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E-WATER Lab @ Michigan State

Electrified WAstewater Treatment and Element Recovery

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Electrified WAstewater Treatment and Element Recovery (E-WATER) Lab

The E-WATER lab at Michigan State University develops affordable and reliable electrochemical solutions to help transform the resource-intensive wastewater management towards a resource-supplying hub. Our research synergistically integrates Applied Electrochemistry with Selective Separation and Process Engineering to (1) design energy-efficient engineering processes for multi-level resource recovery, (2) fundamentally understand rate-limiting step on the system level via thermodynamic and kinetic analysis, and (3) identify scaling-up challenges from energetic and techno-economic perspectives for better design of the treatment train. We welcome students and scholars from all over the world to join us!

About Us

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Research

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RSS Environ. Sci. Technol.

  • [ASAP] Specific Ion Chemistry at the Air–Water Interface of Nitrite/Nitrate-Containing Droplets
  • [ASAP] MXene-Based Nanoconfined Ion Channels for Ultratrace Detection of Short-Chain Per- and Polyfluoroalkyl Substance Trifluoromethanesulfonic Acid and Its On-site Application
  • [ASAP] Hydrodynamic Forces as an Overlooked Driver of Phosphorus Mobilization via Piezoelectric Activation
  • [ASAP] Role of Microoxic Control in Alternating Anoxic/Oxic Systems for Selective Enrichment of N2O-Reducing Bacteria and N2O Mitigation in Wastewater Treatment
  • [ASAP] Sulfur Isotopes Reveal Spatial Variation in Waterbird Trace Element Contamination from Tropical Estuaries to the Open Ocean
  • [ASAP] Satellite On-Orbit Chip-Level Deep Learning Model for Real-Time Dust Storm Monitoring
  • [ASAP] Aqueous Formation and Evolution of Phenolic Secondary Organic Aerosol: Excited by NO2– and Organic Triplet Excited State
  • [ASAP] Spatially Decoupled Dual-Active Sites Break the Activity–Humidity Trade-Off: Achieving Water-Promoted Ozonation of Dichloromethane
  • [ASAP] Facilitating the Resumption of Hydroxyl Groups of Layered Triple Hydroxide Catalysts for Efficient Catalytic Ozone Decomposition
  • [ASAP] Integration of Epidemiology and Network Toxicology Revealed the Arrhythmogenic Potential of Neonicotinoid Insecticides

RSS Water Research

  • Comment on; Reversing and controlling microbial proliferation in the water system of a high-risk hospital ward after extended closure and reconstruction by Dominique L Chaput, Kerr Clarkson, Linda Bagrade, Aleksandra Marek, Dennis Kelly,David Watson, Tom Steele, Alistair Leanord. Water Research Vol 282,2025, Epub Apr 29
  • Long-term fertilization regimes mitigate dissolved organic matter leaching and alter its chemodiversity in agricultural soil leachate
  • Cross-feeding supports the growth of ammonia-oxidizing bacteria with reduced genomes during evolution
  • Atomically engineered Fe/Mn catalysts enable ultrafast self-sustaining water purification via oxidant-free Fenton-like electron-transfer reaction
  • Enhanced per- and polyfluoroalkyl substances (PFAS) exposure in a large estuary-coastal sea continuum shortly after a spring flood event
  • Exploring pathway scenarios for future urban water resilience using systems approach coupled with an agent-based model operated on synthetic social-policy networks
  • S⁰-S²⁻ co-substrate system achieves efficient nitrite accumulation under high alkalinity and ultra-short HRT: Multidimensional responses and metabolic regulation mechanism
  • MnOx media and biologically formed MnOx on sand surface from Mn(II) oxidation significantly promote dissolved aluminum removal in filtration systems
  • PipeNetGen: A methodology for generating synthetic water distribution network models
  • How can hydrological connectivity inform catchment scale stormwater flood management?
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