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Combining high performance fertiliser with surfactants to reduce the reverse solute flux in the fertiliser drawn forward osmosis process

Authors
Chekli, LauraPathak, NirenkumarKim, YoungjinPhuntsho, SherubLi, ShengGhaffour, NoreddineLeiknes, TorOveShon, Ho Kyong
Issue Date
15-Nov-2018
Publisher
ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
Keywords
Forward osmosis; Fertiliser draw solution; Surfactant; Reverse salt flux
Citation
JOURNAL OF ENVIRONMENTAL MANAGEMENT, v.226, pp.217 - 225
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF ENVIRONMENTAL MANAGEMENT
Volume
226
Start Page
217
End Page
225
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/71832
DOI
10.1016/j.jenvman.2018.08.024
ISSN
0301-4797
Abstract
Solutions to mitigate the reverse diffusion of solutes are critical to the successful commercialisation of the fertiliser drawn forward osmosis process. In this study, we proposed to combine a high performance fertiliser (i.e., ammonium sulfate or SOA) with surfactants as additives as an approach to reduce the reverse diffusion of ammonium ions. Results showed that combining SOA with both anionic and non-ionic surfactants can help in reducing the reverse salt diffusion by up to 67%. We hypothesised that, hydrophobic interactions between the surfactant tails and the membrane surface likely constricted membrane pores resulting in increased rejection of ions with large hydrated radii such as SO42-. By electroneutrality, the rejection of the counter ions (i.e., NH4+) also therefore subsequently improved. Anionic surfactant was found to further decrease the reverse salt diffusion due to electrostatic repulsions between the surfactant negatively-charged heads and SO42-. However, when the feed solution contains cations with small hydrated radii (e.g., Na+); it was found that NH4+ ions can be substituted in the DS to maintain its electroneutrality and thus the diffusion of NH4+ to the feed solution was increased.
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