Application of lanthanum-modified silk fibroin/polyvinyl alcohol film for highly selective defluoridation in brick tea infusion.

IF 8.5 1区 化学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Liping Mei, Jiao Wei, Ruirui Yang, Wei Guo, Yuexin Liu, Fei Ke, Chuanyi Peng, Ruyan Hou, Guijie Chen, Junsheng Liu, Daxiang Li, Xiaochun Wan, Huimei Cai
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引用次数: 0

Abstract

To mitigate the risk associated with water-soluble fluoride in tea and to have less influence on the contents of tea infusion, a highly selective lanthanum modified silk fibroin (SF) and polyvinyl alcohol (PVA) composite film (SF/PVA-La) was prepared to remove fluoride from brick tea infusion. Notably, SF/PVA-La could remove about 48 % of the fluoride from in brick tea infusion within 30 min. Importantly, the reduction in total tea polyphenols in brick tea did not exceed 10 %, and the reduction in caffeine was only 0.4 %. In addition, the Langmuir model revealed a maximum fluoride adsorption capacity of 9.15 mg/g for SF/PVA-La in brick tea infusion. Both FTIR and XPS analyses confirmed that SF/PVA-La engages in electrostatic adsorption of fluoride ions, with ion exchange occurring between the hydroxyl groups on its surface and the fluoride ions. These findings underscore the potential of SF/PVA-La as an effective material for selective fluoride removal from brick tea infusions.

镧改性丝素/聚乙烯醇膜在砖茶冲剂中高选择性除氟的应用。
为了降低茶中水溶性氟化物的风险,减少对茶泡茶中氟含量的影响,制备了一种高选择性镧修饰丝素(SF)和聚乙烯醇(PVA)复合膜(SF/PVA- la)来去除砖泡茶中的氟。值得注意的是,SF/PVA-La在30 min内可去除砖茶中约48% %的氟化物。重要的是,砖茶中总茶多酚的减少不超过10 %,咖啡因的减少仅为0.4 %。此外,Langmuir模型显示,SF/PVA-La在砖茶冲剂中的最大氟吸附量为9.15 mg/g。FTIR和XPS分析均证实SF/PVA-La对氟离子进行静电吸附,其表面羟基与氟离子之间发生离子交换。这些发现强调了SF/PVA-La作为选择性去除砖茶中氟化物的有效材料的潜力。
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来源期刊
International Journal of Biological Macromolecules
International Journal of Biological Macromolecules 生物-生化与分子生物学
CiteScore
13.70
自引率
9.80%
发文量
2728
审稿时长
64 days
期刊介绍: The International Journal of Biological Macromolecules is a well-established international journal dedicated to research on the chemical and biological aspects of natural macromolecules. Focusing on proteins, macromolecular carbohydrates, glycoproteins, proteoglycans, lignins, biological poly-acids, and nucleic acids, the journal presents the latest findings in molecular structure, properties, biological activities, interactions, modifications, and functional properties. Papers must offer new and novel insights, encompassing related model systems, structural conformational studies, theoretical developments, and analytical techniques. Each paper is required to primarily focus on at least one named biological macromolecule, reflected in the title, abstract, and text.
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