2009Japanese Journal of Applied PhysicsRequires access

Effects of Hydrogen Peroxide and Frequency for the Sonochemical Degradation of Aqueous Phenol

Myunghee Lim, Younggyu Son, Mingcan Cui, Jeehyeong Khim

Open publisher page 19 citations

Abstract

The effect of hydrogen peroxide and frequency on the degradation of phenol was investigated in this study. The concentrations of phenol and hydrogen peroxide were 0.05 and 0.0018 mM, respectively. When a high frequency of sonication (1 MHz) was irradiated to a phenol solution, the efficiency of decomposition of phenol was about 95% within 120 min. At a low frequency, the phenol degradation was slower than at a high frequency, while the degradation of the total organic carbon at a low frequency was nearly the same as that at a high frequency. Hydrogen peroxide was formed due to the dissipation of water. Through a comparison, it can be seen that the order of degradation rates of phenol and the formation rate of hydrogen peroxide were not the same. The relationship between the degradation rate of compounds and the formation rate of hydrogen peroxide was not clear. With the addition of hydrogen peroxide in phenol solution, the phenol concentration was almost completely degradable within 30 min. In the case of total organic carbon (TOC), the concentration was degraded by 50%. Therefore, for the decomposition of total organic carbon, the addition of hydrogen peroxide or other catalysts was required.

About this research paper

What this paper is about

The effect of hydrogen peroxide and frequency on the degradation of phenol was investigated in this study. The concentrations of phenol and hydrogen peroxide were 0.05 and 0.0018 mM, respectively. When a high frequency of sonication (1 MHz) was irradiated to a phenol solution, the efficiency of decomposition of phenol was about 95% within 120 min. At a low frequency, the phenol degradation was slower than at a high frequency, while the degradation of the total organic carbon at a low frequency was nearly the same as that at a high frequency. Hydrogen peroxide was formed due to the dissipation of water. Through a comparison, it can be seen that the order of degradation rates of phenol and the formation rate of hydrogen peroxide were not the same. The relationship between the degradation rate of compounds and the formation rate of hydrogen peroxide was not clear. With the addition of hydrogen peroxide in phenol solution, the phenol concentration was almost completely degradable within 30 min. In the case of total organic carbon (TOC), the concentration was degraded by 50%. Therefore, for the decomposition of total organic carbon, the addition of hydrogen peroxide or other catalysts was required.

Why it matters

OpenAlex reports 19 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The effect of hydrogen peroxide and frequency on the degradation of phenol was investigated in this study. The concentrations of phenol and hydrogen peroxide were 0.05 and 0.0018 mM, respectively. When a high frequency of sonication (1 MHz) was irradiated to a phenol solution, the efficiency of decomposition of phenol was about 95% within 120 min. At a low frequency, the phenol degradation was slower than at a high frequency, while the degradation of the total organic carbon at a low frequency was nearly the same as that at a high frequency. Hydrogen peroxide was formed due to the dissipation of water. Through a comparison, it can be seen that the order of degradation rates of phenol and the formation rate of hydrogen peroxide were not the same. The relationship between the degradation rate of compounds and the formation rate of hydrogen peroxide was not clear. With the addition of hydrogen peroxide in phenol solution, the phenol concentration was almost completely degradable within 30 min. In the case of total organic carbon (TOC), the concentration was degraded by 50%. Therefore, for the decomposition of total organic carbon, the addition of hydrogen peroxide or other catalysts was required.

Key concepts: Hydrogen peroxide, Phenol, Aqueous solution, Degradation (telecommunications), Sonochemistry, Chemistry, Nuclear chemistry, Photochemistry

Related papers

Back to paper searchBrowse research topicsOriginal source
Effects of Hydrogen Peroxide and Frequency for the Sonochemical Degradation of Aqueous Phenol — Research Paper | ScholarLens