Hem Chandra Sharma
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.
Researcher
Unknown Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Hem Chandra Sharma's research focuses on the degradation of chemical pollutants in water, specifically investigating the effectiveness of biochar modified with iron compounds. His work explores the use of hematite and goethite, iron minerals, in conjunction with biochar to activate persulfate for the removal of sulfamethoxazole, an antibiotic. Sharma has published on biochar synthesis methods and the influence of solution matrix effects on the kinetics of sulfamethoxazole removal. His research also extends to the broader impacts of nanoparticles on biological systems, including their effects on seed germination. Sharma has authored four publications and has a citation count of 26, with an h-index of 3. He collaborates with Hao Chen at the University of Arkansas at Pine Bluff, with whom he shares two publications.
Metrics
- h-index: 3
- Publications: 4
- Citations: 29
Selected Publications
-
Biochar Modification with Hematite and Goethite for Efficient Persulfate Activation and Pollution Degradation (2022)
-
Biochar modification with hematite and goethite as efficient persulfate activation catalysts for sulfamethoxazole degradation: one-step biochar synthesis method and solution matrix effect on sulfamethoxazole removal kinetics (2022)
-
Nanoparticles and Their Impacts on Seed Germination (2021)
Collaboration Network
Top Collaborators
- Biochar modification with hematite and goethite as efficient persulfate activation catalysts for sulfamethoxazole degradation: one-step biochar synthesis method and solution matrix effect on sulfamethoxazole removal kinetics
- Nanoparticles and Their Impacts on Seed Germination
- Biochar Modification with Hematite and Goethite for Efficient Persulfate Activation and Pollution Degradation
- Biochar modification with hematite and goethite as efficient persulfate activation catalysts for sulfamethoxazole degradation: one-step biochar synthesis method and solution matrix effect on sulfamethoxazole removal kinetics
- Biochar Modification with Hematite and Goethite for Efficient Persulfate Activation and Pollution Degradation
- Nanoparticles and Their Impacts on Seed Germination
- Nanoparticles and Their Impacts on Seed Germination
- Nanoparticles and Their Impacts on Seed Germination
- Nanoparticles and Their Impacts on Seed Germination
Similar Researchers
Based on overlapping research topics