Exploring the Structural Characteristics and Adsorption Capabilities of Cost-effective N- doped Activated Carbon Derived from Waste Biomass for CO2 Adsorption
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Elsevier BV
Reference78 articles.
1. Insightful textural/morphological evaluation of cost-effective and highly sustainable Ca-Zr-O nanosorbent modified with the waste date kernel as a biomass pore-former for high-temperature CO2 capture;Heidari;Sustainable Materials and Technologies,2023
2. Investigation of H2O2/UV advanced oxidation process on the removal rate of coliforms from the industrial effluent: A pilot-scale study;Ashrafivala;International Journal of Hydrogen Energy,2022
3. Eco-friendly, sustainable and porous eggshell/tea waste-derived CaO nanoparticles as a high-temperature CO2 sorbent: Fabrication and textural/morphological evaluation;Heidari;Journal of Industrial and Engineering Chemistry,2024
4. Air pollution in major Polish cities in the period 2005–2021: Intensity, effects and attempts to reduce it;Zgłobicki;Environmental Research,2024
5. Waste derived modified biochar as promising functional material for enhanced water remediation potential;Singh;Environmental Research,2023
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