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Boron adsorption from aqueous solutions using chemically activated kaolin clay adsorbents kinetics isotherm and thermodynamic studies

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Al-Azhar University – Gaza
Al Haj Ahmed A.Y.; Najar H.A.; Ghalwa N.A.
Al Haj Ahmed, Abdullah Y. (58593485100); Najar, Husam Al (15076608600); Ghalwa, Nasser Abu (20733857600)
58593485100; 15076608600; 20733857600
2025
Scientific Reports
Boron adsorption from aqueous solutions using chemically activated kaolin clay adsorbents kinetics isotherm and thermodynamic studies
15
1
Nature Research
43607
Water Technology PhD Pragram at Islamic University and Al azhar University, Gaza, Palestine; Department of Environmental Engineering, Facultly of Engineering, Islamic University, Gaza, Palestine; Department of Chemistry, Facultly of science, Al Azhar University, Gaza, Palestine
Al Haj Ahmed A.Y., Water Technology PhD Pragram at Islamic University and Al azhar University, Gaza, Palestine; Najar H.A., Department of Environmental Engineering, Facultly of Engineering, Islamic University, Gaza, Palestine; Ghalwa N.A., Department of Chemistry, Facultly of science, Al Azhar University, Gaza, Palestine
A.Y. Al Haj Ahmed; Water Technology PhD Pragram at Islamic University and Al azhar University, Gaza, Palestine; email: abdullahhaj1983@gmail.com
0
10.1038/s41598-025-26758-8
Activated kaolin; Adsorption efficiency; Efficient adsorbents; Optimization
adsorbent; boron; hydrochloric acid; kaolin; phosphoric acid; adsorption; aqueous solution; article; Brunauer Emmett Teller method; clay; contact time; Fourier transform infrared spectrometer; Fourier transform infrared spectroscopy; ground water; human; isotherm; kinetics; long term exposure; pH; porosity; reliability; surface area; temperature; thermodynamics; water; water treatment