2023
Kogler, A., Sharma, N., Tiburcio, D., Gong, M., Miller, D., Williams, K., Liu, Matthew., & Tarpeh, W. Long-term Robustness and Failure Mechanisms of Electrochemical Nitrogen Recovery (Submitted to ACS Environmental Au) (Preprint available at ChemRxiv)
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Satpathy, A., Sharma, N., Pan, W., Catalano, J. G., & Giammar, D. E. (2023). Exchange between Dissolved U (VI) and Adsorbed and Precipitated Forms of Solid-Associated U. ACS Earth and Space Chemistry, 7(8), 1528-1535.
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Sharma, N., Yan, J., Flynn, E. D., Catalano, J. G., & Giammar, D. E. (2023). Solid–Water Partitioning and Speciation of Trace Metal Micronutrients in Wetland Soils and Stream Sediments. ACS Earth and Space Chemistry.
2022
Sharma, N., Wang, Z., Catalano, J. G., & Giammar, D. E. (2022). Dynamic Responses of Trace Metal Bioaccessibility to Fluctuating Redox Conditions in Wetland Soils and Stream Sediments. ACS Earth and Space Chemistry.
Sharma, N., Flynn, E. D., Catalano, J. G., & Giammar, D. E. (2022). Copper availability governs nitrous oxide accumulation in wetland soils and stream sediments. Geochimica et Cosmochimica Acta.
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2021
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2020
Catalano, J. G., Cromptom, N. M., Hasenmueller, E. A., Chambers, L. G., Bradley, A. S., Flynn, E. D., ... & Nickerson, R. (2020). Trace Metal Content and Speciation, Water and Soil Chemistry, and Methane Production for a Wetland in Missouri (September 2015) and in Florida (January 2016) (No. ess-dive-95c6d727069bbd4-20200521T212021081206). Environmental System Science Data Infrastructure for a Virtual Ecosystem (ESS-DIVE)(United States); Trace Metal Dynamics and Limitations on Biogeochemical Cycling in Wetland Soils and Hyporheic Zones, PI Jeffrey G. Catalano.
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2019
Sharma, N., Fortner, J., & Giammar, D. (2019, March). U (VI) removal using rhamnolipid stabilized iron oxide nanoparticles. In ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY (Vol. 257). 1155 16TH ST, NW, WASHINGTON, DC 20036 USA: AMER CHEMICAL SOC.
2018
Ghosh, A., Sharma, N., Li, W., & Fortner, J. (2018, August). Adsorption of rhamnolipid biosurfactant and its effect on the aggregation kinetics of iron oxide (Fe3O4) nanoparticles in monovalent and divalent electrolyte solutions. In ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY (Vol. 256). 1155 16TH ST, NW, WASHINGTON, DC 20036 USA: AMER CHEMICAL SOC.