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用于去除氟离子的仿生有机-无机杂化膜

Biomimetic Organic-Inorganic Hybrid Membranes for Removal of Fluoride Ions.

作者信息

Chen Yun, Kong Hao, Guo Lei, Wei Gang

机构信息

College of Chemistry and Chemical Engineering, Qingdao University, Qingdao 266071, China.

Institute of Biomedical Engineering, College of Life Science, Qingdao University, Qingdao 266071, China.

出版信息

Materials (Basel). 2022 May 11;15(10):3457. doi: 10.3390/ma15103457.

Abstract

Carbon nanofibers (CaNFs) exhibit promising applications in the fields of environmental science and nanotechnology, and self-assembled peptide nanofibers (PNFs) are useful for the biomimetic synthesis of organic-inorganic hybrid nanomaterials and the fabrication of functional hybrid membranes for the removal of various pollutants from water. In this work, we report the biomimetic synthesis of hybrid nanomaterials by the interweaving of CaNFs and PNFs. Using the biomimetic mineralization properties of PNFs, ZrO nanoparticles were synthesized along the nanofiber surface, and then functional nanohybrid porous membranes were prepared by the vacuum filtration technology. For the fabrication of membranes, the amount of PNFs and ZrO precursors in the hybrid membrane were optimized. The designed organic-inorganic hybrid membranes exhibited high removal performance for fluorine ion (F) from water, and the removal efficiency of the fabricated membranes towards F ion-containing aqueous solution with a concentration of 50-100 mg/L reached more than 80%. In addition, the nanofiltration membranes revealed good adsorption capacity for F ions. It is expected that the strategies shown in this study will be beneficial for the design, biomimetic synthesis, and fabrication of nanoporous membranes for economic, rapid, and efficient water purification.

摘要

碳纳米纤维(CaNFs)在环境科学和纳米技术领域展现出了广阔的应用前景,而自组装肽纳米纤维(PNFs)则有助于有机-无机杂化纳米材料的仿生合成以及用于去除水中各种污染物的功能性杂化膜的制备。在这项工作中,我们报道了通过CaNFs和PNFs的交织进行杂化纳米材料的仿生合成。利用PNFs的仿生矿化特性,沿纳米纤维表面合成了ZrO纳米颗粒,然后通过真空过滤技术制备了功能性纳米杂化多孔膜。对于膜的制备,优化了杂化膜中PNFs和ZrO前驱体的用量。所设计的有机-无机杂化膜对水中氟离子(F)表现出高去除性能,所制备的膜对浓度为50-100mg/L的含F离子水溶液的去除效率达到80%以上。此外,纳滤膜对F离子显示出良好的吸附能力。预计本研究中所示的策略将有利于用于经济、快速和高效水净化的纳米多孔膜的设计、仿生合成和制备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4df7/9147820/ce884e222ec6/materials-15-03457-g001.jpg

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