2011•Journal of the chemical society of pakistanRequires access

The Sulfide Oxidation in an Electrolytic Sulfide Oxidizing Bioreactor using Graphite Anode

Donglei Wu, Lili Wu, Qinhai Hu, Qaisar Mahmood, Afsar Khan

Open publisher page 0 citations

Abstract

Summary: The goal of the present research was the direct conversion of sulfide (an important contaminant in various industrial wastewaters) to sulfate, whose discharge limits are much less stringent than those for sulfide. The electrolysis of sodium sulfide was investigated under different conditions such as: pH, current density and working area etc. along with cyclic voltammetry. By the use of a graphite anode, we achieved near-quantitative electrochemical conversion of sulfide ions to sulfate with current efficiency of 88%. Kinetically, the reaction is first order in current density. The experimental results revealed that the sulfide removal rate of more than 88% could be achieved under the conditions T=30 ℃, pH = 7, current density of 1mA/cm 2 at anode area of 225 cm 2 .The process can be practically coupled with bioreactor for an effective sulfide removal.

About this research paper

What this paper is about

Summary: The goal of the present research was the direct conversion of sulfide (an important contaminant in various industrial wastewaters) to sulfate, whose discharge limits are much less stringent than those for sulfide. The electrolysis of sodium sulfide was investigated under different conditions such as: pH, current density and working area etc. along with cyclic voltammetry. By the use of a graphite anode, we achieved near-quantitative electrochemical conversion of sulfide ions to sulfate with current efficiency of 88%. Kinetically, the reaction is first order in current density. The experimental results revealed that the sulfide removal rate of more than 88% could be achieved under the conditions T=30 ℃, pH = 7, current density of 1mA/cm 2 at anode area of 225 cm 2 .The process can be practically coupled with bioreactor for an effective sulfide removal.

Why it matters

A significance statement is not available in the OpenAlex record.

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

Summary: The goal of the present research was the direct conversion of sulfide (an important contaminant in various industrial wastewaters) to sulfate, whose discharge limits are much less stringent than those for sulfide. The electrolysis of sodium sulfide was investigated under different conditions such as: pH, current density and working area etc. along with cyclic voltammetry. By the use of a graphite anode, we achieved near-quantitative electrochemical conversion of sulfide ions to sulfate with current efficiency of 88%. Kinetically, the reaction is first order in current density. The experimental results revealed that the sulfide removal rate of more than 88% could be achieved under the conditions T=30 ℃, pH = 7, current density of 1mA/cm 2 at anode area of 225 cm 2 .The process can be practically coupled with bioreactor for an effective sulfide removal.

Key concepts: Sulfide, Electrolysis, Oxidizing agent, Anode, Inorganic chemistry, Chemistry, Electrochemistry, Cyclic voltammetry

Related papers

Back to paper searchBrowse research topicsOriginal source
The Sulfide Oxidation in an Electrolytic Sulfide Oxidizing Bioreactor using Graphite Anode — Research Paper | ScholarLens