数字农科院2.0

Selective separation of tanshinone homologs by biocomposite membranes based on poly(ionic liquids) and natural fibers

文献类型: 外文期刊

作者: Shaoping Ma;Changyong Cai;Xuhong Guo;Zhijian Tan

作者机构:

关键词: Membrane separation;Natural fibers;Poly(ionic liquids)

期刊名称: International Journal of Biological Macromolecules

ISSN: 0141-8130

年卷期: 2025 年 295 卷

页码:

收录情况: SCIE(2025版) ; ; EI(2025版)

摘要: Membranes have been used as versatile tools for the separation of various natural products; however, the selective separation of structural analogs of natural products using membranes remains challenging. In this study, biocomposite membranes based on poly(ionic liquids) and different natural fibers (jute, cotton, or wool) were successfully prepared. Natural fibers can regulate the microstructure and improve the mechanical properties of membranes. Fourier transform infrared spectroscopy, nuclear magnetic resonance spectroscopy, scanning electron microscopy, X-ray photoelectron spectroscopy, atomic force microscopy, Brunauer-Emmett-Teller analysis, and thermo gravimetric analysis were used to characterize the membranes. The membranes were used to separate tanshinone homologs (tanshinone I, tanshinone IIA, cryptotanshinone, and dihydrotanshinone I), allowing cryptotanshinone to penetrate the membrane while rejecting tanshinone I. A maximal selectivity of 44.57 % was obtained for the tanshinone homologs using a one-step separation protocol. These poly(ionic liquids)/natural fiber membranes possess high water flux, good self-cleaning, and good antibacterial properties. The membranes were effective in separating tanshinone homologs and have the potential to separate other natural homologs.

分类号:

  • 相关文献

[1]Benzylated modification and dyeing of ramie fiber in supercritical carbon dioxide. Liu, Zhao-Tie,Liu, Zhong-Wen,Liu, Zhao-Tie,Sun, Zhifeng,Liu, Zhong-Wen,Lu, Jian,Xiong, Heping.

[2]Supercritical CO2 dyeing of ramie fiber with disperse dye. Liu, Zhao-Tie,Zhang, Lili,Liu, Zhongwen,Gao, Ziwei,Dong, Wensheng,Xiong, Heping,Peng, Yuande,Tang, Shouwei.

[3]Proteomic Insights into citT-Deletion Induced Metabolic Sensitivity in Bio-Degumming of Ramie Fibers by Bacillus subtilis. Qi Yang,Yuqin Hu,Xiangyuan Feng,Guoguo Xi,Ke Zheng,Zhenghong Peng,Fengbo Han,Lifeng Cheng,Shengwen Duan. 2024

[4]Improvement of foaming and emulsifying properties of SPI via weak-base synchronized membrane separation: Insight from tuning the interfacial flexibility. Jiaqi Shao,Dengfeng Peng,Jing Yang,Fenghong Huang,Weiping Jin,Junxia Xiao,Shuai Sun,Feng Li,Tingzhao Li,Qianchun Deng. 2024

[5]A temperature-responsive mixed matrix membrane based on poly(ionic liquid)@poly(N-isopropylacrylaminde) microgels and polyvinylidene fluoride for the selective separation of citrus flavonoids. Zongkui Qin,Tian Lei,Shanshan Wang,Leilei Liu,Zhijian Tan. 2024

[6]Effect of soy protein isolates obtained by weak-base synchronized membrane separation on nanoemulsion stability: A comparison with alkaline extraction/isoelectric precipitation and salt extraction. Jiaqi Shao,Jing Yang,Ping Wu,Weiping Jin,Junxia Xiao,Lei Wang,Dengfeng Peng,Qianchun Deng. 2025

[7]Functionalizing walnut protein via consecutive purification and ultrasound modification: Self-assembled structure and interfacial properties. Jisong Zhou,Jingjing Wang,Wenjie Xia,Ying Peng,Jing Yang,Weiping Jin,Dengfeng Peng. 2025

作者其他论文 更多>>