Development of annular-type virtual impactor

Citation
K. Gotoh et H. Masuda, Development of annular-type virtual impactor, POWD TECH, 118(1-2), 2001, pp. 68-78
Citations number
8
Categorie Soggetti
Chemical Engineering
Journal title
POWDER TECHNOLOGY
ISSN journal
00325910 → ACNP
Volume
118
Issue
1-2
Year of publication
2001
Pages
68 - 78
Database
ISI
SICI code
0032-5910(20010808)118:1-2<68:DOAVI>2.0.ZU;2-0
Abstract
Annular jet-type virtual impactor was developed and tested with the use of an industrial powder. The new virtual impactor was designed based on an imp actor having a rectangular jet. It was expected that the new impactor has a superior performance compared to the impactor with a rectangular jet becau se the annular jet has no end, which causes the deterioration of the perfor mance. The classification experiments, however, showed lower performance th an expected. Observation of the deposited pattern of the classified particl es revealed that the flow was asymmetric, i.e. the flow had a three-dimensi onal structure in azimuthal direction. Therefore, the collection nozzle was improved so as to divide the classification zone into four parts and to ac celerate the flow in each part. As a result of the improvement. 50% cut-siz e of the annular-type virtual impactor was well-fit to the theoretical valu e and the separation efficiency at the diameter smaller than 50% cut-size w as close to the theoretical curve. However, the separation efficiency at the diameter larger than 50% cut-size was unchanged. From the comparison of configurations of the impactors used in a previous work and in this work. we presume that the shape of the nozz le collecting a finer aerosol affects the classification performance. In or der to confirm the prediction, classification experiments were carried out by small-scale rectangular jet virtual impactors having different nozzle an gles. The results revealed that the smaller nozzle angle deteriorates the c lassification performance even for the same configuration of the classifica tion zone. The result implies that the performance of the annular-type virt ual impactor can further be improved if the nozzle shape is properly design ed. (C) 2001 Elsevier Science B.V. All rights reserved.