Publications
50
Citations
1,016
Est. group size
~8
Recurring co-author estimate
Active years
13
Publishing since 2014
Natalie M. Hull's research focuses on water treatment technologies, particularly ultraviolet (UV) light disinfection of drinking water, wastewater, and other water sources to inactivate pathogens like bacteria, viruses (including SARS-CoV-2), and harmful algal toxins (microcystins). Her work compares different UV wavelengths and conventional chemical disinfection (like chlorine) to understand their effectiveness, side effects on water chemistry and microbial communities, and practical applications in water distribution and treatment systems. She also contributes to wastewater-based epidemiology, using sewage monitoring to track disease spread in communities.
Publication output has grown from a few papers per year in 2017-2020 to a peak around 2021-2024, suggesting an active and somewhat variable but generally increasing research pace over the past decade.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Comparative effects of chlorine and UV LED disinfection on drinking water and biofilms, with chlorine causing greater shifts in microbial community composition
PLOS Water · 2026
- Comparison of Microcystin-LR Degradation by UV<sub>222</sub> and UV<sub>254</sub>
Environmental Science & Technology · 2025
- Impact of wavelength, exposure sequence, and organic matter on UV disinfection and DNA repair
PLOS Water · 2025
- 222 nm causes greater protein damage and repair inhibition of E. coli than 254 nm for water disinfection
PLOS Water · 2024
- Innovative microbial water quality management in water distribution systems using in-pipe hydropowered UV disinfection: envisioning futuristic water-energy systems
Environmental Technology · 2024
- Impact of flocculated and softened particles on <scp>UV<sub>254</sub></scp> inactivation of indigenous spores
AWWA Water Science · 2024
- Evaluating Wastewater Quality Parameters as an Alternative or Complement to Molecular Indicators for Normalization during SARS-CoV-2 Wastewater-Based Epidemiology
Environments · 2024
- Emerging investigator series: Inactivation of antibiotic resistant bacteria and inhibition of horizontal resistance gene transfer is more effective by 222 than 254 nm UV
Environmental Science Water Research & Technology · 2024
- Microcystins are present in water treatment plant residuals and are impacted by extraction and quantification methodology
Environmental Technology · 2024
- Polychromatic UV Fluence (Dose) Response Determination v2
2024
- Calcium sulfoaluminate cement and supplementary cementitious materials-containing binders in self-healing systems
Cement and Concrete Composites · 2023
- Fluence-based QMRA model for bacterial photorepair and regrowth in drinking water after decentralized UV disinfection
Water Research · 2023
- A Pilot Household Greywater Treatment and Reuse System Produces High-Quality Water under Simulated Household Illness Test Conditions
ACS ES&T Water · 2023
- Considerations for determining the performance of ultraviolet light emitting diode fluid disinfection systems
Water Environment Research · 2023
- Evaluation of intra- and inter-lab variability in quantifying SARS-CoV-2 in a state-wide wastewater monitoring network
Environmental Science Water Research & Technology · 2023
- Environmental Science & Technology×3
- PLOS Water×3
- Environmental Science Water Research & Technology×3
- Water Research×2
- AWWA Water Science×2
- Emma Lancaster
Medicine · The Ohio State University
- Justin Greaves
Medicine · Indiana University
- Katelyn Stuart
Medicine · The Ohio State University
- Mark H. Weir
Medicine · The Ohio State University
- Md. Ahasan Ahamed
Engineering · Indiana University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
Claim or correct this profile