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Pressure assisted fertiliser drawn osmosis process to enhance final dilution of the fertiliser draw solution beyond osmotic equilibrium

Authors
Sahebi, SoleymanPhuntsho, SherubKim, Jung EunHong, SeungkwanShon, Ho Kyong
Issue Date
1-5월-2015
Publisher
ELSEVIER SCIENCE BV
Keywords
Desalination; Forward osmosis; Pressure assisted osmosis; Fertilizer drawn forward osmosis; Osmotic equilibrium
Citation
JOURNAL OF MEMBRANE SCIENCE, v.481, pp.63 - 72
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF MEMBRANE SCIENCE
Volume
481
Start Page
63
End Page
72
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/93609
DOI
10.1016/j.memsci.2015.01.055
ISSN
0376-7388
Abstract
Adequate dilution of fertiliser draw solution (DS) during fertiliser drawn forward osmosis (FDFO) desalination is important to meet nutrient concentration level for direct fertigation. The maximum DS dilution, however, occurs until the point of osmotic equilibrium between DS and feed solution (FS) thereby limiting the extent of DS dilution. Post-treatment such as nanofiltration (NF) process is required to reduce the fertiliser concentration. In this study however, pressure assisted fertiliser drawn osmosis (PAFDO) process was investigated to enhance DS dilution beyond the point of osmotic equilibrium and potentially eliminate NF post-treatment. The hydraulic pressure applied enhanced water flux significantly depending on the pressure. The applied pressure was found more effective at lower DS concentrations than at higher DS concentrations. For example, when a pressure of 10 bar was applied to 10 g/L NaCl FS with 0.1 M (NH4)(2)SO4 DS, the water flux increased by 1928% against 38% with 3.0 M (NH4)(2)SO4 DS. This additional water flux could dilute the fertiliser DS beyond the osmotic equilibrium concentrations thereby meeting the fertigation standard. PAFDO could potentially eliminate NF post-treatment significantly helping reduce the footprint and capital cost. However, the effective gain in water flux due to applied pressure at osmotic equilibrium decreased with the increase in the FS concentrations. (C) 2015 Elsevier B.V. All rights reserved.
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공과대학 (건축사회환경공학부)
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