publications
Publications by the Dewey Lab and collaborators
2025
- Anal ChemData Set Analysis to Reduce Uncertainty in Formula Assignments of Ultrahigh Resolution Mass SpectraAnalytical Chemistry, 2025
- ACS Environ AuTracking Changes in Organic-Copper Speciation during Wastewater Treatment Using LC-ICPMS-ESIMSACS Environmental Au, 2025
2024
- Env Sci TechnolIdentifying Quinones in Complex Aqueous Environmental Media (Biochar Extracts) through Tagging with Cysteine and Cysteine-Contained Peptides and High Resolution Mass Spectrometry AnalysisEnvironmental Science & Technology, 2024
- Env Sci TechnolHigh-Resolution Tandem Mass Spectrometry-Based Analysis of Model Lignin–Iron Complexes: Novel Pipeline and Complex StructuresEnvironmental Science & Technology, 2024
- Org GeochemAnnotation of DOM Metabolomes with an Ultrahigh Resolution Mass Spectrometry Molecular Formula LibraryOrganic Geochemistry, 2024
- Env Sci TechnolRelating Molecular Properties to the Persistence of Marine Dissolved Organic Matter with Liquid Chromatography–Ultrahigh-Resolution Mass SpectrometryEnvironmental Science & Technology, 2024
2023
- Env Sci TechnolSeasonal Oxygenation of Contaminated Floodplain Soil Releases Zn to PorewaterEnvironmental Science & Technology, 2023
- Soil Biol BiochemReactive Iron, Not Fungal Community, Drives Organic Carbon Oxidation Potential in Floodplain SoilsSoil Biology and Biochemistry, 2023
2022
- Env Sci TechnolRedox Properties of Solid Phase Electron Acceptors Affect Anaerobic Microbial Respiration under Oxygen-Limited Conditions in Floodplain SoilsEnvironmental Science & Technology, 2022
- JGR BiogeosciSulfur Biogeochemical Cycling and Redox Dynamics in a Shale‐Dominated Mountainous WatershedJournal of Geophysical Research: Biogeosciences, 2022
2021
- Env Sci TechnolPorewater Lead Concentrations Limited by Particulate Organic Matter Coupled with Ephemeral Iron(III) and Sulfide Phases during Redox Cycles within Contaminated Floodplain SoilsEnvironmental Science & Technology, 2021
2020
- Env Sci TechnolCalcium-Uranyl-Carbonato Species Kinetically Limit U(VI) Reduction by Fe(II) and Lead to U(V)-Bearing FerrihydriteEnvironmental Science & Technology, 2020