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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] LDH-Enhanced Degradation of PFASs: Influence of Reactant Configurations within Nanoconfined Spaces on Hydrated Electron Transport
  • [ASAP] The Mechanism of Aggravating N2O Emission in a Partial Nitritation Reactor with Increasing bCOD/NH4+–N
  • [ASAP] Nano-Fe3O4 Enhances the Biological Removal of Low-Concentration Methane during Long-Term Operation
  • [ASAP] Photovoltaic Coverage Alters Soil Ecosystem Multifunctionality: Contrasting Effects and Underlying Mechanisms
  • [ASAP] Prenatal PFAS Exposure in a Twin Pregnancy Cohort: Associations with Thyroid Disruption, Placental Malperfusion, and Fetal Growth Restriction
  • [ASAP] Improving Kinetic Prediction and Structural-Electronic Mechanistic Coherence in the Fenton Process via a Cross-Scale Machine-Learning Framework
  • [ASAP] Hydroxamate Siderophores Drive Persistent Free Radical Generation to Suppress Antibiotic Resistance Gene Dissemination and Enhance Humification during Composting
  • [ASAP] In Vitro Bioassay Evidence for Chemical Mixture Propagation from the Environment to Humans
  • [ASAP] Are Polylactide-Based Fully Degradable Composites Greener than Semi- and Nondegradable Ones during Production? A Cradle-to-Gate Lifecycle Assessment in China
  • [ASAP] Coupling Acid Neutralization and Resource Recovery to Scale Ocean Alkalinity Enhancement

RSS Water Research

  • Balancing electron competition in nitrogen oxide reduction via membrane-aerated electroactive biofilms for electron flow regulation and N2O mitigation
  • Stable carbon capture and membrane fouling control in a high load bioflocculation membrane reactor (HLB-MR) via low-intensity ex situ ultrasound: Synergistic regulation of extracellular polymeric substances, metal ions, and microorganisms
  • Making waves: Model transfer as a key pathway to improving the generalization of machine learning in wastewater treatment engineering
  • Integrating meteorological data into linear mixed models for sunlight inactivation of indicator organisms in natural lake water
  • Synergistic integration of in situ generated Fe-S species and organohalide-respiring bacteria for complete dechlorination of carbon tetrachloride in groundwater
  • Humic acid-cation interactions reshape nanoplastic bioaccessibility and mechanistic toxic pathways toward microalgae
  • Making waves: Energy data as an observatory for water system performance
  • Carbon redistribution driven by autochthonous processes in the world’s largest water transfer project: Disrupting natural carbon boundaries
  • Laccase-mediated transformation of 6PPD: Amplified 6PPD-q formation in the presence of natural organic matter
  • Methane dynamics in a stratified temperate reservoir: Accumulation, redistribution and hotspots
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