School of Pharmacy, Yantai University, Yantai 264005, Shandong, China.
Department of Food Engineering, Shandong Business Institute, Yantai 264670, Shandong, China.
Int J Biol Macromol. 2024 Nov;280(Pt 2):135879. doi: 10.1016/j.ijbiomac.2024.135879. Epub 2024 Sep 23.
The extensive use of tetracycline (TC) for disease control and the residuals in wastewater has resulted in the spread and accumulation of antibiotic resistance genes, posing a severe threat to the human health and environmental safety. To solve this problem, a series of double-network hydrogel beads based on sodium alginate and polyvinyl alcohol were constructed with the introduction of various surfactants to modulate the morphology. The results showed that the introduction of surfactants can modulate the surface morphology and internal structure, which can also regulate the adsorption ability of the hydrogel beads. The SDS-B beads with SDS as surfactant exhibited highest adsorption efficiency for removal of TC with a maximum adsorption capacity up to 121.6 mg/g, which possessed a resistance to various cations and humic acid. The adsorption mechanism revealed that the superior adsorption performance of the hydrogel beads was primarily attributed to hydrogen bonding, electrostatic attraction, and π-π EDA interactions. Adsorption kinetics demonstrated that the pseudo-second-order model fitted the adsorption process well and adsorption isotherm showed the adsorption of TC occurred through both chemical and physical interactions. Moreover, the adsorption efficiency remained approximately 87.5 % after three adsorption-desorption cycles, which may have potential application and practical value in TC adsorption.
四环素(TC)被广泛用于疾病控制,其在废水中的残留导致了抗生素耐药基因的传播和积累,对人类健康和环境安全构成了严重威胁。为了解决这个问题,我们构建了一系列基于海藻酸钠和聚乙烯醇的双网络水凝胶珠,引入了各种表面活性剂来调节其形态。结果表明,表面活性剂的引入可以调节水凝胶珠的表面形态和内部结构,从而调节其吸附能力。以 SDS 作为表面活性剂的 SDS-B 珠对 TC 的去除具有最高的吸附效率,最大吸附容量高达 121.6 mg/g,并且对各种阳离子和腐殖酸具有抗性。吸附机制表明,水凝胶珠具有优越的吸附性能,主要归因于氢键、静电吸引和π-π EDA 相互作用。吸附动力学表明,准二级动力学模型很好地拟合了吸附过程,吸附等温线表明 TC 的吸附是通过化学和物理相互作用共同进行的。此外,经过三次吸附-解吸循环后,吸附效率仍保持在约 87.5%,这可能使其在 TC 吸附方面具有潜在的应用和实用价值。