Area of research
Pollution · Industrial and Manufacturing Engineering
Research interest
Research interests include Wastewater Treatment and Nitrogen Removal, Microbial Fuel Cells and Bioremediation, Constructed Wetlands for Wastewater Treatment, and Phosphorus and nutrient management.
Metagenomic analysis revealed community-level metabolic differences between full-scale EBPR and S2EBPR systems
Climate warming enhances biodiversity and stability of grassland soil phosphorus-cycling microbial communities
Distinct microdiversity of phosphate accumulating organisms (PAOs) between side-stream and conventional enhanced biological phosphorus removal (EBPR) systems with performance implications
Revisiting the role of Acinetobacter spp. in side-stream enhanced biological phosphorus removal (S2EBPR) systems
Side-Stream Enhanced Biological Phosphorus Removal (S2EBPR) enables effective phosphorus removal in a pilot-scale A-B stage shortcut nitrogen removal system for mainstream municipal wastewater treatment
Toward Integrating EBPR and the Short-Cut Nitrogen Removal Process in a One-Stage System for Treating High-Strength Wastewater
Intracellular polyphosphate length characterization in polyphosphate accumulating microorganisms (PAOs): Implications in PAO phenotypic diversity and enhanced biological phosphorus removal performance
Oligotyping and metagenomics reveal distinct Candidatus Accumulibacter communities in side-stream versus conventional full-scale enhanced biological phosphorus removal (EBPR) systems
Side-stream enhanced biological phosphorus removal (S2EBPR) process improves system performance - A full-scale comparative study
Survey of full‐scale sidestream enhanced biological phosphorus removal (S2EBPR) systems and comparison with conventional EBPRs in North America: Process stability, kinetics, and microbial populations