Cai Jianguo, Zhang Yanyang, Qian Yue, Shan Chao, Pan Bingcai
State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing, 210023, China.
Research Center for Environmental Nanotechnology (ReCENT), Nanjing University, Nanjing, 210023, China.
Sci Rep. 2018 Aug 6;8(1):11741. doi: 10.1038/s41598-018-29497-1.
A novel nanocomposite bead LaLiAl-LDH@201 was fabricated by doping a small amount of La into nanocrystalline Li/Al layered double hydroxides (LDHs) pre-confined inside polystyrene anion exchanger D201 (LiAl-LDH@201). A systematic characterisation of the resultant LaLiAl-LDH@201 (XRD, SEM-EDS, TEM-EDS, and XPS) evidenced the successful incorporation of La into the Li/Al LDHs, with their interlayer distance expanded to allow more exchangeable sites for fluoride uptake. The resultant LaLiAl-LDH@201 showed high and stable defluoridation performance over a wide range of pH from 4 to 9. The superior uptake capacity and affinity for fluoride of LaLiAl-LDH@201 over LiAl-LDH@201 were driven by both the increased anion exchange capacity of the embedded LDHs and the specific La-F interaction evidenced via XPS and TEM-EDS characterisation. Fixed-bed column test confirmed that the working capacity of LaLiAl-LDH@201 for defluoridation of authentic fluoride-rich groundwater was nearly twice that of LiAl-LDH@201. The fluoride-loaded LaLiAl-LDH@201 could be conveniently regenerated in situ by using NaOH + NaCl binary solution, achieving desorption efficiency above 98%. Moreover, negligible capacity loss, La leaching, or structure alteration was observed after five adsorption-regeneration cycles, indicating the high stability of LaLiAl-LDH@201. Therefore, the novel millisphere nanocomposite LaLiAl-LDH@201 was promising for efficient defluoridation from water and wastewater.
通过将少量镧掺杂到预先限制在聚苯乙烯阴离子交换剂D201(LiAl-LDH@201)内的纳米晶Li/Al层状双氢氧化物(LDHs)中,制备了一种新型纳米复合珠LaLiAl-LDH@201。对所得的LaLiAl-LDH@201进行的系统表征(XRD、SEM-EDS、TEM-EDS和XPS)证明镧成功掺入Li/Al LDHs中,其层间距离扩大,以允许更多可用于氟吸收的交换位点。所得的LaLiAl-LDH@201在4至9的宽pH范围内表现出高且稳定的除氟性能。LaLiAl-LDH@201相对于LiAl-LDH@201对氟具有更高的吸收容量和亲和力,这是由嵌入的LDHs增加的阴离子交换容量以及通过XPS和TEM-EDS表征所证明的特定La-F相互作用共同驱动的。固定床柱试验证实,LaLiAl-LDH@201对真实富氟地下水的除氟工作容量几乎是LiAl-LDH@201的两倍。负载氟的LaLiAl-LDH@201可以方便地用NaOH + NaCl二元溶液原位再生,脱附效率达到98%以上。此外,在五个吸附-再生循环后,观察到容量损失、镧浸出或结构改变可忽略不计,表明LaLiAl-LDH@201具有高稳定性。因此,新型微球纳米复合材料LaLiAl-LDH@201有望用于高效去除水和废水中的氟。