| Literature DB >> 28412549 |
Yi-Ning Wang1, Weiyi Li2, Rong Wang3, Chuyang Y Tang4.
Abstract
This study provides a novel method to enhance boron removal in a forward osmosis (FO) process. It utilizes the reverse solute diffusion (RSD) of ions from alkaline draw solutions (DSs) and the concentration polarization of the hydroxyl ions to create a highly alkaline environment near the membrane active surface. The results show that boron rejection can be significantly enhanced by increasing the pH of NaCl DS to 12.5 in the active-layer-facing-feed-solution (AL-FS) orientation. The effect of RSD enhanced boron rejection was further promoted in the presence of concentration polarization (e.g., in the active-layer-facing-draw-solution (AL-DS) orientation). The current study opens a new dimension for controlling contaminant removal by FO using tailored DS chemistry, where the RSD-induced localized water chemistry change is taken advantage in contrast to the conventional method of chemical dosing to the bulk feed water.Entities:
Keywords: Alkaline draw solution; Boron rejection; Concentration polarization; Forward osmosis (FO); Reverse solute diffusion (RSD); pH
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Year: 2017 PMID: 28412549 DOI: 10.1016/j.watres.2017.04.016
Source DB: PubMed Journal: Water Res ISSN: 0043-1354 Impact factor: 11.236