Studies on adsorption properties of magnetic composite prepared by one-pot method for Cd(II), Pb(II), Hg(II), and As(III): Mechanism and practical application in food

JOURNAL OF HAZARDOUS MATERIALS(2024)

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Abstract
A one -pot synthesis afforded a magnetic, crosslinked polymer adsorbent (m -P6) with a variety of functional groups to realize simultaneous adsorption of Cd2+, Pb2+, Hg2+, and As3+. The material was characterized by TEM-EDS, XRD, FT-IR, VSM, and XPS. Kinetic and isothermal analyses suggested mainly chemisorption processes of heavy metal ions that form multiple layers on heterogeneous surfaces. Theoretical adsorption capacities calculated by a pseudo -2nd -order kinetic model and the Sips isothermal model were 282.88 mg/g for Cd2+, 326.18 mg/g for Pb2+, 117.85 mg/g for Hg2+, and 320.29 mg/g for As3+. m -P6 not only can efficiently adsorb divalent heavy metals (Cd2+, Pb2+, Hg2+), but also demonstrate a process of adsorption -driven catalytic oxidation by single -electron transfer (SET) from As3+ to As5+. In application, in addition to adsorption in water, m -P6 is capable of minimizing matrix interference, and extracting trace heavy metals in a complex environment (cereal) through easy operations for improving the detection accuracy, as well as it is potential for application in detection of trace heavy metals in foodstuffs. m -P6 can be readily regenerated and efficiently recycled for 5 cycles using eluent E12 and dilute acid.
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Key words
Multiple -ion adsorption,Heavy metals,Magnetic material,Trace concentration,Matrix effect
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