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用于可持续高效吸附四环素抗生素的先进生物聚合物基钛/对苯二甲酸硅杂化材料。

Advanced biopolymer-based Ti/Si-terephthalate hybrid materials for sustainable and efficient adsorption of the tetracycline antibiotic.

作者信息

Baig Mirza Talha, Kayan Asgar

机构信息

Department of Chemistry, Kocaeli University, 41380 Kocaeli, Turkey.

Department of Chemistry, Kocaeli University, 41380 Kocaeli, Turkey.

出版信息

Int J Biol Macromol. 2024 Sep 16;280(Pt 1):135676. doi: 10.1016/j.ijbiomac.2024.135676.

DOI:10.1016/j.ijbiomac.2024.135676
PMID:39288857
Abstract

This study involves the synthesis of an organic-inorganic hybrid material consisting of Ti/Si-terephthalate (Ti-TPA-Si) in a 1:1:1 ratio using sol-gel method and its reaction with cellulose and chitosan (Ti-TPA-Si-C and Ti-TPA-Si-CS). Characterization techniques such as XRD, FTIR, SEM, EDS, XPS, BET, TGA, and DTA were used. The incorporation of biopolymers (cellulose and chitosan) into the Ti/Si-terephthalate structure improved the morphology and textural properties of the hybrid materials, leading to increased adsorption capacity and sustainability. Adsorption experiments reveal that Ti-TPA-Si, Ti-TPA-Si-C, and Ti-TPA-Si-CS hybrid materials exhibit a high affinity towards tetracycline, achieving remarkable adsorption efficiencies of 88.27, 89.60, and 88.98 %, respectively. Isotherm studies indicate that the adsorption process follows both Langmuir (R = 0.971, 0.990, and 0.994) and Dubinin-Radushkevich (R = 0.922, 0.965, and 0.949) isotherm models. According to the Langmuir model, the maximum adsorption capacity (q) of Ti-TPA-Si, Ti-TPA-Si-C, and Ti-TPA-Si-CS adsorbents was found to be 24.10, 33.56, and 26.59 mg/g, respectively. Kinetic studies indicate that the adsorption process follows both pseudo-second-order (R = 0.998, 0.984, and 0.989) and intra-particle diffusion (R = 0.995, 0.994, and 0.988) models. Thermodynamic studies reveal that adsorption processes are spontaneous and endothermic in nature. Reusability studies demonstrate their potential for repeated use without significant loss in performance.

摘要

本研究涉及采用溶胶 - 凝胶法合成比例为1:1:1的钛/硅 - 对苯二甲酸酯(Ti - TPA - Si)有机 - 无机杂化材料,并使其与纤维素和壳聚糖反应(Ti - TPA - Si - C和Ti - TPA - Si - CS)。使用了XRD、FTIR、SEM、EDS、XPS、BET、TGA和DTA等表征技术。将生物聚合物(纤维素和壳聚糖)掺入Ti/硅 - 对苯二甲酸酯结构中改善了杂化材料的形态和织构性质,从而提高了吸附容量和可持续性。吸附实验表明,Ti - TPA - Si、Ti - TPA - Si - C和Ti - TPA - Si - CS杂化材料对四环素具有高亲和力,吸附效率分别达到88.27%、89.60%和88.98%。等温线研究表明,吸附过程符合朗缪尔(R = 0.971、0.990和0.994)和杜宾宁 - 拉杜什凯维奇(R = 0.922、0.965和0.949)等温线模型。根据朗缪尔模型,发现Ti - TPA - Si、Ti - TPA - Si - C和Ti - TPA - Si - CS吸附剂的最大吸附容量(q)分别为24.10、33.56和26.59 mg/g。动力学研究表明,吸附过程符合准二级(R = 0.998、0.984和0.989)和颗粒内扩散(R = 0.995、0.994和0.988)模型。热力学研究表明,吸附过程本质上是自发的且吸热的。可重复使用性研究证明了它们具有重复使用且性能无显著损失的潜力。

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