Abstract

BackgroundDiclofenac (DCF), a recalcitrant pharmaceutical compound, poses severe environmental concerns due to several health hazards. The Fenton, photo-Fenton, and photo-Fenton-like processes are popular advanced oxidation processes for eliminating toxins from water bodies. Due to its high reactivity and surface properties, nanotechnology has opened newer technological advances in the Fenton-like advanced treatment processes. MethodA facile and one-pot synthesis produces the nanocomposite materials. The natural phytochemicals, in situ, produce the nanoparticles of Fe(NPs) and Ag(NPs), and bentonite is supported with these nanoparticles to create an innovative heterojunction nanocatalyst BN@(Fe(NPs)+(AgNPs)). Additionally, the batch investigations utilize these materials in the photo-Fenton-like degradation of diclofenac in aqueous mediums. Significant findingsThe heterojunction nanocatalyst showed synergistic effects in the remediation of DCF. The nanocatalyst is highly efficient in degrading the DCF (2.0 mg L−1) and removes 83 and 70% of DCF within 2 h under UV-A and LED light irradiations, respectively. Interestingly, the degradation process mineralizes DCF to 74% under UV-A irradiation. Moreover, degrading DCF in a heterogeneous light-assisted Fenton-like process was favorably influenced by increased Fe(II) concentration in the bulk solution. The BN@(Fe(NPs)+Ag(NPs)) nanocatalyst possessed reasonably high stability and reusability for practical applications. Further, the nanocatalyst showed relatively high selectivity in the degradation of DCF using two different natural water samples.

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