2016•Journal of Advanced Oxidation TechnologiesRequires access

Persulfate and Hydrogen Peroxide-Activated Degradation of Bisphenol A with Nano-scale Zero-valent Iron and Aluminum

Merve Dogan, Tugce Ozturk, Tuğba Ölmez-Hancı, Idil Arslan‐Alaton

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Abstract

Abstract In the present study, hydrogen peroxide (HP) and persulfate (PS)-activated nanoscale zero-valent iron (nZVI) and zero-valent aluminum (nZVAl) heterogeneous treatment systems (nZVI/HP-PS and nZVAl/HP-PS) were investigated for the removal of 20 mg/L (88 μM) aqueous Bisphenol A (BPA). Oxidation with HP and PS in the absence of nanoparticles did not cause BPA degradation, whereas the nZVI/O

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Abstract In the present study, hydrogen peroxide (HP) and persulfate (PS)-activated nanoscale zero-valent iron (nZVI) and zero-valent aluminum (nZVAl) heterogeneous treatment systems (nZVI/HP-PS and nZVAl/HP-PS) were investigated for the removal of 20 mg/L (88 μM) aqueous Bisphenol A (BPA). Oxidation with HP and PS in the absence of nanoparticles did not cause BPA degradation, whereas the nZVI/O

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Available abstract

Abstract In the present study, hydrogen peroxide (HP) and persulfate (PS)-activated nanoscale zero-valent iron (nZVI) and zero-valent aluminum (nZVAl) heterogeneous treatment systems (nZVI/HP-PS and nZVAl/HP-PS) were investigated for the removal of 20 mg/L (88 μM) aqueous Bisphenol A (BPA). Oxidation with HP and PS in the absence of nanoparticles did not cause BPA degradation, whereas the nZVI/O

Key concepts: Zerovalent iron, Persulfate, Hydrogen peroxide, Bisphenol A, Degradation (telecommunications), Aqueous solution, Chemistry, Nanoparticle

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