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Meeting 2024 TMS Annual Meeting & Exhibition
Symposium Composite Materials: Sustainable and Eco-Friendly Materials and Application
Presentation Title Removal of Cr(III) Ions from Simulated Hydrometallurgical Wastewater by Fe-MOF
Author(s) Hongfei Ma, Lulu Kou, Wenjuan Wang, Yanfang Huang, Guihong Han
On-Site Speaker (Planned) Hongfei Ma
Abstract Scope Wastewater containing Cr(III) ions in hydrometallurgy is likely to cause harm to the surrounding environment and the human body. In this paper, Fe-MOF was synthesized by a solvothermal method and employed as an adsorbent to remove Cr(III) ions from hydrometallurgical wastewater. The effects of initial concentration and pH on the chemical forms of Cr(III) were mainly evaluated, while the influence of adsorption time and solution pH on the removal of Cr(III) ions under different initial concentration conditions were comprehensively analyzed. Under a contact time of 2 h, pH 7.0, and concentration of 100 mg·L-1, the optimum adsorption efficiency of Cr(III) ions was 82.63%. The adsorption methods of Cr(III) by Fe-MOF were investigated by batch adsorption experiments and kinetic simulations, and the results suggested that Fe-MOF has a promising application in the treatment of high-concentration Cr(III)-containing waste liquids.
Proceedings Inclusion? Planned:
Keywords Other, Other, Other

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Artificial Marble From Waste Recycling: Physical and Mechanical Characterization
Assessment of the Tensile and Thermal Properties of Recycled Waste Plastics Composites
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Characterization of Ramie Fiber for Polymeric Composties to be Used in High Performance Bikes
Coaxial Layered Carbon Fibers of PAN/Glass Fibers via Dry-jet Wet Spinning Process
Comparative Analysis of Flexural Resistance of Epoxyde Composites Reinforced With Acai Fiber Powder
Design and Characterization of Kevlar/Epoxy Composites Infused with Silicon Carbide (SiC) - Zinc Oxide (ZnO) Nanofillers
Development and Characterization of Bio-epoxy by Cardanol for Polymeric Composites
Development of Eco-friendly Composite for High-performance Flooring by Coffee Grounds Waste
Development of Hard Coating Based in Eucalyptus Sawdust Waste in a Polymeric Composites
Effect of Plasma Low Temperature Plasma on Waste Carbon Fiber for Effective Recycling
Enhancing the Physico-mechanical Properties of Clay Bricks Using Snail Shell Ash as a Sustainable Building Material
Epoxy Matrix Reinforced With Kaolin for Production New Building Materials
Evaluation of Hard Polymeric Composites Coating Based in Granite Powder Waste
High Ampacity Aluminum-graphene Wires for Overhead Conductor Applications
Impact Evaluation of Corn Husk Reinforced Epoxy Composites
Influence of Car Glass Addition as a Replacement of Natural Aggregate on Mechanical and Thermal Properties of Concrete
Influence of the Use of Anti-bubble Additives on the Permeability and Porosity of Anticorrosive Coatings
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Magnetization of Al-based Alloys by Shear-assisted Solid Phase Processing
Material Developments for 3D/4D Additive Manufacturing (AM) Technologies
Mechanical Characterization of Polymeric Composites Reinforced by Thin Fique Fabric
Multi-walled Carbon Nanotubes and Graphene Oxide Decorated Pitch-derived Carbon Foam Composites for Enhanced Structural and Catalytic Performances
Nanocomposite Materials for Radionuclide Sequestration from Groundwater Environments
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New Circular, Sustainable Building Composite Material Made of Building Wastes
Photocatalytic Nitrate Destruction Studies in Complex Environments
Plastics-to-Carbons: Transforming Plastic Waste Into Diverse Morphologies
Recovery of Vanadium (IV) from Leaching Solution Using Fe-MOF Material
Recycling, Reuse and Conformed of Acrylonitrile Butadiene Styrene (ABS) From Weee Waste
Removal of Cr(III) Ions from Simulated Hydrometallurgical Wastewater by Fe-MOF
Stabilization of Aluminum Dross by Coating With PEG
Study of the Impact Behavior of Epoxy Matrix Composites With Granite Waste
Study on the Adsorption of Selenium-containing Wastewater by MIL-101-NH2
Synthesis and Characterization of Superabsorbent Polymer Hydrogels Containing Silicate Precursors to Internally Cure and Strengthen Cement
Technical Route to Develop High Tg Epoxy Composite That is Water Degradable at Low Temperature
Verification of the Tensile Strength of Polyester Matrix Laminated Composites Reinforced With Raffia, Jute and Glass Fibers

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