ZnFe2O4/Zeolite Nanocomposites for Sorption Extraction of Cu2+ from Aqueous Medium

Author:

Tomina Elena12,Novikova Lyudmila1ORCID,Kotova Alexandra1,Meshcheryakova Anna2,Krupskaya Victoria34ORCID,Morozov Ivan3ORCID,Koroleva Tatiana34,Tyupina Ekaterina56ORCID,Perov Nikolai7ORCID,Alekhina Yuliya7

Affiliation:

1. Department of Chemistry, Voronezh State University of Forestry and Technologies Named after G.F. Morozov, 8 Timiryazeva Str., Voronezh 394087, Russia

2. Department of Materials Science and Nanosystems Industry, Voronezh State University, 1 Universitetskaya pl., Voronezh 396036, Russia

3. Institute of Geology of Ore Deposits, Petrography, Mineralogy and Biochemistry RAS, 35, Staromonetny Per., Moscow 119017, Russia

4. Faculty of Geology, Department of Engineering and Environmental Geology, Lomonosov Moscow State University, GSP-1, Leninskie Gory, Moscow 119991, Russia

5. Department of High Energy Chemistry and Radioecology, Mendeleev University of Chemical Technology of Russia, 9, Miusskaya Square, Moscow 125047, Russia

6. Department of Closed Nuclear Fuel Cycle Technology, National Research Nuclear University «MEPhI», Kashirskoe Highway 31, Moscow 115409, Russia

7. Faculty of Physics, Department of Magnetism, Lomonosov Moscow State University, GSP-1, Leninskie Gory, Moscow119991, Russia

Abstract

In order to enhance the efficiency of heavy metal ion extraction from aqueous medium, new nanocomposite magnetic sorbents were synthesized on the base of natural zeolite (Zt) and nanoparticles of ZnFe2O4 (F). The composition, structure and physical–chemical properties of new composites with 2% (Zt-2F), 8% (Zt-8F) and 16% (Zt-16F) of zinc ferrite were characterized by XRD, BET adsorption–desorption of nitrogen, SEM with elemental mapping, TEM and magnetometry. The sorption capacity of materials was assessed towards Cu2+ ions in aqueous solutions, for which kinetic and equilibrium features of sorption were established. The maximal sorption capacity (amax, mg/g) of the studied materials increased in the order: Zt (19.4) < Zt-2F (27.3) < Zt-8F (30.2) < Zt-16F (32.8) < ZnFe2O4 (161.3). The kinetics of the sorption process followed a pseudo-second order kinetic model. The sorption equilibrium at zinc ferrite was successfully described by the Langmuir model, while the Freundlich model better fitted the sorption equilibrium on zeolite and composites. The efficiency of Cu2+ ion extraction from 320 mg/dm3 aqueous solution was 63% for composite Zt-16F and 100% for a sample of ZnFe2O4. It was established that the proposed composite sorbents provide the operation of several cycles without regeneration, they can be easily recycled with 0.1 N HCl solution and are capable of magnetic separation. The advantages of new composites and the proposed method of synthesis allow recommending these materials as effective sorbents of heavy metals from wastewater.

Funder

Russian Science Foundation

methodological developments of the detailed identification of the mineral composition

Publisher

MDPI AG

Subject

General Medicine

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