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- W2780476768 abstract "The current study highlights the preparation of iron modified natural sericite composite beads and its application for arsenic and lead treatment from petroleum industry wastewater effluent. The natural sericite material was altered by iron-oxide and then the modified sericite with the whole iron-oxide particles was encapsulated for the preparation of spherical shaped beads using natural biopolymer sodium alginate. The developed Fe-sericite composite beads were characterized by different characterization techniques. The arsenic and lead adsorption data were collected by optimizing the various adsorption affecting conditions in batch operations such as solution pH, arsenic and lead concentration, removal time and other important parameters. According to the observed results, the composite beads exhibited an in superior sorption capacity for the removal of arsenic and lead inside a varied choice of pH. Moreover, a variation in different concentration study demonstrated high percentage removal at various concentrations of arsenic and lead. The concentration dependent adsorption data obtained studied by Langmuir and Freundlich adsorption isotherm. Models. A kinetic data reasonably follows the pseudo-first and pseudo-second-order kinetic models additionally, the kinetic intra-particle diffusion models proved a noteworthy role in the sorption process. The detailed investigation confirms that the developed Fe-sericite composite beads must be an effective sustainable material for the treatment of petroleum industry wastewater contaminated with arsenic and lead." @default.
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- W2780476768 date "2017-04-01" @default.
- W2780476768 modified "2023-09-30" @default.
- W2780476768 title "Fe-sericite-alginate composite beads: Preparation characterization and eco-friendly application for removal of arsenate and lead from petroleum industry wastewater" @default.
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- W2780476768 doi "https://doi.org/10.1109/i2ct.2017.8226328" @default.
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