Efficient and comparative adsorption of trinitrotoluene on MOF MIL-100(Fe)-derived porous carbon/Fe composite adsorbents with rod-like morphology: Behavior, mechanism, and new perspectives - ScienceDirect
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Last updated 07 outubro 2024
Fe-Substituted Isoreticular Metal–Organic Framework for Efficient and Rapid Removal of Phosphate
Efficient and comparative adsorption of trinitrotoluene on MOF MIL-100(Fe)-derived porous carbon/Fe composite adsorbents with rod-like morphology: Behavior, mechanism, and new perspectives - ScienceDirect
Efficient and comparative adsorption of trinitrotoluene on MOF MIL-100(Fe)-derived porous carbon/Fe composite adsorbents with rod-like morphology: Behavior, mechanism, and new perspectives - ScienceDirect
Elvis MIENSAH, Nanjing University of Science and Technology, Nanjing, NJUST, Department of Environmental Science and Engineering
Functionalization strategies of metal-organic frameworks for biomedical applications and treatment of emerging pollutants: A review - ScienceDirect
Fe-metal-organic-framework/MnO2 nanowire/granular activated carbon nanostructured composites for enhanced As(III) removal from aqueous solutions - ScienceDirect
Nano-Porous Composites of Activated Carbon–Metal Organic Frameworks (Fe-BDC@AC) for Rapid Removal of Cr (VI): Synthesis, Adsorption, Mechanism, and Kinetics Studies
Nano-Porous Composites of Activated Carbon–Metal Organic Frameworks (Fe-BDC@AC) for Rapid Removal of Cr (VI): Synthesis, Adsorption, Mechanism, and Kinetics Studies
Effective Adsorption and Removal of Phosphate from Aqueous Solutions and Eutrophic Water by Fe-based MOFs of MIL-101
Functionalization strategies of metal-organic frameworks for biomedical applications and treatment of emerging pollutants: A review - ScienceDirect
Functionalization strategies of metal-organic frameworks for biomedical applications and treatment of emerging pollutants: A review - ScienceDirect
Tuning adsorption capacity of metal–organic frameworks with Al3+ for phosphorus removal: Kinetics, isotherm and regeneration - ScienceDirect
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