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Relevance of Sustainable and Green-Synthesized Biogenic Iron Oxide Nanoparticles for Remediation of Emerging Contaminants from Water Ecosystems and Their Associated Health Concerns
Summary
Our drinking water can contain tricky pollutants like drug residues, "forever chemicals" (PFAS), and heavy metals that standard treatment plants struggle to remove. This review paper summarizes research on a promising eco-friendly solution: tiny iron oxide particles made using bacteria, fungi, algae, or plant waste, which act like magnetic sponges to soak up these contaminants from groundwater. While this approach shows real promise for cleaning up many pollutants, scientists still need to figure out how to tackle tougher contaminants like microplastics and certain pesticides before it can be widely used to protect our water
Groundwater pollution by emerging contaminants (ECs), including pharmaceuticals, per- and polyfluoroalkyl substances (PFAS), heavy metals, and disinfection byproducts, poses severe environmental and public health hazards. Conventional treatment approaches are unable to eliminate ECs, prompting the development of sustainable alternatives for eliminating ECs. This review provides insights into the synthesis of iron oxide nanoparticles (IONPs) using environmentally friendly methods, including systems based on bacteria, fungi, algae, plants, and biowaste. Biogenic IONPs are highly effective at removing ECs, including PFAS, certain medications, and organic pollutants. Their unusual physicochemical characteristics, high surface area, magnetic separation capability, and tunable reactivity make them promising candidates for groundwater cleanup. Future studies should focus on expanding the application of IONPs across a broader range of ECs, refining synthesis methods, and improving functionalization to enable targeted pollutant removal. Though knowledge gaps exist regarding their efficiency against some contaminants, e.g., persistent pesticides, nitrosamines, microplastics, and complex pharmaceutical metabolites, for which no effective biogenic IONPs are currently available, biogenic IONPs have shown great potential for removing several ECs. Biogenic IONPs are a long-lasting and effective way to mitigate health risks and groundwater contamination provided that they are continually improved.