-1 by IC-EC and 6.2 μg L-1 by IC-UV243. Matrix testing with Cl-N-NO2 - spiked at 15, 25, 50, and 100 μg L-1 into 12 waters in triplicate matched the expected Cl-N-NO2 - for IC-EC (R2 = 0.994) and IC-UV243 (R2 = 0.993). Cl-N-NO2 - was found by HILIC-UHRMS in all tested tap waters disinfected with chloramines (n = 8) at 22-314 μg L-1 and free chlorine (n = 3) at 2-7 μg L-1, and strongly correlated with IC-EC (R2 = 0.991; average residual, = +3.2 μg L-1) and IC-UV243 (R2 = 0.997; = 0.0 μg L-1). This is the first report of Cl-N-NO2 - in free chlorine systems and concentrations ≳200 μg L-1 in chloramine systems. These IC methods enable widescale collection of Cl-N-NO2 - occurrence data, with IC-UV243 subject to lesser measurement bias.
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