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September 10, 2025Advanced Materials8 citations

Harnessing Squid Bone for Ultra‐Permeable Water Purification Membranes

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SHS.M. HuangDLDaying LiuLZLiying Zhang

Key Points

  • The ultra-permeable membranes showed a remarkable pure water flux of 46,207 L·m−2·h−1 bar−1 and complete rejection of 100 nm nanoplastics.
  • Membranes with varying thicknesses achieved 100% rejection of 50 nm nanoplastics and 99.2% rejection of rhodamine B dye, demonstrating their effectiveness.
  • Crafted from squid bone, carboxylated β-chitin nanofibers optimize porosity and filtration efficacy through enhanced electrostatic repulsion.
  • Significant life cycle and techno-economic assessments indicate that this nature-inspired approach is sustainable and economically feasible.

Abstract

Abstract As emerging contaminants like nanoplastics, organic dyes, and inorganic particles proliferate, traditional water purification faces significant challenges. Here, a novel solution grounded in sustainability and efficiency: ultra‐permeable membranes crafted from carboxylated β‐chitin nanofibers derived from squid bone is introduced. The 124‐nm‐thick membrane exhibits an exceptional pure water flux of 46 207 L·m −2 ·h −1 bar −1 with complete rejection (100%) of 100 nm nanoplastics. The 247‐nm‐thick membrane achieves 100% rejection of 50 nm nanoplastics, whereas the 1.8‐µm‐thick membrane attains 99.2% rejection of 1.5 nm rhodamine B dye. The breakthrough performance is attributed to the nanofibers' ultrafine dimensions (1.2 × 2.2 nm) and enhanced porosity resulting from carboxylate‐mediated electrostatic repulsion. The mathematical models substantiate that this optimized porosity dramatically enhances filtration efficacy. Moreover, life cycle and techno‐economic assessments affirm the approach's sustainability and economic feasibility. By marrying advanced material science with circular economy principles, this squid bone‐derived membrane not only tackles global water purification challenges but also exemplifies how nature‐inspired innovation can lead to scalable, eco‐friendly solutions.

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Cite This Study

Huang et al. (2025) studied this question.

synapsesocial.com/papers/68c1aab854b1d3bfb60e2c5chttps://doi.org/10.1002/adma.202508514
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