Critical flux detection in a silica scaling RO system
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作者:
Lisitsin, D
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Technion Israel Inst Technol, Rabin Desalinat Lab, Grand Water Res Inst, Wolfson Dept Chem Engn, Haifa, IsraelTechnion Israel Inst Technol, Rabin Desalinat Lab, Grand Water Res Inst, Wolfson Dept Chem Engn, Haifa, Israel
Lisitsin, D
[1
]
Hasson, D
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Technion Israel Inst Technol, Rabin Desalinat Lab, Grand Water Res Inst, Wolfson Dept Chem Engn, Haifa, IsraelTechnion Israel Inst Technol, Rabin Desalinat Lab, Grand Water Res Inst, Wolfson Dept Chem Engn, Haifa, Israel
Hasson, D
[1
]
Semiat, R
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Technion Israel Inst Technol, Rabin Desalinat Lab, Grand Water Res Inst, Wolfson Dept Chem Engn, Haifa, IsraelTechnion Israel Inst Technol, Rabin Desalinat Lab, Grand Water Res Inst, Wolfson Dept Chem Engn, Haifa, Israel
Semiat, R
[1
]
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[1] Technion Israel Inst Technol, Rabin Desalinat Lab, Grand Water Res Inst, Wolfson Dept Chem Engn, Haifa, Israel
Desalination of brackish water containing silica at high recovery levels leads to a rapid flux decline, due to the precipitation of a colloidal solution consisting of polymerized silica nano-particles. The critical flux (CF) phenomenon postulates that there is a certain permeate flux level below which the rate of flux decrease due to membrane fouling becomes negligible. The aim of this paper was to develop a simple technique for detecting the existence of a critical flux threshold limit under conditions at which the membrane surface is exposed to a constant precipitation potential. A series of experiments was carried out in a silica scaling tubular RO system. Experimental conditions were controlled such that the dissolved silica content on the membrane was held at the same supersaturation ratio level of 2.1-2.2 The rate of flux decline was found while varying the initial permeation flux value over the range of 17-45 l/h m(2) to remain constant, irrespective of the permeate flux level examined.
机构:Univ of New South Wales, Sch of, Chemical Engineering &, Industrial Chemistry, Kensington,, Univ of New South Wales, Sch of Chemical Engineering & Industrial Chemistry, Kensington, Aust
BAKER, RJ
;
FANE, AG
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机构:Univ of New South Wales, Sch of, Chemical Engineering &, Industrial Chemistry, Kensington,, Univ of New South Wales, Sch of Chemical Engineering & Industrial Chemistry, Kensington, Aust
FANE, AG
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FELL, CJD
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机构:Univ of New South Wales, Sch of, Chemical Engineering &, Industrial Chemistry, Kensington,, Univ of New South Wales, Sch of Chemical Engineering & Industrial Chemistry, Kensington, Aust
FELL, CJD
;
YOO, BH
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机构:Univ of New South Wales, Sch of, Chemical Engineering &, Industrial Chemistry, Kensington,, Univ of New South Wales, Sch of Chemical Engineering & Industrial Chemistry, Kensington, Aust
机构:Univ of New South Wales, Sch of, Chemical Engineering &, Industrial Chemistry, Kensington,, Univ of New South Wales, Sch of Chemical Engineering & Industrial Chemistry, Kensington, Aust
BAKER, RJ
;
FANE, AG
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h-index: 0
机构:Univ of New South Wales, Sch of, Chemical Engineering &, Industrial Chemistry, Kensington,, Univ of New South Wales, Sch of Chemical Engineering & Industrial Chemistry, Kensington, Aust
FANE, AG
;
FELL, CJD
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h-index: 0
机构:Univ of New South Wales, Sch of, Chemical Engineering &, Industrial Chemistry, Kensington,, Univ of New South Wales, Sch of Chemical Engineering & Industrial Chemistry, Kensington, Aust
FELL, CJD
;
YOO, BH
论文数: 0引用数: 0
h-index: 0
机构:Univ of New South Wales, Sch of, Chemical Engineering &, Industrial Chemistry, Kensington,, Univ of New South Wales, Sch of Chemical Engineering & Industrial Chemistry, Kensington, Aust