Gas and liquid backwash for flux restoration in latex paint effluent ultrafiltration
Autor: | Chil-Hung Cheng, Huu Doan, Ali Lohi, Amira Abdelrasoul |
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Rok vydání: | 2018 |
Předmět: |
Materials science
Fouling Airflow Flux Filtration and Separation 02 engineering and technology 021001 nanoscience & nanotechnology Analytical Chemistry Volumetric flow rate chemistry.chemical_compound Ultrafiltration (renal) Membrane 020401 chemical engineering chemistry Chemical engineering Polysulfone 0204 chemical engineering 0210 nano-technology Effluent |
Zdroj: | Separation and Purification Technology. 204:243-254 |
ISSN: | 1383-5866 |
DOI: | 10.1016/j.seppur.2018.03.056 |
Popis: | The main objective of this study was to evaluate the effectiveness of various backwash scenarios on fouling cleaning for flux restoration in ultra filtration of simulated latex effluent. The effects of water and injected air flow rates, backwash duration, and transmembrane pressure on the flux restoration were examined. Polycarbonate and Polysulfone flat membranes with uniform pore sizes of 0.05 μm and molecular weight cut of 60,000 were used under a constant feed flow rate and a cross-flow mode in ultrafiltration of the latex paint effluent. The cross flow water backwash could restore 60% and 52% of the permeate flux for Polycarbonate and Polysulfone membranes, respectively. Alternatively, cross flow air backwash restored the flux by 28% and 19% for the two membranes, respectively. These results reflect that the shear force created by air removes fouling materials on the membrane’s surface, but does little to reduce the fouling within the membrane’s pores. On the other hand, the combination of gas and liquid backwash was very effective, with optimum performance occurring at 4 LPM of water (cross-flow velocity of 41.6 cm/s), concurrent gas at 1 m/s and 15 psi for 5 min. This combination restored the permeate flux by75% and 63% for Polycarbonate and Polysulfone membranes, respectively. |
Databáze: | OpenAIRE |
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