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 25 março 2025
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
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
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
Metal–organic framework - 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
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
Composites of porous materials with ionic liquids: Synthesis, characterization, applications, and beyond - 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
Superior Performance of Mesoporous MOF MIL-100 (Fe) Impregnated with Ionic Liquids for CO2 Adsorption
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
PDF) A Green Synthesized Recyclable ZnO/MIL-101(Fe) For Rhodamine B Dye Removal via Adsorption and Photo-degradation under UV and Visible Light Irradiation
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
Membranes, Free Full-Text
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
Dually Charged MOF-Based Thin-Film Nanocomposite Nanofiltration Membrane for Enhanced Removal of Charged Pharmaceutically Active Compounds
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
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
Magnetic metal-organic framework MIL-100 (Fe)/polyethyleneimine composite as an adsorbent for the magnetic solid-phase extraction of fungicides and their determination using HPLC-UV

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