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Cho, Jaeweon
Sense Laboratory
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Biostability characterization in a full-scale hybrid NF/RO treatment system

Author(s)
Hong, SKEscobar, ICHershey-Pyle, JHobbs, CCho, Jaeweon
Issued Date
2005-05
URI
https://scholarworks.unist.ac.kr/handle/201301/11785
Fulltext
http://search.proquest.com/docview/221589390
Citation
JOURNAL AMERICAN WATER WORKS ASSOCIATION, v.97, no.5, pp.101 - 110
Abstract
The objective of this study was to quantify the assimilable organic carbon(AOC) in processing water at several stages of a full-scale nanofiltration (NF) water treatment plant. The NF membrane plant investigated was a 45,400-m(3)/d (12-mgd) water-softening facility in Plantation, Fla. The average AN concentration of raw feedwater was estimated at 158 mu g/L acetate-C. After pretreatment (acid and antiscalant addition), AN levels increased by 12.7% (p-value = 0.055), suggesting that pretreatment chemicals used to control scaling may enhance bacterial growth potential on the membrane surface. The results also demonstrated that the membrane system was capable of effectively removing 63.4% of AOC and showed a decrease in membrane productivity over time (declined linearly at a rate of approximately 1.2 x 10(-4) L/m(2)/h divided by kPa [4.9 x 10(-4) gfd divided by psi] per d). This decrease could be attributed to biofouling, as observed by a steady increase in differential pressure during operation, and to natural organic matter fouling, as shown by the composition of the organic matter in the feedwater (54.9% hydrophobic and 18.1% hydrophilic neutral compounds)
Publisher
AMER WATER WORKS ASSOC
ISSN
2164-4535
Keyword
ASSIMILABLE ORGANIC-CARBONMEMBRANE-SURFACE PROPERTIESREVERSE-OSMOSISNANOFILTRATION MEMBRANESDRINKING-WATERSOLUTION CHEMISTRYBACTERIAL-GROWTHMATTERREJECTIONREMOVAL

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