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TiO2 photocatalytic degradation and transformation of oxazaphosphorine drugs in an aqueous environment
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TiO2 photocatalytic degradation and transformation of oxazaphosphorine drugs in an aqueous environment

Webber Wei-Po Lai, Hank Hui-Hsiang LinAngela Yu-Chen Lin
Journal of Hazardous Materials, 卷.287, 頁碼.133-141
04/2015
PMID: 25644030

摘要

Oxazaphosphorine drugs Photocatalytic degradation Titanium dioxide Toxicity Environmental Engineering Environmental Chemistry Waste Management and Disposal Pollution Health Toxicology and Mutagenesis
This study investigated the TiO <sub>2</sub> photocatalytic degradation and transformation of the oxazaphosphorines ifosfamide (IFO), cyclophosphamide (CP) and trofosfamide (TRO). Under the optimum conditions of TiO <sub>2</sub> =100mg/L, IFO=100μg/L and solution pH=5.5, IFO was completely removed within 10min (k=0.433min <sup>-1</sup> ). The results indicated that OH <sub>free</sub> radicals generated by valence holes in the bulk solution were the predominant species for the degradation of IFO. At higher initial concentrations of oxazaphosphorines (20mg/L), >50% of TOC remained after 6h of reaction time, indicating that parent compounds were transformed to byproducts, which exhibit higher Microtox acute toxicities; chlorinated byproducts were likely the source of toxicity. Photocatalytic degradation pathways of the three oxazaphosphorines were proposed. IFO, CP and TRO follow very similar pathways and bond-breaking processes: ketonization and breaking of the CCl bond, the PN bond and the CN bond (N-dechloroethylation). Chloride (Cl <sup>-</sup> ) release is likely the first and primary step in the decomposition process. Several of the identified byproducts were also metabolites, which implies that photocatalytic oxidation proceeds through pathways that are similar to metabolic pathways.

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