This study presents practical implications for particle separation in Dissolved Air Flotation (DAF). The objectives were to localise where particles are separated from the water phase and to determine what particles, in terms of size, are removed by the DAF-process. Both pilot- and full-scale plants were investigated. Particle sizes were analysed with a light-blocking particle counter and an optical borescope was used for visualisation of particle-bubble aggregates. It was found that particles are preferably separated upstream in the process, i.e. close to the contact zone. Furthermore, separation efficiency for particles increased with increasing particle size
This paper aims to investigate the influence of some dissolved air flotation (DAF) process variables...
The objective of the study was to find ways of improvement of the dissolved air flotation process by...
Fine particles often create problems in flotation applications. In this article a new laboratory flo...
Particles from post denitrifying Kaldnes Moving Bed(TM) Process were studied using an optical boresc...
Dissolved Air Flotation (DAF) is a separation process in water and wastewater treatment. The removal...
Particle separation is one of the fundamental processes in wastewater treatment and a good understan...
Dissolved Air Flotation (DAF) is a well-established treatment method for water containing low densit...
Dissolved Air Flotation (DAF) is a well-established treatment method for water containing low densit...
This paper aims to investigate the influence of some dissolved air flotation (DAF) process variables...
Dissolved Air (Pressure) Flotation-DAF, is a well-established separation process that employs micro-...
Dissolved Air (Pressure) Flotation-DAF, is a well-established separation process that employs micro-...
Dissolved Air (Pressure) Flotation-DAF, is a well-established separation process that employs micro-...
Dissolved Air (Pressure) Flotation-DAF, is a well-established separation process that employs micro-...
In Dissolved Air Flotation (DAF) a solid phase is separated from a liquid phase with the aid of air ...
The dissolved air flotation (DAF) process is known for its efficiency in the removal of low-density ...
This paper aims to investigate the influence of some dissolved air flotation (DAF) process variables...
The objective of the study was to find ways of improvement of the dissolved air flotation process by...
Fine particles often create problems in flotation applications. In this article a new laboratory flo...
Particles from post denitrifying Kaldnes Moving Bed(TM) Process were studied using an optical boresc...
Dissolved Air Flotation (DAF) is a separation process in water and wastewater treatment. The removal...
Particle separation is one of the fundamental processes in wastewater treatment and a good understan...
Dissolved Air Flotation (DAF) is a well-established treatment method for water containing low densit...
Dissolved Air Flotation (DAF) is a well-established treatment method for water containing low densit...
This paper aims to investigate the influence of some dissolved air flotation (DAF) process variables...
Dissolved Air (Pressure) Flotation-DAF, is a well-established separation process that employs micro-...
Dissolved Air (Pressure) Flotation-DAF, is a well-established separation process that employs micro-...
Dissolved Air (Pressure) Flotation-DAF, is a well-established separation process that employs micro-...
Dissolved Air (Pressure) Flotation-DAF, is a well-established separation process that employs micro-...
In Dissolved Air Flotation (DAF) a solid phase is separated from a liquid phase with the aid of air ...
The dissolved air flotation (DAF) process is known for its efficiency in the removal of low-density ...
This paper aims to investigate the influence of some dissolved air flotation (DAF) process variables...
The objective of the study was to find ways of improvement of the dissolved air flotation process by...
Fine particles often create problems in flotation applications. In this article a new laboratory flo...