Mojtaba Abolhassani Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Researcher
faculty
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
Mojtaba Abolhassani's research focuses on the electrochemical treatment of wastewater, with a particular emphasis on nutrient removal and water quality improvement. His work investigates methods for removing ammonia and other nutrients from various wastewater sources, including those from natural water bodies and aquaculture operations. He has studied the efficiency of electrochemical reactors and the impact of anode degradation on energy demand and struvite precipitation, a process used for nutrient recovery.
Abolhassani also explores membrane technologies for water treatment, including the functionalization of ultrafiltration membranes to enhance fouling resistance. His research extends to disinfection techniques for irrigation water using titanium electrodes and the comparative study of trichloroethylene removal by different carbon materials. His scholarship metrics include an h-index of 12, with 63 publications and over 1,000 citations. He has collaborated with several researchers at the University of Arkansas at Fayetteville, including László Kékedy‐Nagy and Lauren F. Greenlee, with whom he has co-authored 10 publications.
Metrics
- h-index: 12
- Publications: 63
- Citations: 1,032
Selected Publications
-
Pressure-driven membrane nutrient preconcentration for down-stream electrochemical struvite recovery (2022)
-
(Digital Presentation) Electrochemical Recovery of Ammonium and Phosphate from Municipal Wastewater Sources: Kinetics and Water Chemistry (2022)
-
Ultrafiltration Membranes Functionalized with Copper Oxide and Zwitterions for Fouling Resistance (2022)
-
An electrochemical study of ammonium dihydrogen phosphate on Mg and Mg alloy electrodes (2021)
-
Disinfection of Irrigation Water using Titanium Electrodes (2021)
-
The Electrochemistry of Ammonium Dihydrogen Phosphate, Disodium Phosphate, Ammonium Chloride on Mg-based and Polycrystalline Pt Electrodes (2021)
-
Electrochemical Ammonia Removal and Disinfection of Aquaculture Wastewater using Batch and Flow Reactors incorporating PtRu/Graphite Anode and Graphite Cathode (2021)
-
Electroless Production of Fertilizer (Struvite) and Hydrogen from Synthetic Agricultural Wastewaters (2021)
-
Electrochemical nutrient removal from natural wastewater sources and its impact on water quality (2021)
-
The effect of anode degradation on energy demand and production efficiency of electrochemically precipitated struvite (2021)
-
Comparative study of trichloroethylene removal by different carbons and FeNi-carbon composites (2021)
-
Disinfection of Irrigation Water Using Titanium Electrodes (2021)
-
The electrochemistry of ammonium dihydrogen phosphate, disodium phosphate, ammonium chloride on Mg‐based and polycrystalline Pt electrodes (2021)
-
Electrochemical ammonia removal and disinfection of aquaculture wastewater using batch and flow reactors incorporating PtRu/graphite anode and graphite cathode (2021)
-
An Electrochemical Study of Ammonium Dihydrogen Phosphate on Mg and Mg Alloy Electrodes (2021)
Collaboration Network
Top Collaborators
- Electrochemical nutrient removal from natural wastewater sources and its impact on water quality
- Electrochemical ammonia removal and disinfection of aquaculture wastewater using batch and flow reactors incorporating PtRu/graphite anode and graphite cathode
- The effect of anode degradation on energy demand and production efficiency of electrochemically precipitated struvite
- Ultrafiltration Membranes Functionalized with Copper Oxide and Zwitterions for Fouling Resistance
- An Electrochemical Study of Ammonium Dihydrogen Phosphate on Mg and Mg Alloy Electrodes
Showing 5 of 16 shared publications
- Electrochemical nutrient removal from natural wastewater sources and its impact on water quality
- The effect of anode degradation on energy demand and production efficiency of electrochemically precipitated struvite
- An Electrochemical Study of Ammonium Dihydrogen Phosphate on Mg and Mg Alloy Electrodes
- Pressure-driven membrane nutrient preconcentration for down-stream electrochemical struvite recovery
- The electrochemistry of ammonium dihydrogen phosphate, disodium phosphate, ammonium chloride on Mg‐based and polycrystalline Pt electrodes
Showing 5 of 10 shared publications
- Electrochemical nutrient removal from natural wastewater sources and its impact on water quality
- The effect of anode degradation on energy demand and production efficiency of electrochemically precipitated struvite
- An Electrochemical Study of Ammonium Dihydrogen Phosphate on Mg and Mg Alloy Electrodes
- The electrochemistry of ammonium dihydrogen phosphate, disodium phosphate, ammonium chloride on Mg‐based and polycrystalline Pt electrodes
- (Digital Presentation) Electrochemical Recovery of Ammonium and Phosphate from Municipal Wastewater Sources: Kinetics and Water Chemistry
Showing 5 of 8 shared publications
- Electrochemical nutrient removal from natural wastewater sources and its impact on water quality
- Electrochemical ammonia removal and disinfection of aquaculture wastewater using batch and flow reactors incorporating PtRu/graphite anode and graphite cathode
- The effect of anode degradation on energy demand and production efficiency of electrochemically precipitated struvite
- Pressure-driven membrane nutrient preconcentration for down-stream electrochemical struvite recovery
- (Digital Presentation) Electrochemical Recovery of Ammonium and Phosphate from Municipal Wastewater Sources: Kinetics and Water Chemistry
Showing 5 of 7 shared publications
- Electrochemical ammonia removal and disinfection of aquaculture wastewater using batch and flow reactors incorporating PtRu/graphite anode and graphite cathode
- Pressure-driven membrane nutrient preconcentration for down-stream electrochemical struvite recovery
- Disinfection of Irrigation Water Using Titanium Electrodes
- Pressure-Driven Membrane Nutrient Preconcentration for Down-Stream Electrochemical Struvite Recovery
- Electrochemical Ammonia Removal and Disinfection of Aquaculture Wastewater using Batch and Flow Reactors incorporating PtRu/Graphite Anode and Graphite Cathode
Showing 5 of 6 shared publications
- Electrochemical ammonia removal and disinfection of aquaculture wastewater using batch and flow reactors incorporating PtRu/graphite anode and graphite cathode
- Disinfection of Irrigation Water Using Titanium Electrodes
- Electrochemical Ammonia Removal and Disinfection of Aquaculture Wastewater using Batch and Flow Reactors incorporating PtRu/Graphite Anode and Graphite Cathode
- Disinfection of Irrigation Water using Titanium Electrodes
- Electrochemical ammonia removal and disinfection of aquaculture wastewater using batch and flow reactors incorporating PtRu/graphite anode and graphite cathode
- Disinfection of Irrigation Water Using Titanium Electrodes
- Electrochemical Ammonia Removal and Disinfection of Aquaculture Wastewater using Batch and Flow Reactors incorporating PtRu/Graphite Anode and Graphite Cathode
- Disinfection of Irrigation Water using Titanium Electrodes
- Electrochemical ammonia removal and disinfection of aquaculture wastewater using batch and flow reactors incorporating PtRu/graphite anode and graphite cathode
- Disinfection of Irrigation Water Using Titanium Electrodes
- Electrochemical Ammonia Removal and Disinfection of Aquaculture Wastewater using Batch and Flow Reactors incorporating PtRu/Graphite Anode and Graphite Cathode
- Disinfection of Irrigation Water using Titanium Electrodes
- Pressure-driven membrane nutrient preconcentration for down-stream electrochemical struvite recovery
- Disinfection of Irrigation Water Using Titanium Electrodes
- Pressure-Driven Membrane Nutrient Preconcentration for Down-Stream Electrochemical Struvite Recovery
- Disinfection of Irrigation Water using Titanium Electrodes
- Electrochemical nutrient removal from natural wastewater sources and its impact on water quality
- (Digital Presentation) Electrochemical Recovery of Ammonium and Phosphate from Municipal Wastewater Sources: Kinetics and Water Chemistry
- Electrochemical nutrient removal from natural wastewater sources and its impact on water quality
- (Digital Presentation) Electrochemical Recovery of Ammonium and Phosphate from Municipal Wastewater Sources: Kinetics and Water Chemistry
- Pressure-driven membrane nutrient preconcentration for down-stream electrochemical struvite recovery
- Pressure-Driven Membrane Nutrient Preconcentration for Down-Stream Electrochemical Struvite Recovery
- Pressure-driven membrane nutrient preconcentration for down-stream electrochemical struvite recovery
- Electroless Production of Fertilizer (Struvite) and Hydrogen from Synthetic Agricultural Wastewaters
- Comparative study of trichloroethylene removal by different carbons and FeNi-carbon composites
- Comparative study of trichloroethylene removal by different carbons and FeNi-carbon composites
Similar Researchers
Based on overlapping research topics