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首页> 外文期刊>Reactive & Functional Polymers >Gelatin/sodium triphosphate hydrogel electrospun nanofiber mat as a novel nanosorbent for microextraction in packed syringe of La~(3+) and Tb~(3+) ions prior to their determination by ICP-OES
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Gelatin/sodium triphosphate hydrogel electrospun nanofiber mat as a novel nanosorbent for microextraction in packed syringe of La~(3+) and Tb~(3+) ions prior to their determination by ICP-OES

机译:明胶/三磷酸钠水凝胶电纺纳米纤维垫作为La〜(3+)和Tb〜(3+)离子的填充注射器微萃取的新型纳米吸附剂,通过ICP-OES测定

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摘要

In the present study, the novel gelatin/sodium triphosphate hydrogel nanofiber mat (GT/STP HNFM) was fabricated using the electrospinning strategy. Owing to the formation of ionic complex between STP and GT, the water stability of synthesized nanofiber increased, thereafter, the synthesized water-insoluble nanofiber was applied as a novel nanosorbent in microextraction in packed syringe (MEPS) method, using for the preconcentration of La3+ and Tb3+ in environmental and industrial water samples to the detection of them by an inductively coupled plasma optical emission spectroscopy (ICP-OES). The characterization of nanosorbent was performed and the effect of main parameters on adsorption performance were investigated. Under the optimum condition, the method showed a good linearity ranging from 1 to 500 ng mL(-1) with a correlation coefficient superior to 0.998. Additionally, the low detection limits (0.1-0.2 ng mL(-1)) revealed good sensitivity of the proposed method. Finally, the MESP-ICP-OES method was applied for the determination of La3+ and Tb3+ in environmental and industrial water samples with relative recoveries (RRs) ranging from 85 to 102% and relative standard deviations (RSDs) lower than 2.7%. The outcome of this study revealed an effective method for the extraction and recovery of La3+ and Tb3+ from aqueous solutions using a non-toxic, inexpensive, and efficient nanosorbent.
机译:在本研究中,使用静电纺丝策略制造新型明胶/三磷酸钠水凝胶纳米纤维垫(GT / STP HNFM)。由于在STP和GT之间形成离子络合物,因此合成纳米纤维的水稳定性增加,此后,将合成的水不溶性纳米纤维作为新的纳米吸道剂在填充注射器(MEPS)方法中以微萃取,使用La3 +的前浓缩在环境和工业用水中的TB3 +通过电感耦合等离子体光发射光谱(ICP-OES)检测它们。进行了纳米吸水剂的表征,研究了主要参数对吸附性能的影响。在最佳条件下,该方法显示出从1至500ng ml(-1)的良好线性,相关系数优于0.998。另外,低检测限(0.1-0.2 ng ml(-1))显示了该方法的良好敏感性。最后,施用MES-ICP-OES方法,用于测定La3 +和Tb3 +的环境和工业水样中的相对回收(RRS),范围为85至102%,相对标准偏差(RSD)低于2.7%。该研究的结果揭示了使用无毒,廉价,高效的纳米吸道物从水溶液中提取和回收La3 +和Tb3 +的有效方法。

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