2021
DOI: 10.1016/j.jece.2020.104854
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Innovative polymer-complex draw solution for copper(II) removal using forward osmosis

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Cited by 10 publications
(2 citation statements)
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“…Most of the recent literature on Cu removal by membrane filtration techniques is based on model solutions. As presented by researchers, it is possible to obtain a high Cu retention of Cu using polyethylenimine (PEI) cross-linked P84 NF membranes (>90%) [ 60 ], NF and FO process with piperazine/polyethyleneimine (PIP/PEI) membranes (95 and 99%, respectively) [ 61 ], NF like-forward osmosis (99.4%) [ 62 ], FO (95%) [ 63 ], RO (>90%) [ 64 ], NF (>90%) [ 65 ]. Moreover, with the support of Keggin polyoxometalates, the UF process allows one to obtain maximum metal retention at the level of 99% for Cd and Cu [ 66 ].…”
Section: Removal Of Heavy Metalsmentioning
confidence: 99%
“…Most of the recent literature on Cu removal by membrane filtration techniques is based on model solutions. As presented by researchers, it is possible to obtain a high Cu retention of Cu using polyethylenimine (PEI) cross-linked P84 NF membranes (>90%) [ 60 ], NF and FO process with piperazine/polyethyleneimine (PIP/PEI) membranes (95 and 99%, respectively) [ 61 ], NF like-forward osmosis (99.4%) [ 62 ], FO (95%) [ 63 ], RO (>90%) [ 64 ], NF (>90%) [ 65 ]. Moreover, with the support of Keggin polyoxometalates, the UF process allows one to obtain maximum metal retention at the level of 99% for Cd and Cu [ 66 ].…”
Section: Removal Of Heavy Metalsmentioning
confidence: 99%
“…Another approach that has been successfully implemented is the addition of a complexing agent, which can interact with the draw solute. For instance, the addition of poly(sodium 4-styrenesulfonate) to a MgCl 2 draw solution reduced the reverse solute flux due to the complexation and the increased molecular weight of the new complex [167].…”
Section: Forward Osmosismentioning
confidence: 99%