This study developed the method for measuring bacterial regrowth potential in seawater samples, an effective tool to assess the biofouling potential of seawater reverse osmosis feed water. It was demonstrated that lower algogenic organic matter and phosphate concentrations coincide with lower bacterial regrowth potential and lower rate of head loss development in membrane fouling simulators.
This study developed the method for measuring bacterial regrowth potential in seawater samples, an effective tool to assess the biofouling potential of seawater reverse osmosis feed water. It was demonstrated that lower algogenic organic matter and phosphate concentrations coincide with lower bacterial regrowth potential and lower rate of head loss development in membrane fouling simulators.
1 General introduction 2 Perspective and challenges for desalination 3 Measuring bacterial regrowth potential (BRP) in seawater reverse osmosis using a natural bacterial consortium and flow cytometry 4 Understanding ultrafiltration membrane fouling induced by four marine bloom forming algae 5 The role of tight UF on reducing the bacterial regrowth potential of SWRO feed water 6 Phosphate removal in seawater reverse osmosis feed water: An option to control biofouling 7 General conclusions and future perspective
1 General introduction 2 Perspective and challenges for desalination 3 Measuring bacterial regrowth potential (BRP) in seawater reverse osmosis using a natural bacterial consortium and flow cytometry 4 Understanding ultrafiltration membrane fouling induced by four marine bloom forming algae 5 The role of tight UF on reducing the bacterial regrowth potential of SWRO feed water 6 Phosphate removal in seawater reverse osmosis feed water: An option to control biofouling 7 General conclusions and future perspective
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