Amita Nakarmi
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Senior Scientist/ Principal Investigator
Also affiliated: University of Arkansas System (2020); Nepal Academy of Science and Technology (2015)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Amita Nakarmi's research focuses on environmental remediation and the application of nanomaterials. Her work investigates methods for removing pollutants, such as phosphorus, from contaminated water sources using various technologies, including adsorption. Nakarmi also studies the health, safety, and economic aspects of surface-modified nanomaterials, particularly in the context of their catalytic applications. Her publication record includes work on conventional and advanced remediation technologies and the assessment of nanomaterials for catalytic uses. Nakarmi's scholarship metrics include an h-index of 6, with a total of 10 publications and 291 citations, indicating recent activity in her field.
Metrics
- h-index: 6
- Publications: 10
- Citations: 302
Positions
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Senior Scientist/ Principal Investigator 2021–presentBaoNano LLC ORCID
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Senior Scientist/ Principal Investigator publications 2018–2022University of Arkansas at Little Rock ORCID
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Chemist I 2020–2021ATC Scientific Chromatography ORCID
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Graduate Assistant 2015–2020University of Arkansas at Little Rock Departmant of Chemistry ORCID
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Research Assistant 2013–2014Nepal Academy of Science and Technology Department of Technology ORCID
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Quality Analyst 2007–2009Simca Laboratories Pvt. Ltd Quality Control ORCID
Selected Publications
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Contributors (2022)
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Assessment of health, safety, and economics of surface-modified nanomaterials for catalytic applications (2022)
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Applications of conventional and advanced technologies for phosphorus remediation from contaminated water (2021)
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Removal and Recovery of Phosphorus from Contaminated Water Using Novel, Reusable, Renewable Resource-Based Aluminum/Cerium Oxide Nanocomposite (2020)
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Groundwater pollution: Occurrence, detection, and remediation of organic and inorganic pollutants (2020)
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Benign zinc oxide betaine-modified biochar nanocomposites for phosphate removal from aqueous solutions (2020)
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Phosphate removal from wastewater using novel renewable resource-based, cerium/manganese oxide-based nanocomposites (2020)
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Novel reusable renewable resource-based iron oxides nanocomposites for removal and recovery of phosphate from contaminated waters (2018)
Collaboration Network
Top Collaborators
- Benign zinc oxide betaine-modified biochar nanocomposites for phosphate removal from aqueous solutions
- Phosphate removal from wastewater using novel renewable resource-based, cerium/manganese oxide-based nanocomposites
- Removal and Recovery of Phosphorus from Contaminated Water Using Novel, Reusable, Renewable Resource-Based Aluminum/Cerium Oxide Nanocomposite
- Novel reusable renewable resource-based iron oxides nanocomposites for removal and recovery of phosphate from contaminated waters
- Applications of conventional and advanced technologies for phosphorus remediation from contaminated water
- Groundwater pollution: Occurrence, detection, and remediation of organic and inorganic pollutants
- Benign zinc oxide betaine-modified biochar nanocomposites for phosphate removal from aqueous solutions
- Applications of conventional and advanced technologies for phosphorus remediation from contaminated water
- Assessment of health, safety, and economics of surface-modified nanomaterials for catalytic applications
- Contributors
- Benign zinc oxide betaine-modified biochar nanocomposites for phosphate removal from aqueous solutions
- Applications of conventional and advanced technologies for phosphorus remediation from contaminated water
- Assessment of health, safety, and economics of surface-modified nanomaterials for catalytic applications
- Contributors
- Benign zinc oxide betaine-modified biochar nanocomposites for phosphate removal from aqueous solutions
- Phosphate removal from wastewater using novel renewable resource-based, cerium/manganese oxide-based nanocomposites
- Removal and Recovery of Phosphorus from Contaminated Water Using Novel, Reusable, Renewable Resource-Based Aluminum/Cerium Oxide Nanocomposite
- Removal and Recovery of Phosphorus from Contaminated Water Using Novel, Reusable, Renewable Resource-Based Aluminum/Cerium Oxide Nanocomposite
- Novel reusable renewable resource-based iron oxides nanocomposites for removal and recovery of phosphate from contaminated waters
- Phosphate removal from wastewater using novel renewable resource-based, cerium/manganese oxide-based nanocomposites
- Removal and Recovery of Phosphorus from Contaminated Water Using Novel, Reusable, Renewable Resource-Based Aluminum/Cerium Oxide Nanocomposite
- Assessment of health, safety, and economics of surface-modified nanomaterials for catalytic applications
- Contributors
- Novel reusable renewable resource-based iron oxides nanocomposites for removal and recovery of phosphate from contaminated waters
- Phosphate removal from wastewater using novel renewable resource-based, cerium/manganese oxide-based nanocomposites
- Phosphate removal from wastewater using novel renewable resource-based, cerium/manganese oxide-based nanocomposites
- Benign zinc oxide betaine-modified biochar nanocomposites for phosphate removal from aqueous solutions
- Benign zinc oxide betaine-modified biochar nanocomposites for phosphate removal from aqueous solutions
- Benign zinc oxide betaine-modified biochar nanocomposites for phosphate removal from aqueous solutions
- Groundwater pollution: Occurrence, detection, and remediation of organic and inorganic pollutants
- Removal and Recovery of Phosphorus from Contaminated Water Using Novel, Reusable, Renewable Resource-Based Aluminum/Cerium Oxide Nanocomposite
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