Engineering Research Center of Biofilm Water Purification and Utilization Technology of Ministry of Education, Anhui University of Technology, Ma'anshan, 243032, China.
School of Energy and Environment, Anhui University of Technology, Anhui, Maanshan, 243032, China.
Environ Sci Pollut Res Int. 2023 Oct;30(48):105538-105555. doi: 10.1007/s11356-023-29810-0. Epub 2023 Sep 16.
A novel epichlorohydrin and thiourea grafted porous alginate adsorbent (UA-Ca/IIP) was synthesized using ion-imprinting and direct templating to remove copper ions (Cu(II)) and tetracycline (TC) in aqueous solution. UA-Ca/IIP demonstrated great selectivity for Cu(II) and TC among different coexisting anions (CO, PO and SO), cations (Ca, Mg and NH), and antibiotics (oxytetracycline and sulfamethoxazole). The adsorption of TC and Cu(II) by UA-Ca/IIP was significantly affected by the pH of the solution, and the quantity of TC and Cu(II) adsorbed reached a maximum at pH 5. A pseudo-second-order model better fitted the kinetic data; the Langmuir model predicted the maximum adsorption quantities 3.527 mmol TC g and 4.478 mmol Cu(II) g at 298 K. Thermodynamic studies indicated that the TC and Cu(II) adsorption was more rapid at a higher temperature. Antagonistic and synergistic adsorption experiments showed that the adsorption capacity of TC would increase significantly with the increase of Cu(II) concentration. Fourier transform infrared spectroscopy and X-ray photoelectron spectroscopy indicated that along with the influence of pH, electrostatic interaction and complexation were the main mechanisms of TC and Cu(II) adsorption. Regeneration experiments revealed that TC and Cu(II) were removed efficiently and that UA-Ca/IIP was recyclable over the long term. These results show that the modified porous alginate microsphere is a green and recyclable adsorbent, which has good selectivity and high adsorption performance for the removal of TC and Cu(II).
采用离子印迹和直接模板法合成了一种新型的表氯醇和硫脲接枝多孔海藻酸钠吸附剂(UA-Ca/IIP),用于去除水溶液中的铜离子(Cu(II))和四环素(TC)。UA-Ca/IIP 在不同共存阴离子(CO、PO 和 SO)、阳离子(Ca、Mg 和 NH)和抗生素(土霉素和磺胺甲恶唑)中对 Cu(II)和 TC 表现出很强的选择性。TC 和 Cu(II)的吸附受溶液 pH 值的显著影响,在 pH 5 时,TC 和 Cu(II)的吸附量达到最大值。拟二级动力学模型更好地拟合了动力学数据;Langmuir 模型预测在 298 K 时最大吸附量分别为 3.527 mmol TC g 和 4.478 mmol Cu(II)g。热力学研究表明,在较高温度下,TC 和 Cu(II)的吸附更为迅速。拮抗和协同吸附实验表明,随着 Cu(II)浓度的增加,TC 的吸附容量会显著增加。傅里叶变换红外光谱和 X 射线光电子能谱表明,随着 pH 的影响,静电相互作用和络合是 TC 和 Cu(II)吸附的主要机制。再生实验表明,UA-Ca/IIP 能够有效地去除 TC 和 Cu(II),并且可以长期循环使用。这些结果表明,改性多孔海藻酸钠微球是一种绿色、可回收的吸附剂,对去除 TC 和 Cu(II)具有良好的选择性和高吸附性能。