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Updated: Jan 13, 2026

Resource Recycling of Red Soil to Synthesize Fe2O3/FAU-type Zeolite Composite Material for Heavy Metal Removal
Published on: June 2, 2022
Sustainable wastewater treatment using novel zeolite-polymer (ZePol) composite materials
Tasmina Khandaker1, Ahmed B M Ibrahim2, Wael S Al-Rashed3
1Department of Chemistry, Khulna Khan Bahadur Ahsanullah University Khulna-9100 Bangladesh.
Abstract:
The emergence of effective, durable waste water treatment technology is of paramount importance due to the rising threat of toxic heavy metal pollution of water resources to human health as well as the environment. In order to improve multi-functional adsorption, we present the synthesis and performance of ZePol-4, a novel zeolite-polymer composite made from ETS-4 zeolite, chitosan, polyvinyl alcohol (PVA), and l-cysteine. The crystallinity, porosity, and functional group integrity of the composite were validated by structural and morphological characterization (XRD, SEM, and EDS). Excellent uptake capacities for important heavy metals were shown by batch adsorption experiments, with equilibrium adsorption capacities of 243.5 mg g-1 (Pb2+), 170.1 mg g-1 (Hg2+), 113.5 mg g-1 (Cu2+), 80.3 mg g-1 (Cd2+), and 45.3 mg g-1 (As3+). In accordance with this, ZePol-4 achieved high removal efficiencies in 60 minutes of 98% for Pb2+, 93% for Cd2+, 88% for Hg2+, 75% for As3+, and 70% for Cu2+. The composite required less extensive chemical adjustment because it worked well over a broad pH range, with optimal removal taking place close to neutral pH. The accuracy of the removal data was guaranteed by dual quantification using UV-vis and ICP-MS. Strong binding interactions and quick kinetics were made possible by the complementary contributions of amino, hydroxyl, and thiol groups through surface complexation and ion exchange. With its quick adsorption, high selectivity, and operational compatibility with actual environmental conditions, ZePol-4 shows great promise as a scalable, environmentally friendly, and highly effective material for tertiary wastewater treatment.
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