Performance of a cyclone scrubber on removal of fine particulate matter
Эффективность циклона-скруббера при удалении мелкодисперсных частиц
2019-08-06
SCID: 54.1/w6qfzkua
Discuss with AI
Stairmand cyclone separatorcollection efficiencycyclone scrubberfine particulate mattersugar cane bagasse ash
Figures from the paper
Abstract (AI)
Cyclones are not classified as effective devices for removing fine particles, while high efficiency wet scrubbers usually have high operational costs. In order to achieve better performance, the aim of this study is to evaluate, for the first time, a cyclone scrubber design based on the dimensions of a Stairmand cyclone separator with the inclusion of liquid injection nozzles located in different positions to improve the separation of fine particles. Given the lack of studies considering the effect of liquid injection and other operational conditions in the removal performance of a cyclone scrubber with Stairmand dimensions, the present paper provides a complete evaluation of these effects for the separation of sugar cane bagasse ash from air. The parameters investigated were inlet gas velocity, liquid injection position, liquid-to-gas flow ratio and droplet size distribution. The cyclone scrubber performance was evaluated considering collection efficiency and pressure drop. Overall efficiency of almost 99% and low-pressure drop was achieved by employing a liquid-to-gas flow ratio of 0.43 L/m? for the collection of ash from the combustion of sugar cane bagasse. Grade efficiencies revealed that injecting droplets into cyclones significantly improved the removal of fine particles with an aerodynamic diameter less than 2.5 ?m.
Key Findings
1
A Stairmand-dimension cyclone scrubber with liquid injection was evaluated for removing sugar cane bagasse ash from air.
2
A liquid-to-gas flow ratio of 0.43 L/m? provided the reported combination of high ash collection efficiency and low pressure drop.
3
Liquid injection substantially improved fine-particle removal, particularly for particles with aerodynamic diameters below 2.5 μm.
4
Performance depended on inlet gas velocity, liquid-injection position, liquid-to-gas ratio, and droplet-size distribution.
5
The cyclone scrubber achieved an overall collection efficiency of almost 99% while maintaining a low pressure drop.
Research Object
Stairmand-dimension cyclone scrubber removing sugar cane bagasse ash from air
Research Subject
Effects of liquid injection and operating conditions on fine-particle collection efficiency and pressure drop, especially removal of particles with aerodynamic diameter below 2.5 μm
Publication Details
Publication Date
2019-08-06
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest