2018Vietnam Journal of ChemistryOpen access

Ozonation process and water disinfection

Nguyen Hoang Nghi, Le Cao Cuong, Trần Vĩnh Diệu, Tu Ngu, Đoàn Thị Yến Oanh

Open full text 14 citations

Abstract

Abstract As commonly known, ozone is a highly effective disinfectant for both aqueous and gaseous media. It works through oxidation. Dissolved ozone causes the increases of the redox potential ORP of water. During the ozonenation process, the time‐dependent redox potential ORP of water depends strongly on the density of microbes in it. By analyzing the time‐dependent redox potential, it is possible to measure and calculate the parameters such as the oxidizing rate, the maximal redox potential ORPmax etc. of the ozonated water. These parameters of water reflect the microbiological pollution level of water. Ozonated water having a certain ORP level obtains disinfecting ability. Bacteriological analysis of the water samples after ozonation show that total coliform and E. coli bacteria were fully removed after a few minutes at ORP of 800 mV.

Open-access reader

About this research paper

What this paper is about

Abstract As commonly known, ozone is a highly effective disinfectant for both aqueous and gaseous media. It works through oxidation. Dissolved ozone causes the increases of the redox potential ORP of water. During the ozonenation process, the time‐dependent redox potential ORP of water depends strongly on the density of microbes in it. By analyzing the time‐dependent redox potential, it is possible to measure and calculate the parameters such as the oxidizing rate, the maximal redox potential ORPmax etc. of the ozonated water. These parameters of water reflect the microbiological pollution level of water. Ozonated water having a certain ORP level obtains disinfecting ability. Bacteriological analysis of the water samples after ozonation show that total coliform and E. coli bacteria were fully removed after a few minutes at ORP of 800 mV.

Why it matters

OpenAlex reports 14 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

Abstract As commonly known, ozone is a highly effective disinfectant for both aqueous and gaseous media. It works through oxidation. Dissolved ozone causes the increases of the redox potential ORP of water. During the ozonenation process, the time‐dependent redox potential ORP of water depends strongly on the density of microbes in it. By analyzing the time‐dependent redox potential, it is possible to measure and calculate the parameters such as the oxidizing rate, the maximal redox potential ORPmax etc. of the ozonated water. These parameters of water reflect the microbiological pollution level of water. Ozonated water having a certain ORP level obtains disinfecting ability. Bacteriological analysis of the water samples after ozonation show that total coliform and E. coli bacteria were fully removed after a few minutes at ORP of 800 mV.

Key concepts: Reduction potential, Redox, Ozone, Oxidizing agent, Chemistry, Environmental chemistry, Disinfectant, Aqueous solution

Related papers

Back to paper searchBrowse research topicsOriginal source
Ozonation process and water disinfection — Research Paper | ScholarLens