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February 12, 2026Environmental Science & Technology2 citations

Are We Characterizing the True Peaks of Disinfection Byproducts? Establishment of a Rapid and Accurate 14/15 N-HaloFormula Methodology for FT-ICR-MS

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YXYingying XiangMGMichael GonsiorSPSchmitt-Kopplin Philippe

Key Points

  • The aim is to develop a reliable method for accurately characterizing nitrogenous disinfection byproducts using advanced mass spectrometry.
  • Development of HaloFormula software for high-confidence formula assignment.
  • Dynamic generation of an isotope matrix database for improved computational efficiency.
  • Dual-isotope labeling strategy with equimolar 14N/15N-labeled monochloramine.
  • Validation using diverse data sets from FT-ICR-MS, including dissolved organic matter and chlor(am)inated compounds.
  • Assigned 1,875 formulas from Suwannee River Fulvic Acid data set, with 937 showing 13C isotopes.
  • Identified over 900 Cl-containing formulas and more than 1,400 isotopic peaks.
  • Detected up to 17 isotopologues for individual N-DBPs, enhancing nitrogen source tracking.

Abstract

Ultrahigh-resolution mass spectrometry offers exceptional resolving power, yet formula assignment, particularly for nitrogenous disinfection byproducts (N-DBPs), remains challenged by the limited isotopic signature of 15N and elemental ambiguities. We developed HaloFormula, a software for high-confidence formula assignment of dissolved organic matter (DOM) and DBPs. The workflow integrates candidate selection from a newly constructed formula database, dynamic in situ generation of an isotope matrix database, and formula assignment based on spectral similarity indices, achieving high computational efficiency and assignment accuracy. By incorporating a dual-isotope labeling strategy using equimolar 14N/15N-labeled monochloramine, HaloFormula enhances assignment accuracy and enables differentiation of nitrogen origins. The method was validated across diverse FT-ICR-MS data sets, including DOM and model compounds treated by chlor(am)ination and UV-based processes. HaloFormula assigned 1,875 formulas for a Suwannee River Fulvic Acid data set, of which 937 exhibited 13C isotopes. For halogenated compounds, over 900 Cl-containing formulas were assigned, with more than 1,400 isotopic peaks exhibiting accurate isotopic distributions. Up to 17 isotopologues were detected for individual N-DBPs due to enhanced 15N detection from the dual-isotope labeling strategy, enabling unambiguous formula assignment and nitrogen origin tracking. This novel methodology is readily adaptable for elucidating nitrogen sources in other systems and extendable to broader elemental analyses.

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Cite This Study

Xiang et al. (2026) studied this question.

synapsesocial.com/papers/698d6df45be6419ac0d53453https://doi.org/10.1021/acs.est.5c13282
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