Article ID Journal Published Year Pages File Type
4425516 Environmental Pollution 2011 7 Pages PDF
Abstract

A molecularly imprinted polymer (MIP) was synthesized by precipitation polymerization using diclofenac (DFC) as a template. Binding characteristics of the MIP were evaluated using equilibrium binding experiments. Compared to the non-imprinted polymer (NIP), the MIP showed an outstanding affinity towards DFC in an aqueous solution with a binding site capacity (Qmax) of 324.8 mg/g and a dissociation constant (Kd) of 3.99 mg/L. The feasibility of removing DFC from natural water by the MIP was demonstrated by using river water spiked with DFC. Effects of pH and humic acid on the selectivity and adsorption capacity of MIP were evaluated in detail. MIP had better selectivity and higher adsorption efficiency for DFC as compared to that of powdered activated carbon (PAC). In addition, MIP reusability was demonstrated for at least 12 repeated cycles without significant loss in performance, which is a definite advantage over single-use activated carbon.

► A MIP was synthesized by precipitation polymerization using DFC as template. ► The MIP had better selectivity and higher adsorption efficiency for DFC. ► The MIP is an effective method for selective removal of DFC from complex water. ► MIP reusability is a definite advantage over single-use activated carbon.

Related Topics
Life Sciences Environmental Science Environmental Chemistry
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