2010Environmental Science & TechnologyRequires access

Removal of Ammonia Nitrogen in Dyeing Wastewater by Ultrasound Stripping

Peng Ren-yong, Kangkang Chen, Yanlin Li

Open publisher page 1 citations

Abstract

Experiments of removal of ammonia nitrogen from dyeing wastewater by ultrasound stripping were carried out. Influencing factors on the removal rate of ammonia nitrogen including pH value,temperature and ultrasonic power were investigated. Results indicated that removal rate of ammonia nitrogen reached 90.78% under the optimal conditions as ultrasonic power 100W,temperature 30℃,stripping times of 150min and no changing of pH value of dyeing wastewater. Comparison with traditional stripping process,removal rate of ammonia nitrogen increased 30% ~40% through ultrasonic stripping process. Mechanism of ammonia nitrogen removal by ultrasound stripping is that ammonia molecules in the cavitations bubbles transformed into nitrogen molecules and hydrogen molecules via pyrolysis under high temperature and high pressure in the cavitations bubbles. Mass transfer speed of ammonia increases under supercritical condition emerging from ultrasonic cavitations,and easier release from wastewater by stripping.

About this research paper

What this paper is about

Experiments of removal of ammonia nitrogen from dyeing wastewater by ultrasound stripping were carried out. Influencing factors on the removal rate of ammonia nitrogen including pH value,temperature and ultrasonic power were investigated. Results indicated that removal rate of ammonia nitrogen reached 90.78% under the optimal conditions as ultrasonic power 100W,temperature 30℃,stripping times of 150min and no changing of pH value of dyeing wastewater. Comparison with traditional stripping process,removal rate of ammonia nitrogen increased 30% ~40% through ultrasonic stripping process. Mechanism of ammonia nitrogen removal by ultrasound stripping is that ammonia molecules in the cavitations bubbles transformed into nitrogen molecules and hydrogen molecules via pyrolysis under high temperature and high pressure in the cavitations bubbles. Mass transfer speed of ammonia increases under supercritical condition emerging from ultrasonic cavitations,and easier release from wastewater by stripping.

Why it matters

OpenAlex reports 1 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

Experiments of removal of ammonia nitrogen from dyeing wastewater by ultrasound stripping were carried out. Influencing factors on the removal rate of ammonia nitrogen including pH value,temperature and ultrasonic power were investigated. Results indicated that removal rate of ammonia nitrogen reached 90.78% under the optimal conditions as ultrasonic power 100W,temperature 30℃,stripping times of 150min and no changing of pH value of dyeing wastewater. Comparison with traditional stripping process,removal rate of ammonia nitrogen increased 30% ~40% through ultrasonic stripping process. Mechanism of ammonia nitrogen removal by ultrasound stripping is that ammonia molecules in the cavitations bubbles transformed into nitrogen molecules and hydrogen molecules via pyrolysis under high temperature and high pressure in the cavitations bubbles. Mass transfer speed of ammonia increases under supercritical condition emerging from ultrasonic cavitations,and easier release from wastewater by stripping.

Key concepts: Stripping (fiber), Ammonia, Wastewater, Nitrogen, Chemistry, Ultrasonic sensor, Sewage treatment, Waste management

Related papers

Back to paper searchBrowse research topicsOriginal source
Removal of Ammonia Nitrogen in Dyeing Wastewater by Ultrasound Stripping — Research Paper | ScholarLens