Area of research
Immunology · Environmental Engineering
Research interest
Research interests include Atherosclerosis and Cardiovascular Diseases, Extraction and Separation Processes, Groundwater flow and contamination studies, and Microbial Applications in Construction Materials.
Impact of europium and samarium on growth and metabolism of two anaerobic wastewater microorganisms: Sporacetigenium mesophilum and Clostridium sporogenes.
Characterization of Protein Expression Patterns in <i>Clostridium sporogenes</i> upon Exposure to Rare Earth versus Nonrare Earth Elements.
Electrochemically Assisted (Bio)leaching of End-of-Life Lithium-Ion Batteries for Critical Metals Recovery
Electrochemically Assisted (Bio)leaching of End-of-Life Lithium-Ion Batteries for Critical Metals Recovery
Sustainable bioleaching of lithium-ion batteries for critical metal recovery: Process optimization through design of experiments and thermodynamic modeling
Techno-economic Analysis and Life Cycle Assessment of Gluconic Acid and Xylonic Acid Production from Waste Materials
Techno-economic Analysis and Life Cycle Assessment of Gluconic Acid and Xylonic Acid Production from Waste Materials
Sustainable bioleaching of lithium-ion batteries for critical materials recovery
Recycling rare earths: Perspectives and recent advances
Impacts of Gadolinium and Yttrium on the Performance and Microbial Community Composition of a Bench-Scale-Activated Sludge System
Beneficiation of REE: Prospects for Biotechnology Deployment
Complete Genome Sequence of Acidithiobacillus ferriphilus GT2, Isolated from Gold Mill Tailings.
Impacts of anthropogenic gadolinium on the activity of the ammonia oxidizing bacterium Nitrosomonas europaea.
Sustainable Bioleaching of Rare Earth Elements from Industrial Waste Materials Using Agricultural Wastes
Sustainable Bioleaching of Rare Earth Elements from Industrial Waste Materials Using Agricultural Wastes
Oxidized LDL (oxLDL) activates the angiotensin II type 1 receptor by binding to the lectin-like oxLDL receptor
Quadrature conductivity: A quantitative indicator of bacterial abundance in porous media
Precipitation of calcium carbonate and calcium phosphate under diffusion controlled mixing
CaCO<sub>3</sub> Precipitation, Transport and Sensing in Porous Media with In Situ Generation of Reactants
Final report for DOE Grant No. DE-SC0006609 - Persistence of Microbially Facilitated Calcite Precipitation as an in situ Treatment for Strontium-90
The Effect of the CO32- to Ca2+ Ion activity ratio on calcite precipitation kinetics and Sr2+partitioning
Field Investigations of Microbially Facilitated Calcite Precipitation for Immobilization of Strontium-90 and Other Trace Metals in the Subsurface (Field Report)