受邀组了个专辑,如题,感兴趣的可以看看https://www.mdpi.com/journal/molecules/special_issues/2J337CG56C
相关方向:Porous Carbons for CO2 Adsorption and Capture
We invite contributions on topics including (but not limited to) the following:
Synthesis and Fabrication of Porous Carbons
Activated carbons from biomass, waste materials, and other precursors;
Carbon nanomaterials (e.g., carbon nanotubes, graphene oxide) for CO2 capture;
Template-assisted synthesis and porous carbon design;
Porous carbons from industrial by-products and sustainable sources.
Surface Functionalization and Modification
Doping with heteroatoms (N, O, S) to enhance CO2 uptake;
Functionalization for selective adsorption and increased capacity;
Pore size engineering and control for optimized CO2
Characterization Techniques
BET surface area and porosity analysis;
Microscopic and spectroscopic techniques (SEM, TEM, XPS, FTIR);
Characterization of CO2 adsorption isotherms, kinetics, and thermodynamics.
CO2 Adsorption Mechanisms
Physisorption vs. chemisorption mechanisms for CO2 capture;
Effect of environmental factors (temperature, pressure, humidity) on CO2 uptake;
Adsorption selectivity for CO2 over other gasses (e.g., N2, CH4).
Performance and Efficiency of CO2 Capture
Adsorption capacity and CO2 selectivity;
Regeneration and reusability of porous carbons for long-term performance;
Energy efficiency and environmental impact of CO2 capture processes.
Applications of Porous Carbons in CO2 Capture Technologies
Direct air capture (DAC);
Post-combustion CO2 capture in power plants and industrial processes;
Carbon capture and utilization (CCU) and value-added products;
Integration with renewable energy systems for enhanced CO2
Emerging Trends and Future Directions
Hybrid materials, combining porous carbons with other adsorbents (e.g., MOFs, COFs);
Machine learning and AI in material design and optimization for CO2 capture; |