College of Science, Northwest A&F University, Yangling, Shaanxi 712100, China.
Xi'an Institute of Geology and Mineral Resource, Xi'an, Shaanxi 710054, China.
Int J Biol Macromol. 2015;77:15-23. doi: 10.1016/j.ijbiomac.2015.03.008. Epub 2015 Mar 16.
In the present paper, zirconium immobilized cross-linked chitosan (Zr-CCS) was reported for the adsorption of fluoride. Zr-CCS was synthesized by methods of membrane-forming and subsequent cross-linking reaction. Zr-CCS was characterized by FTIR, XRD, and SEM technologies. Batch adsorption experiments were performed to evaluate the adsorption capacity of Zr-CCS toward fluoride. The adsorption of fluoride onto the Zr-CCS favored at low pH values, and reduced in the presence of other co-anions. The adsorption equilibrium data had a good agreement with the Langmuir isotherm model, and the maximum adsorption capacity was calculated as 48.26mg/g for fluoride at 303K and natural pH (6.0). Thermodynamic parameters indicate that the nature of fluoride adsorption was spontaneous and endothermic. The adsorption mechanism of fluoride onto the Zr-CCS was controlled by chemical ion-exchange and electrostatic attraction between Zr-CCS and fluoride.
在本论文中,报道了一种用于氟离子吸附的锆固载交联壳聚糖(Zr-CCS)。Zr-CCS 通过成膜方法和随后的交联反应合成。通过 FTIR、XRD 和 SEM 技术对 Zr-CCS 进行了表征。进行了批量吸附实验以评估 Zr-CCS 对氟化物的吸附能力。氟离子在 Zr-CCS 上的吸附在低 pH 值下有利,并在存在其他共阴离子时减少。吸附平衡数据与 Langmuir 等温线模型吻合良好,在 303K 和自然 pH(6.0)下,氟化物的最大吸附容量计算为 48.26mg/g。热力学参数表明,氟离子吸附的性质是自发和吸热的。氟离子在 Zr-CCS 上的吸附机制受 Zr-CCS 和氟离子之间的化学离子交换和静电吸引控制。