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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!

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Research

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RSS Environ. Sci. Technol.

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RSS Water Research

  • OpenAqua: An automated multi-agent framework for early-stage water treatment train design with retrieval augmentation and critic-based refinement
  • Deciphering microplastic-driven denitrification in rivers: carbon bioavailability, keystone microbes and electron transfer efficiency
  • A cross-domain hybrid learning framework for unified prediction and mechanistic insights into disinfection by-products
  • New insight into the overlooked aging behavior of microplastics mediated by soluble Mn(Ⅲ) in subsurface environments
  • Interfacial iron redistribution and extracellular matrix adjustment accompany community assembly during recovery from non-additive co-contaminant stress in anaerobic wastewater treatment
  • Far-UVC-activated calcium peroxide facilitates simultaneous antibiotic removal and carbon recovery from waste activated sludge
  • Suspended Particulate Matter Mediates PFAS Source-to-Sink Transport and Multiphase Partitioning During Extreme Hydrological Events
  • Spatially decoupled MgFe2O4carbon interfaces promote interfacial electron transfer for concurrent BHA degradation and As(III) oxidation-immobilization
  • Co-ebullition of CO₂ and CH₄: Unveiling a hidden carbon emission pathway in the World's Third Pole
  • Molecular and interfacial regulation of secondary effluent ultrafiltration by UV222/Fe(VI): EfOM transformation and dynamic membrane surface conditioning
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