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Preliminary assessment of the performance of oyster shells and chitin materials as adsorbents in the removal of saxitoxin in aqueous solutions

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CHEMISTRY CENTRAL JOURNAL
卷 6, 期 -, 页码 -

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SPRINGEROPEN
DOI: 10.1186/1752-153X-6-86

关键词

Saxitoxin; Chitin; Oyster shell; Adsorption isotherm; Adsorption kinetic

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  1. Coordenacao de Aperfeicoamento de Pessoal em Nivel Superior (CAPES)
  2. Conselho Nacional de Desenvolvimento Cientifico e Tecnologico (CNPq)

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Background: This study evaluated the adsorption capacity of the natural materials chitin and oyster shell powder (OSP) in the removal of saxitoxin (STX) from water. Simplified reactors of adsorption were prepared containing 200 mg of adsorbents and known concentrations of STX in solutions with pH 5.0 or 7.0, and these solutions were incubated at 25 degrees C with an orbital shaker at 200 RPM. The adsorption isotherms were evaluated within 48 hours, with the results indicating a decrease in STX concentrations in different solutions (2-16 mu g/L). The kinetics of adsorption was evaluated at different contact times (0-4320 min) with a decrease in STX concentrations (initial concentration of 10 mu g/L). The sampling fractions were filtered through a membrane (0.20 mu m) and analyzed with high performance liquid chromatography to quantify the STX concentration remaining in solution. Results: Chitin and OSP were found to be efficient adsorbents with a high capacity to remove STX from aqueous solutions within the concentration limits evaluated (> 50% over 18 h). The rate of STX removal for both adsorbents decreased with contact time, which was likely due to the saturation of the adsorbing sites and suggested that the adsorption occurred through ion exchange mechanisms. Our results also indicated that the adsorption equilibrium was influenced by pH and was not favored under acidic conditions. Conclusions: The results of this study demonstrate the possibility of using these two materials in the treatment of drinking water contaminated with STX. The characteristics of chitin and OSP were consistent with the classical adsorption models of linear and Freundlich isotherms. Kinetic and thermodynamic evaluations revealed that the adsorption process was spontaneous (Delta G(ads) < 0) and favorable and followed pseudo-second-order kinetics.

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