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Chromium Removal Using a Basalt Rock Adsorbent in a Packed Bed Column for Efficient Environmental Protection
Kedir Yesuf Abdu1, Yassin Adem Endris1, Mudasir Akbar Shah2
1Department of Chemical engineering, School of Mechanical and Chemical Engineering, Kombolcha Institute of Technology, Wollo University, Wollo P.O. Box 208, Ethiopia.
Low-cost basalt rock effectively removes chromium(VI) from water. This study shows basalt
Area of Science:
- Environmental Science
- Materials Science
- Chemical Engineering
Background:
- Hexavalent chromium (Cr(VI)) contamination poses a significant environmental risk.
- Existing Cr(VI) removal methods face challenges in efficiency and cost-effectiveness.
Purpose of the Study:
- To evaluate the potential of basalt rock as a low-cost adsorbent for Cr(VI) removal.
- To characterize basalt rock and assess its performance in both batch and continuous adsorption systems.
Main Methods:
- Basalt rock was prepared via size reduction and activation, then characterized using XRD and FTIR.
- Batch adsorption experiments determined the maximum adsorption capacity (14 mg/g), fitting the Langmuir isotherm.
- Continuous adsorption was performed in a fixed-bed column to analyze operational parameters and regeneration.
Main Results:
- Characterization confirmed basalt rock's composition (SiO2, Al2O3) and functional groups suitable for adsorption.
- Batch adsorption capacity reached 14 mg/g, indicating monolayer adsorption.
- Fixed-bed column studies showed that increased depth and decreased flow rate improved performance; the adsorbent was reusable for four cycles, retaining 23% capacity.
Conclusions:
- Basalt rock is a promising, cost-effective adsorbent for Cr(VI) removal.
- The material demonstrates good performance in continuous flow systems.
- Further research could optimize basalt rock for large-scale water treatment applications.
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