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Improvement of the resolution in direct membrane integrity test by controlling solution surface tension

Authors
Lee, J. H.Hong, S. K.Hur, H. C.Choi, Y. J.
Issue Date
2009
Publisher
IWA PUBLISHING
Keywords
bubble point theory; membrane integrity test; pressure decay test; surface tension
Citation
WATER SCIENCE AND TECHNOLOGY, v.59, no.11, pp.2205 - 2211
Indexed
SCIE
SCOPUS
Journal Title
WATER SCIENCE AND TECHNOLOGY
Volume
59
Number
11
Start Page
2205
End Page
2211
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/122156
DOI
10.2166/wst.2009.251
ISSN
0273-1223
Abstract
Membrane-based treatment technologies have been introduced as a promising tool for the removal of water-borne pathogens. To ensure successful application of membrane processes, the integrity of the membrane system should be maintained. Related with evaluation of the membrane integrity, USEPA guidance recommends pressure-based membrane integrity (MIT). Based on the bubble point theory, the ability of detecting smallest integrity breakage during the MIT is defined as "Resolution". However, the response to remarkably small breach demands significantly high initial test pressure of the pressure decay test. In this study, the surface tension of the test liquid was controlled to improve the resolution without increasing the corresponding test pressure. Three common chemicals were chosen to control the solution surface tension. It is concluded that 0.1 M of the citric acid can decrease the initial test pressure significantly for the same pore size. Subsequently, the improvement of the resolution with controlled surface tension was confirmed by the results of pressure decay test and marker test.
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공과대학 (건축사회환경공학부)
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