Developing low-cost, environmentally friendly adsorbents is crucial for sustainable wastewater treatment and remediation of global wastewater pollution. CaO is a good adsorbent due to its high reactivity with CO2, low cost, and high adsorption capacity. However, its practical implications are constrained by rapid deactivation from particle sintering and poor reversibility, limiting its application. In this study, we used a straightforward & sustainable procedure to create calcium oxide nanoparticles (CaO NPs) by thermally decomposing CaCO3 derived from waste eggshells. FESEM was used to analyze the nanoparticles' size & chemical composition before they were used to adsorb Congo Red (CR) dye from aqueous solutions. Results indicated that their nano-sized structure, strong reactivity, and surface hydroxyl groups were responsible for their 99.40% removal efficiency and max 94.7 mg/g adsorption capacity in just one hour. Adsorption study was made by the Langmuir isotherm model & the Freundlich isotherm model of adsorption (R2 = 0.96, & R2 = Developing low-cost & environment-friendly adsorbents is crucial for sustainable wastewater treatment and also remediation of global wastewater pollution. CaO is a good adsorbent due to its high reactivity with CO2, low cost, and high adsorption capacity. However, its practical implications are constrained by rapid deactivation from particle sintering and poor reversibility, limiting its application. In this study, we used a straightforward & sustainable procedure to create calcium oxide nanoparticles (CaO NPs) by thermally decomposing CaCO3 derived from waste eggshells. FESEM was used to analyze the nanoparticles' size & chemical composition before they were used to adsorb Congo Red (CR) dye from aqueous solutions. Results indicated that their nano-sized structure, strong reactivity, and surface hydroxyl groups were responsible for their 99.40% removal efficiency and max 94.7 mg/g adsorption capacity in just one hour. Adsorption study was made by the Langmuir isotherm model & the Freundlich isotherm model of adsorption (R2 = 0.96, & R2 =
Published in: 8th IEOM Bangladesh International Conference on Industrial Engineering and Operations Management, Dhaka, Bangladesh
Publisher: IEOM Society International
Date of Conference: December 20
-21
, 2025
ISBN: 979-8-3507-4441-5
ISSN/E-ISSN: 2169-8767