Barrett E. Johnson
Researcher
Graduate Student Researcher
Research Areas
Biography and Research Information
OverviewAI-generated summary
Barrett E. Johnson's research focuses on analytical chemistry methods for water quality assessment. His recent work, published in 2026, investigates the quantitation of chloronitramide anions in tap water using ion chromatography coupled with electrical conductivity and ultraviolet absorbance detection. Further studies explore the factors influencing chloronitramide anion yields during monochloramine formation, specifically examining the impact of reagent addition order, pH, and mixing dynamics. Johnson's scholarship metrics indicate an h-index of 1 with two total publications and two citations. He has collaborated on shared publications with Julian L. Fairey, Justin R. Chimka, and Jerry A. Thornhill, all from the University of Arkansas at Fayetteville.
Metrics
- h-index: 1
- Publications: 2
- Citations: 2
Selected Publications
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Chloronitramide Anion Yields During Monochloramine Formation: Impact of Reagent Addition Order, pH, and Mixing (2026)Journal of the Arkansas Academy of Science OpenAlex
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Chloronitramide Anion Quantitation in Tap Waters by Ion Chromatography with Electrical Conductivity and Ultraviolet Absorbance Detection (2026)
Collaboration Network
Top Collaborators
- Chloronitramide Anion Quantitation in Tap Waters by Ion Chromatography with Electrical Conductivity and Ultraviolet Absorbance Detection
- Chloronitramide Anion Yields During Monochloramine Formation: Impact of Reagent Addition Order, pH, and Mixing
- Chloronitramide Anion Quantitation in Tap Waters by Ion Chromatography with Electrical Conductivity and Ultraviolet Absorbance Detection
- Chloronitramide Anion Yields During Monochloramine Formation: Impact of Reagent Addition Order, pH, and Mixing
- Chloronitramide Anion Quantitation in Tap Waters by Ion Chromatography with Electrical Conductivity and Ultraviolet Absorbance Detection
- Chloronitramide Anion Quantitation in Tap Waters by Ion Chromatography with Electrical Conductivity and Ultraviolet Absorbance Detection
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