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基于镍氢纳米花的分散固相萃取法从水基质中萃取铜。

Nickel hydroxide nanoflower-based dispersive solid-phase extraction of copper from water matrix.

机构信息

Department of Chemistry, Yıldız Technical University, 34220, Istanbul, Turkey.

Department of Pharmacy, İstanbul Health and Technology University, Seyitnizam Street, No: 85, Istanbul, Turkey.

出版信息

Environ Monit Assess. 2022 Nov 21;195(1):133. doi: 10.1007/s10661-022-10653-0.

Abstract

In this work, a dispersive solid-phase extraction method based on Ni(OH) nanoflowers (Ni(OH)-NFs-DSPE) was developed to separate and preconcentrate copper ions from tap water samples for determination by flame atomic absorption spectrometry (FAAS). Ni(OH)-NFs was synthesized using a homogeneous precipitation technique and used as sorbent for copper preconcentration. X-ray diffraction, scanning electron microscopy, and Fourier-transform infrared spectroscopy were used to characterize the synthesized sorbent. All experimental variables were carefully optimized to achieve a high enhancement factor of 107.5-folds with respect to the detection sensitivity of the conventional FAAS. The proposed method's analytical parameters including LOD, LOQ, and linear range were determined as 1.33 μg/L, 4.42 μg/L, and 3.0-40 μg/L, respectively. To assess the applicability and reliability of the developed method, optimal conditions were applied to tap water samples and satisfactory percent recoveries (94-103%) were obtained for the samples spiked at 20 and 30 μg/L. This validated the accuracy and feasibility of the developed method to real samples. The developed method can be described as a simple, efficient, and rapid analytical approach for the accurate determination of trace copper ions in water samples.

摘要

在这项工作中,开发了一种基于 Ni(OH)纳米花的分散固相萃取方法(Ni(OH)-NFs-DSPE),用于从自来水中分离和浓缩铜离子,然后通过火焰原子吸收光谱法(FAAS)进行测定。使用均相沉淀技术合成了 Ni(OH)-NFs,并将其用作铜预浓缩的吸附剂。使用 X 射线衍射、扫描电子显微镜和傅里叶变换红外光谱对合成的吸附剂进行了表征。仔细优化了所有实验变量,以实现相对于常规 FAAS 检测灵敏度的 107.5 倍高增强因子。所提出方法的分析参数包括 LOD、LOQ 和线性范围,分别确定为 1.33μg/L、4.42μg/L 和 3.0-40μg/L。为了评估所开发方法的适用性和可靠性,在最优条件下应用于自来水样品,并对 20 和 30μg/L 浓度的样品进行了加标回收实验,得到了 94-103%的满意回收率。这验证了该方法对实际样品的准确性和可行性。该方法可以被描述为一种简单、高效、快速的分析方法,用于准确测定水样中的痕量铜离子。

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