Sonochemical degradation of p -chlorophenol in aqueous solution using hypervalent iron
Praveena Juliya Dorathi R, K. Palanivelu
Abstract
Praveena Juliya Dorathi R, K. Palanivelu
Abstract
Sonochemical degradation of p-chlorophenol (CP) by coupling a well-known environmental friendly oxidant- iron (VI) in the form of potassium ferrate, with the assistance of sonication (Sono ferrate) was experimented upon in this work. The efficiency of the method was monitored by the degradation and mineralization of p-chlorophenol. The relevant parameters namely pH and ferrate: CP ratio were optimized. The optimal pH and the ferrate: CP ratio for the sono ferrate method was found to be 8.0 and 3:1 at which the removal efficiency with respect to chemical oxygen demand was found to be 85.7% in 75 min and the mineralization efficiency (TOC removal) was 71.6%. It was observed that sono ferrate method was more effective than simple ferrate method. Hence it is recommended to use sono ferrate method as an effective, clean and green way of degrading CP.
OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Sonochemical degradation of p-chlorophenol (CP) by coupling a well-known environmental friendly oxidant- iron (VI) in the form of potassium ferrate, with the assistance of sonication (Sono ferrate) was experimented upon in this work. The efficiency of the method was monitored by the degradation and mineralization of p-chlorophenol. The relevant parameters namely pH and ferrate: CP ratio were optimized. The optimal pH and the ferrate: CP ratio for the sono ferrate method was found to be 8.0 and 3:1 at which the removal efficiency with respect to chemical oxygen demand was found to be 85.7% in 75 min and the mineralization efficiency (TOC removal) was 71.6%. It was observed that sono ferrate method was more effective than simple ferrate method. Hence it is recommended to use sono ferrate method as an effective, clean and green way of degrading CP.
Key concepts: Chemistry, Potassium ferrate, Mineralization (soil science), Degradation (telecommunications), Sonication, Aqueous solution, Inorganic chemistry, Chemical oxygen demand