2012PubMedRequires access

[Determination of selenium in plant samples by hydride generation atomic fluorescence spectrometry].

Ti-zhong Gou, Wenhua Tang, Wen‐hua Zhang, Shao-you Liu, WU Lin-dong

Open publisher page 1 citations

Abstract

A method was developed by hydride generation atomic fluorescence spectrometry (HG-AFS)for the determination of selenium in plant samples. Effects of reagent and pre-reduction method on the fluorescence intensity of selenium were studied. The influence of coexisting foreign ions on the determination of selenium was also investigated. Under the optimized digestive and experimental conditions, the linear regression equation was I = 139.98c + 27.71 for Se. The linear range, the correlation coefficient,and the detection limit of Se was 0-10 ng x mL(-1), 1.0000, and 1.45 ng x g(-1) respectively. The recovery of Se (98.9%-101%, mean=100%) was determined through the use of standard reference material. The relative standard deviation for nine replicate analyses was 0.73% for Se content in shrub leaves. This method was verified by analyzing the national reference material (GSV-1)and the found value was in good agreement with the certified value. The proposed method that was successfully used for the determination of Se in plant samples has the advantages of simple operation, low cost, and high efficiency.

About this research paper

What this paper is about

A method was developed by hydride generation atomic fluorescence spectrometry (HG-AFS)for the determination of selenium in plant samples. Effects of reagent and pre-reduction method on the fluorescence intensity of selenium were studied. The influence of coexisting foreign ions on the determination of selenium was also investigated. Under the optimized digestive and experimental conditions, the linear regression equation was I = 139.98c + 27.71 for Se. The linear range, the correlation coefficient,and the detection limit of Se was 0-10 ng x mL(-1), 1.0000, and 1.45 ng x g(-1) respectively. The recovery of Se (98.9%-101%, mean=100%) was determined through the use of standard reference material. The relative standard deviation for nine replicate analyses was 0.73% for Se content in shrub leaves. This method was verified by analyzing the national reference material (GSV-1)and the found value was in good agreement with the certified value. The proposed method that was successfully used for the determination of Se in plant samples has the advantages of simple operation, low cost, and high efficiency.

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

A method was developed by hydride generation atomic fluorescence spectrometry (HG-AFS)for the determination of selenium in plant samples. Effects of reagent and pre-reduction method on the fluorescence intensity of selenium were studied. The influence of coexisting foreign ions on the determination of selenium was also investigated. Under the optimized digestive and experimental conditions, the linear regression equation was I = 139.98c + 27.71 for Se. The linear range, the correlation coefficient,and the detection limit of Se was 0-10 ng x mL(-1), 1.0000, and 1.45 ng x g(-1) respectively. The recovery of Se (98.9%-101%, mean=100%) was determined through the use of standard reference material. The relative standard deviation for nine replicate analyses was 0.73% for Se content in shrub leaves. This method was verified by analyzing the national reference material (GSV-1)and the found value was in good agreement with the certified value. The proposed method that was successfully used for the determination of Se in plant samples has the advantages of simple operation, low cost, and high efficiency.

Key concepts: Selenium, Certified reference materials, Analytical Chemistry (journal), Detection limit, Chemistry, Hydride, Reagent, Mass spectrometry

Related papers

Back to paper searchBrowse research topicsOriginal source
[Determination of selenium in plant samples by hydride generation atomic fluorescence spectrometry]. — Research Paper | ScholarLens