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李建新, Jianxin Li, D.K. Hallbauer, R.D. Sanderson*
J. Li et al./Journal of Membrane Science 215 (2003) 33-52,-0001,():
-1年11月30日
An ultrasonic technique has been applied as a non-destructive, real-time, in situ measuring technique for the non-invasive study of fouling and cleaning during ultrafiltration (UF) with polysulfone (PSU) membranes. Paper mill effluent from a wastewater tr
Fouling, Cleaning, Membrane compaction, Ultrasound, Ultrafiltration
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李建新, R. Sanderson a, *, Jianxin Li a, L.J. Koen b, , L. Lorenzen b
R. Sanderson et al./Journal of Membrane Science 207 (2002) 105-117,-0001,():
-1年11月30日
Fouling is readily acknowledged as one of the most critical problems limiting the wider application of membranes in liquid separation processes. A better understanding of fouling layer formation and its monitoring is needed in order to improve on existing
Inorganic fouling, Membrane cleaning, Reverse osmosis, Ultrasonic time-domain reflectometry, Non-destructive visualization
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李建新, Jianxin Li, V. Yu Hallbauer-Zadorozhnaya, D.K. Hallbauer, and R.D. Sanderson*
Ind. Eng. Chem. Res., Vol. 41, No.16, 2002,-0001,():
-1年11月30日
A noninvasive measurement method was developed to monitor particle deposition and cake formation in situ and to determine the thickness of the cake layer formed during cross-flow microfiltration with nylon membranes. An ultrasonic signal reflection techni
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李建新, ianxin Li*, R.D. Sanderson
J.Li R.D. Sanderson/Desalination 146 (2002) 169-175,-0001,():
-1年11月30日
An ultrasonic time-domain reflectometry (UTDR) technique was used for the non-invasive, in situ visualization of particle deposition and its removal during crossflow microfiltration with a nylon membrane. The study was carried out with 0.5g/l kaolin (aver
Particle deposition, Membrane fouling, Membrane cleaning, In situ visualization, Microfiltration, Ultrasonic time-domain reflectometry
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李建新, Jianxin Li a, *, R.D. Sanderson b, G.Y. Chai b, D.K. Hallbauer b
J.X. Li et al./Journal of Colloid and Interface Science 284 (2005) 228-238,-0001,():
-1年11月30日
Although an amount of research has reported that a flux minimum occurrs at the isoionic/isoelectric points (pH 4.6-5.0) in the absence of salts in the ultrafiltration of bovine serum albumin (BSA), the real mechanism remains incompletely understood due to
Ultrasonic technique, Bovine serum albumin, Protein deposition, Ultrafiltration, Fouling, Isoelectric point
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