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Amine Modified Magnetic Diatomite Particles as an Effcicent Adsorbent for Pecticide Removal
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Pesticides are one of the most critical emerging contaminants which are highly toxic for the environment and have potential risk to human health. In this study, surface-modified magnetic diatomite particles (m-DE-APTES) have been suc-cessfully synthesized and used as a sorbent for the removal of endosulfan from an aqueous solution. Magnetic diatomite particles with surface modification were characterized by Fourier transform-infrared spectroscopy (FT-IR), scan-ning electron microscopy (SEM), energy dispersive X-ray (EDX), electron spin resonance (ESR), and surface area measurements. Characterization results sug-gest that magnetic diatomite has a high surface area and porous structure. In addition, m-DE-APTES has higher adsorption capacity (97.2 mg/g) for en-dosulfan pesticide than unmodified diatomite particles (DE) (16.6 mg/g). The adsorption data fit the Langmuir model (R2=0.9905), and the adsorption process took place spontaneously with the values of ΔGo as -2.576. In conclusion, the surface-modified diatomite particles are promising alternative adsorbents for pesticide removal from aqueous solutions.
Title: Amine Modified Magnetic Diatomite Particles as an Effcicent Adsorbent for Pecticide Removal
Description:
Pesticides are one of the most critical emerging contaminants which are highly toxic for the environment and have potential risk to human health.
In this study, surface-modified magnetic diatomite particles (m-DE-APTES) have been suc-cessfully synthesized and used as a sorbent for the removal of endosulfan from an aqueous solution.
Magnetic diatomite particles with surface modification were characterized by Fourier transform-infrared spectroscopy (FT-IR), scan-ning electron microscopy (SEM), energy dispersive X-ray (EDX), electron spin resonance (ESR), and surface area measurements.
Characterization results sug-gest that magnetic diatomite has a high surface area and porous structure.
In addition, m-DE-APTES has higher adsorption capacity (97.
2 mg/g) for en-dosulfan pesticide than unmodified diatomite particles (DE) (16.
6 mg/g).
The adsorption data fit the Langmuir model (R2=0.
9905), and the adsorption process took place spontaneously with the values of ΔGo as -2.
576.
In conclusion, the surface-modified diatomite particles are promising alternative adsorbents for pesticide removal from aqueous solutions.
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