4.8 Article

Full-scale simulation of seawater reverse osmosis desalination processes for boron removal: Effect of membrane fouling

Journal

WATER RESEARCH
Volume 46, Issue 12, Pages 3796-3804

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.watres.2012.04.021

Keywords

Desalination; Reverse osmosis (RO); Boron; Fouling; Modeling

Funding

  1. Seawater Engineering & Architecture of High Efficiency Reverse Osmosis (SeaHero) project by Korean Ministry of Land, Transport and Maritime Affairs
  2. Korean National Science Foundation [CMMI-0644837]
  3. GS Engineering & Construction, Inc.

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The objective of this study is to further develop previously reported mechanistic predictive model that simulates boron removal in full-scale seawater reverse osmosis (RO) desalination processes to take into account the effect of membrane fouling. Decrease of boron removal and reduction in water production rate by membrane fouling due to enhanced concentration polarization were simulated as a decrease in solute mass transfer coefficient in boundary layer on membrane surface. Various design and operating options under fouling condition were examined including single-versus double-pass configurations, different number of RO elements per vessel, use of RO membranes with enhanced boron rejection, and pH adjustment. These options were quantitatively compared by normalizing the performance of the system in terms of E-min, the minimum energy costs per product water. Simulation results suggested that most viable options to enhance boron rejection among those tested in this study include: i) minimizing fouling, ii) exchanging the existing SWRO elements to boron-specific ones, and iii) increasing pH in the second pass. The model developed in this study is expected to help design and optimization of the RO processes to achieve the target boron removal at target water recovery under realistic conditions where membrane fouling occurs during operation. (C) 2012 Elsevier Ltd. All rights reserved.

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