Iranian National Institute for Oceanography and Atmospheric Science, P.O. Box: 141554781, Tehran, Iran.
Department of Chemistry, Faculty of Science, K. N. Toosi University of Technology, Tehran, Iran.
Sci Rep. 2020 Feb 24;10(1):3279. doi: 10.1038/s41598-020-60232-x.
The core shell nanostructure of magnetic polystyrene (PS@FeO) was prepared and its physic-chemical properties were studied FT-IR, SEM, TEM, VSM and BET + BJH. The new adsorbent was applied in the dispersive solid phase extraction technique for measuring copper ions in water, Soil and Oyster samples. Analysis is carried out using a flame atomic absorption spectrometry system. Effective parameters on extraction efficiency, such as pH of extraction solution, sorbent dosage, contact time, concentration and volume of desorption eluent and desorption time were optimized using one at a time method. N adsorption-desorption experiment resulted in high BET surface area (32.002 m g) and large pore volume (0.1794 cm g) for PS@ FeO nanocomposite. Under the optimum conditions, a calibration curve within the range of 5-40 ng mL with an appropriate coefficient of determination (R) of 0.9946 was obtained. Preconcentration factor (PF) and limit of detection (LOD) were found to be 55 and 1.6 ng mL, respectively. The repeatability and reproducibility for three replicate measurements at the concentration of 25 ng mL were 2.5%-1.4%, respectively. The Freundlich adsorption isotherm and pseudo-second-order kinetic model were consistent to experimental data in adsorption mechanism study. The maximum adsorption capacity was 19.56 mg g for Cu (II). Finally, the efficiency of the method was investigated for analysis of the copper in environmental samples and good relative recoveries (RR%) were obtained within the range of 99.2% to 101.2%.
磁性聚苯乙烯(PS@FeO)核壳纳米结构被制备并研究了其物理化学性质,使用 FT-IR、SEM、TEM、VSM 和 BET+BJH 进行了研究。新型吸附剂应用于分散固相萃取技术中,用于测量水中、土壤和牡蛎样品中的铜离子。分析使用火焰原子吸收光谱系统进行。使用一次一条件法优化了萃取效率的有效参数,如萃取溶液的 pH 值、吸附剂用量、接触时间、洗脱剂浓度和体积以及洗脱时间。N 吸附-解吸实验得到了 PS@FeO 纳米复合材料的高 BET 表面积(32.002 m²/g)和大孔体积(0.1794 cm³/g)。在最佳条件下,在 5-40 ng/mL 的范围内获得了适当的相关系数(R)为 0.9946 的校准曲线。预浓缩因子(PF)和检测限(LOD)分别为 55 和 1.6 ng/mL。在 25 ng/mL 浓度下进行三次重复测量的重复性和重现性分别为 2.5%-1.4%。吸附机制研究中,Freundlich 吸附等温线和拟二级动力学模型与实验数据一致。Cu(II)的最大吸附容量为 19.56 mg/g。最后,该方法的效率用于分析环境样品中的铜,得到了 99.2%至 101.2%的良好相对回收率(RR%)。