Research Progress on the Impact of Acoustic Waves on the Agglomeration of Oily Fine Particles in Industrial Oil Mist Environment

Author:

Li Dekang1,Wang Xin1,Li Tian1,Yang Luying1,Liu Yuhong1,Wang Fei1ORCID,Xu Yuwei1,Yang Yang2

Affiliation:

1. School of Environment and Architecture, University of Shanghai for Science and Technology, Shanghai 200093, China

2. School of Building Services Science and Engineering, Xi’an University of Architecture and Technology, Xi’an 710055, China

Abstract

Currently, undetectable damage to workers and factory products is caused by the large number of oily fine particles present in the industrial environment. Previous studies have shown that different intensities of sound waves can promote the coalescence of fine particles, and the combination of water vapor condensation can further enhance the effect of acoustic coalescence. However, the research on acoustic coalescence is not extensive enough at present, especially research on the mechanism of the coalescence and growth of oily fine particles under acoustic and water vapor complex fields, which is even less studied. This paper focused on summarizing domestic and foreign research results on the interaction mechanism of acoustic convergence on particles and the agglomeration and growth of particles under the action of acoustic convergence and combined water vapor condensation, so as to explore the technical path of using acoustic convergence and combined water vapor condensation to regulate the size of oily fine particles and improve the purification efficiency in industrial situations. This research has significant scientific significance and application value for industrial environmental control, pollutant emission control, and healthy environment construction.

Funder

Machinery Industry Innovation Platform Construction Project

Shandong Construction Department Research and Development Project

Sponsored by Shanghai Sailing Program

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference57 articles.

1. Emission characteristics of oil mist and its capture control effect of machine tools in machining workshops;Wang;Heat. Vent. Air Cond.,2023

2. The Occupational Exposure Limit for Fluid Aerosol Generated in Metalworking Operations: Limitations and Recommendations;Donguk;Safe Health Work,2012

3. Current Approaches in Design and Supply of Metalworking Fluids;Brinksmeier;Tribol. Trans.,2009

4. Field measurement of oil mist particle concentration distribution in machining workshops;Wang;Heat. Vent. Air Cond.,2022

5. Application of acoustic agglomeration to reduce fine particle emissions from coal combustion plants;Hoffmann;Environ. Sci. Technol.,1999

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