Article ID Journal Published Year Pages File Type
1886029 Radiation Physics and Chemistry 2014 6 Pages PDF
Abstract

•PDA in aqueous solution was effectively degraded by gamma irradiation.•Hydroxyl radical mainly contributed to PDA degradation.•Intermediate product produced from PDA degradation was further decomposed.•Gamma irradiation process can be useful for degrading phorbol esters in water.

Phorbol esters (PEs) are highly toxic compounds that cause skin irritation, inflammation, and tumor promotion upon contact with humans or animals. These compounds are naturally present in Jatropha curcas L. To promote the use of J. curcas seed oil in bio-diesel production industries and reduce environmental concerns, it is necessary to find methods of degrading PEs. In this study, the degradation of phorbol 12,13-diacetate (PDA), as a representative PE, in aqueous solution at a concentration of 10 mg/L by 60Co-γ-irradiation was investigated. The results demonstrate that PDA was effectively degraded by this treatment and the degradation efficiency increased with the absorbed dose within the range of 0.5–3 kGy. Complete degradation of PDA was achieved at a dose of 3 kGy. In the presence of radical scavengers (i.e., methanol, tert-butanol, 2-propanol), reactive species from water radiolysis were scavenged, and significant inhibition of PDA degradation was observed at absorbed doses less than 1 kGy. In the presence of nitrous oxide, the generation of hydroxyl radicals (OH) was promoted during gamma irradiation and PDA degradation was drastically enhanced.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Radiation
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