Heterocoagulated clay-derived adsorbents for phosphate decontamination from aqueous solution
2016
Abstract A series of nanocomposite adsorbents were prepared by heterocoagulation of negatively charged delaminated montmorillonite (M t ) and positively charged synthetic layered double hydroxide (LDH) colloids with different LDH loading amounts. The mineralogy and physicochemical properties of the resulting nanocomposites were characterized. Their potential applications for phosphate (P) removal from aqueous solution, as a function of P concentration (2.5–200 mg/L), contact time (1 min–48 h) and pH (3–10), were evaluated by using batch adsorption modes. It was found that the adsorption data could be well described by both Freundlich and Langmuir isotherm models. The maximum adsorption capacity of three different LDH heterocoagulated montmorillonites (LDH-M ts ) for P removal was found to increase with LDH loadings, reaching 12.6, 16.2 and 23.3 mg/g respectively; Adsorption kinetic data revealed that 90% of adsorption onto LDH-M ts was completed within 1 h (h) and the adsorption process could be well described by the pseudo-second-order model. These results demonstrated that heterocoagulation of M t and LDH could preserve the adsorption capacity of LDH for P and enhance the stability of both clay minerals, and LDH-M ts could be effectively used as a potential promising filtration medium for P removal.
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