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April 18, 2026Separations1 citationsOpen Access

Fabrication of Hollow Fiber Loose Nanofiltration Membrane via Metal-Organic Bonding and PA-PEI Dual Coating for Superior Dye/Salt Separation

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MJMengmeng JiaMSMengchen ShiYWYi Wang

Key Points

  • To develop hollow fiber membranes for efficient dye and salt separation from saline textile wastewater.
  • Fabrication of hollow fiber substrates using non-solvent-induced phase separation (NIPS) method.
  • Application of dual-coating with phytic acid (PA) and polyethyleneimine (PEI).
  • Testing water permeance, dye rejection rates, and membrane stability under various conditions.
  • Achieved pure water permeability of 280 L·m−2·h−1·bar−1.
  • Dye rejection rates exceeded 95% across tests.
  • Separation factors demonstrated high selectivity, particularly with CR/NaCl at 64.08.
  • Flux recovery for humic acid surpassed 80% under various conditions.

Abstract

The efficient removal of dyes and separation from dissolved salts are crucial for the recovery of valuable resources from saline textile wastewater. In this study, hollow fiber membranes were fabricated using the non-solvent-induced phase separation (NIPS) method and then improved with a dual-coating process to create effective nanofiltration (NF) membranes. First, hollow fiber substrates with Fe3+ were fabricated using NIPS. Subsequently, the inner surface of the membrane was coated with phytic acid (PA) and polyethyleneimine (PEI), which increased the thickness of the separation layer and reduced the size of the surface pores, thereby improving the separation efficiency. The loose NF membrane exhibited superior water permeance (pure water permeability of 280 L·m−2·h−1·bar−1) and, with dye rejection rates consistently exceeding 95%, also remarkable dye/salt selectivity (with separation factors of CR/NaCl: 64.08, CR/Na2SO4: 21.21, CBB/NaCl: 14.75, and CBB/Na2SO4: 10.74). The flux recovery of the membrane was over 80% for humic acid, and the membrane exhibited favorable stability under acidic and alkaline conditions, confirming its excellent antifouling and stability performance. In conclusion, this study presents a straightforward and effective approach for fabricating hollow fiber loose NF membranes, underscoring their potential for treating hypersaline wastewater and resource recovery.

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Cite This Study

Jia et al. (2026) studied this question.

synapsesocial.com/papers/69e3201440886becb653f20ahttps://doi.org/10.3390/separations13040120
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