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双交联壳聚糖海绵包埋 ZrO/大豆分离蛋白原纤维纳米粒子用于水中氟离子的去除。

Double cross-linked chitosan sponge encapsulated with ZrO/soy protein isolate amyloid fibrils nanoparticles for the fluoride ion removal from water.

机构信息

School of Chemical and Environmental Engineering, China University of Mining and Technology (Beijing), Beijing 100083, China; Ordos Laboratory, Inner Mongolia, 017000, China.

School of Chemical and Environmental Engineering, China University of Mining and Technology (Beijing), Beijing 100083, China.

出版信息

Int J Biol Macromol. 2024 Nov;279(Pt 4):135520. doi: 10.1016/j.ijbiomac.2024.135520. Epub 2024 Sep 10.

DOI:10.1016/j.ijbiomac.2024.135520
PMID:39260643
Abstract

Fluoride ion pollution in water has become a serious threat to the water environment and human health. Adsorption is a promising means of fluoride removal, but it also faces challenges such as the difficult separation and recovery of powdered particles, the leaching of modified coatings from adsorbents, and the structural disintegration of macroscopic adsorbents. For addressing the above challenges, glutaraldehyde/polyvinyl alcohol co-crosslinked ZrSAF/chitosan spongy composites (ZrS/GPCS) were prepared by utilizing encapsulation strategies and cross-linking. ZrS/GPCS-1, ZrS/GPCS-3 and ZrS/GPCS-4 were prepared due to the different amounts of cross-linking agents. The results showed that their fluoride ion adsorption capacities were 42.02, 44.44 and 39.84 mg/g, respectively. The removal of fluoride ions by ZrS/GPCS was maintained at >80 % in the pH range of 4-10. The addition of glutaraldehyde and polyvinyl alcohol affected the contact efficiency of fluoride ions with chitosan and ZrSAF, influencing the adsorption rate and adsorption effect. Glutaraldehyde, polyvinyl alcohol and ZrSAF improved the thermal stability, mechanical properties and structural integrity of chitosan matrix. Both the chitosan matrix and the internal ZrSAF played an important role in fluoride removal, and the removal mechanisms included electrostatic interaction, hydrogen bonding, and complexation.

摘要

氟离子污染已成为水环境和人类健康的严重威胁。吸附是去除氟化物的一种很有前途的方法,但它也面临着一些挑战,如粉末颗粒的难以分离和回收、改性涂层从吸附剂中浸出以及宏观吸附剂的结构解体。为了解决上述挑战,采用包埋策略和交联法制备了戊二醛/聚乙烯醇共交联 ZrSAF/壳聚糖海绵复合材料(ZrS/GPCS)。由于交联剂用量不同,制备了 ZrS/GPCS-1、ZrS/GPCS-3 和 ZrS/GPCS-4。结果表明,它们的氟离子吸附容量分别为 42.02、44.44 和 39.84mg/g。ZrS/GPCS 去除氟离子的效率在 pH 值为 4-10 的范围内保持在>80%。戊二醛和聚乙烯醇的加入影响了氟离子与壳聚糖和 ZrSAF 的接触效率,影响了吸附速率和吸附效果。戊二醛、聚乙烯醇和 ZrSAF 提高了壳聚糖基体的热稳定性、机械性能和结构完整性。壳聚糖基体和内部的 ZrSAF 都在氟化物去除中发挥了重要作用,去除机制包括静电相互作用、氢键和络合。

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