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Thin-film composite nanofiltration membrane based on polyurea for extreme pH condition
被引:43
|作者:
Zhang, Yang
[1
]
Wan, Ying
[2
]
Li, Yu
[1
]
Pan, Guoyuan
[1
]
Yu, Hao
[1
]
Du, Wenjie
[1
]
Shi, Hongwei
[1
]
Wu, Changjiang
[1
]
Liu, Yiqun
[1
]
机构:
[1] SINOPEC Beijing Res Inst Chem Ind, Beijing 100013, Peoples R China
[2] China Natl Pulp & Paper Res Inst, Beijing 100102, Peoples R China
关键词:
Interfacial polymerization;
Nanofiltration;
pH-stable;
Polyurea;
Thin-film composite membrane;
REVERSE-OSMOSIS MEMBRANES;
NF MEMBRANES;
WATER-TREATMENT;
WASTE-WATER;
ACID;
SEPARATION;
PERFORMANCE;
RESISTANCE;
FUTURE;
ENERGY;
D O I:
10.1016/j.memsci.2021.119472
中图分类号:
TQ [化学工业];
学科分类号:
0817 ;
摘要:
A series of thin-film composite membranes based on polyurea has been fabricated by interfacial polymerization with branched polyethyleneimine and piperazine in the aqueous phase, and multi-isocyanate in the organic phase on porous polyethersulfone support for extreme pH nanofiltration. It is found that 1,4-phenylene diisocyanate and toluene diisocyanate are more suitable to react with multi-amine to form the dense crosslinking layer, thereby achieving improved permeation and separation properties. By optimizing the ratio of polyethyleneimine to piperazine in the aqueous phase and 1,4-phenylene diisocyanate content in the organic phase, the best performance membrane with a MgSO4 rejection higher than 97.0% has been obtained. The surface properties of the polyurea-based membranes, such as surface charge, hydrophilicity, roughness, and morphology structure have been characterized in detail. After exposure to 20% (wt/v) HCl, 20% (wt/v) H2SO4, as well as 20% (wt/v) NaOH aqueous solution for one year, PEI-0.4/PDI-0.25 membrane can still retain MgSO4 rejection higher than 90% at neutral pH testing condition, with more than a two-fold increase of water flux, due to the swelling of the polyurea separation layer. The relationship between the molecular structure of polyurea and acid/alkali stability of membrane is also investigated. More importantly, the optimal polyurea-based nanofiltration membrane exhibits comparable acid/alkali stability to commercial MPS-34 membrane produced by Koch industries, displaying a broad field of application with good prospects.
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页数:14
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