Cannon Hackett Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Researcher
unknown
Research Areas
Biography and Research Information
OverviewAI-generated summary
Cannon Hackett's research focuses on the development and application of advanced membrane technologies for water purification, particularly concerning the removal of microcystins and other chemical pollutants. Hackett has investigated the fabrication of polysulfone ultrafiltration membranes using green solvents, exploring how coagulation bath composition influences membrane properties. Further work includes the functionalization of membranes with materials like copper oxide and zwitterions to enhance fouling resistance. Hackett has also studied the synergistic effects of combining electrocoagulation with nanofiltration membranes for improved microcystin removal. Collaborations with researchers at the University of Arkansas at Fayetteville, including Chidambaram Thamaraiselvan, Rohana Liyanage, Mahsa Khalili, and Thomas McKean, have contributed to these investigations, as evidenced by shared publications. Hackett's work is supported by a body of research that includes studies on enzymatic linearization and ultrafiltration for microcystin remediation.
Metrics
- h-index: 4
- Publications: 7
- Citations: 94
Selected Publications
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Synergistic effect of electrocoagulation and antifouling nanofiltration membranes for microcystin removal (2025)
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Synergistic Effect of Electrocoagulation and Antifouling Nanofiltration Membranes for Microcystin Removal (2024)
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Polysulfone ultrafiltration membranes fabricated from green solvents: Significance of coagulation bath composition (2023)
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Ultrafiltration Membranes Functionalized with Copper Oxide and Zwitterions for Fouling Resistance (2022)
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Microcystin-LR Removal from Water via Enzymatic Linearization and Ultrafiltration (2022)
Collaboration Network
Top Collaborators
- Polysulfone ultrafiltration membranes fabricated from green solvents: Significance of coagulation bath composition
- Synergistic effect of electrocoagulation and antifouling nanofiltration membranes for microcystin removal
- Optimizing Fabrication of Polysulfone Ultrafiltration Membranes Using a Green Solvent, Cyrene
- Synergistic Effect of Electrocoagulation and Antifouling Nanofiltration Membranes for Microcystin Removal
- Polysulfone ultrafiltration membranes fabricated from green solvents: Significance of coagulation bath composition
- Ultrafiltration Membranes Functionalized with Copper Oxide and Zwitterions for Fouling Resistance
- Microcystin-LR Removal from Water via Enzymatic Linearization and Ultrafiltration
- Polysulfone ultrafiltration membranes fabricated from green solvents: Significance of coagulation bath composition
- Optimizing Fabrication of Polysulfone Ultrafiltration Membranes Using a Green Solvent, Cyrene
- Synergistic Effect of Electrocoagulation and Antifouling Nanofiltration Membranes for Microcystin Removal
- Polysulfone ultrafiltration membranes fabricated from green solvents: Significance of coagulation bath composition
- Optimizing Fabrication of Polysulfone Ultrafiltration Membranes Using a Green Solvent, Cyrene
- Synergistic effect of electrocoagulation and antifouling nanofiltration membranes for microcystin removal
- Synergistic Effect of Electrocoagulation and Antifouling Nanofiltration Membranes for Microcystin Removal
- Synergistic effect of electrocoagulation and antifouling nanofiltration membranes for microcystin removal
- Synergistic Effect of Electrocoagulation and Antifouling Nanofiltration Membranes for Microcystin Removal
- Synergistic effect of electrocoagulation and antifouling nanofiltration membranes for microcystin removal
- Synergistic Effect of Electrocoagulation and Antifouling Nanofiltration Membranes for Microcystin Removal
- Synergistic effect of electrocoagulation and antifouling nanofiltration membranes for microcystin removal
- Synergistic Effect of Electrocoagulation and Antifouling Nanofiltration Membranes for Microcystin Removal
- Microcystin-LR Removal from Water via Enzymatic Linearization and Ultrafiltration
- Microcystin-LR Removal from Water via Enzymatic Linearization and Ultrafiltration
- Microcystin-LR Removal from Water via Enzymatic Linearization and Ultrafiltration
- Microcystin-LR Removal from Water via Enzymatic Linearization and Ultrafiltration
- Microcystin-LR Removal from Water via Enzymatic Linearization and Ultrafiltration
- Ultrafiltration Membranes Functionalized with Copper Oxide and Zwitterions for Fouling Resistance
- Ultrafiltration Membranes Functionalized with Copper Oxide and Zwitterions for Fouling Resistance
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