Skip to content

E-WATER Lab @ Michigan State

Electrified WAstewater Treatment and Element Recovery

  • Twitter
  • Linkedin
  • RG
  • Web of Science
  • Google Scholar
  • Home
  • Spotlight
  • Professor
    • Principal Investigator
    • Teaching
    • Archives
      • Dissertation/Thesis
      • Invited Talk/Conferences
      • Competition/Awards
      • Experience
        • Academic Experience
        • Other Experiences
  • People
    • Current Members
    • Alumni
    • Previous Collaborators
  • Research
    • Publication
    • Lab Space and Instruments
    • Ongoing Projects
    • Concluded Projects
      • Forward Osmosis
      • Osmotic Membrane Bioreactor
      • Bioelectrochemical System
  • Contact
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

If you want to know more about the E-WATER Lab, please click here!

Read more About Us

Research

Showcase cutting-edge and innovative technologies.

Read more Research

Photo Gallery

Unforgettable experience and exciting moments!

Read more Photo Gallery

Blog Stats

  • 38,989 hits
August 2026
M T W T F S S
 12
3456789
10111213141516
17181920212223
24252627282930
31  
« Mar    

RSS Environ. Sci. Technol.

  • An error has occurred; the feed is probably down. Try again later.

RSS Water Research

  • Could wastewater and clinical surveillance address blind spots in antimicrobial use and AMR? — Evidence from Australia’s Northern Territory
  • Physics-Informed Transformer for Genus-Level Phytoplankton Forecasting at Drinking-Water Intake Points
  • High carbon burial fluxes in lakes do not equate to stable carbon sinks: Evidence from typical large river-connected lake systems
  • Revisiting nitrite sensitized photolysis for micropollutants removal: overlooked oxidative mechanisms of reactive nitrogen species and their dual role in byproduct toxicity
  • Evaluating best machine learning model for discharge prediction under dam-regulated river using a novel approach of hydro feature engineering
  • Mechanistic insights into the spatial distribution and predictability limits of sewage sludge constituents
  • Balancing interaction energy and collision frequency for engineering-efficient algal removal by covalently functionalized micrometer-scale magnetic particles
  • Electric field optimizes bacterium-phage interactions to enhance biofilm adaptation and microbial function in constructed wetlands
  • Resource recovery reshapes adaptation–sustainability trade-offs in urban drainage renewal: From high-throughput exploration to generative AI–enabled decision support
  • Football matches as natural experiments: Exploring wastewater quality parameters for dynamic population normalization in sub-sewersheds
Create a website or blog at WordPress.com
  • Subscribe Subscribed
    • E-WATER Lab @ Michigan State
    • Already have a WordPress.com account? Log in now.
    • E-WATER Lab @ Michigan State
    • Subscribe Subscribed
    • Sign up
    • Log in
    • Copy shortlink
    • Report this content
    • View post in Reader
    • Manage subscriptions
    • Collapse this bar