Fouling distribution in forward osmosis membrane process

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초록

Fouling behavior along the length of membrane module was systematically investigated by performing simple modeling and lab-scale experiments of forward osmosis (FO) membrane process. The flux distribution model developed in this study showed a good agreement with experimental results, validating the robustness of the model. This model demonstrated, as expected, that the permeate flux decreased along the membrane channel due to decreasing osmotic pressure differential across the FO membrane. A series of fouling experiments were conducted under the draw and feed solutions at various recoveries simulated by the model. The simulated fouling experiments revealed that higher organic (alginate) fouling and thus more flux decline were observed at the last section of a membrane channel, as foulants in feed solution became more concentrated. Furthermore, the water flux in FO process declined more severely as the recovery increased due to more foulants transported to membrane surface with elevated solute concentrations at higher recovery, which created favorable solution environments for organic adsorption. The fouling reversibility also decreased at the last section of the membrane channel, suggesting that fouling distribution on FO membrane along the module should be carefully examined to improve overall cleaning efficiency. Lastly, it was found that such fouling distribution observed with co-current flow operation became less pronounced in countercurrent flow operation of FO membrane process.

키워드

forward osmosismembrane module lengthorganic foulingfouling reversibilitycounter-current flow FO operationSEAWATER DESALINATIONREVERSE-OSMOSISWASTE-WATERPRETREATMENTBEHAVIORFLUXRO
제목
Fouling distribution in forward osmosis membrane process
저자
Lee, JunseokKim, BongchulHong, Seungkwan
DOI
10.1016/S1001-0742(13)60610-5
발행일
2014-06-01
유형
Article
저널명
Journal of Environmental Sciences
26
6
페이지
1348 ~ 1354