Area of research
Water Science and Technology · Pollution
Research interest
Research focused on Biochar and Environmental remediation, with related work in Transcriptome, Adsorption, WRKY protein domain. Notable publications include 'Crop-residues derived biochar: Synthesis, properties, characterization and application for the removal of trace elements in soils', 'Programmable synthesis of exfoliated biochar nanosheets for selective and highly efficient adsorption of thallium', and 'Modifying engineered nanomaterials to produce next generation agents for environmental remediation'.
Optimizing drying of municipal dewatered sludge using heat-assisted microorganisms and pig manure addition: A process and economic analysis
Transcriptomic and physiological analyses revealed nicotianamine enhances wheat tolerance to excess manganese
Physiological and Transcriptomic Analyses Reveal Commonalities and Specificities in Wheat in Response to Aluminum and Manganese
Comparative transcriptomic and physiological analyses unravel wheat source root adaptation to phosphorous deficiency
Modifying engineered nanomaterials to produce next generation agents for environmental remediation
Assessing the effectiveness of 3, 4-dimethylpyrazole phosphate (DMPP) inhibitor in mitigating N2O emissions from contrasting Cd-contaminated soils
Programmable synthesis of exfoliated biochar nanosheets for selective and highly efficient adsorption of thallium
Crop-residues derived biochar: Synthesis, properties, characterization and application for the removal of trace elements in soils
Programmable Synthesis of Exfoliated Biochar NanoSheets for Selective and Highly Efficient Adsorption of Thallium
Iron minerals inhibit the growth of <i>Pseudomonas brassicacearum</i> J12 via a free-radical mechanism: implications for soil carbon storage
Sorption of nalidixic acid onto micrometric and nanometric magnetites: Experimental study and modeling