2012PubMedRequires access

[The enhancement effect of potassium additives on ICP source radiation].

Jinzhong Chen, Nuan Wen, Jiang Sun, Xu Li, Baozhu Yang

Open publisher page 0 citations

Abstract

In order to improve the quality of inductively coupled plasma-atomic emission spectrum and reduce the detection limit of analysis, the influence of potassium additives into water samples on water samples' spectral intensity and signal-to-background ratio was studied. The excitation temperature and electron density of plasma were measured through multi-line slope and the Stark broadening method. The results demonstrated that the plasma spectral intensity intensity increases to a various degree after adding potassium additives into the sample solution. When the content of the potassium is 1.0 g x L(-1), the spectral lines intensity of element Al, Cr, Cu, Mn, Ni and Zn was increased by 8.62%, 32.29%, 108.45%, 6.06%, 64.98% and 54.99% respectively, the spectral signal-background ratio increased by about 7.90%, 30.95%, 104.60%, 5.21%, 66.00% and 52.82%, respectively. Under the conditions of the content of potassium is 1.0 g x L(-1) in the sample, the plasma excitation temperature increased by about 239.69 K than that without additive, and the electron density increased by about 4.99 x 10(11) cm(-3). It is thus clear that potassium additives can improve the quality of inductively coupled plasma-atomic emission spectrum.

About this research paper

What this paper is about

In order to improve the quality of inductively coupled plasma-atomic emission spectrum and reduce the detection limit of analysis, the influence of potassium additives into water samples on water samples' spectral intensity and signal-to-background ratio was studied. The excitation temperature and electron density of plasma were measured through multi-line slope and the Stark broadening method. The results demonstrated that the plasma spectral intensity intensity increases to a various degree after adding potassium additives into the sample solution. When the content of the potassium is 1.0 g x L(-1), the spectral lines intensity of element Al, Cr, Cu, Mn, Ni and Zn was increased by 8.62%, 32.29%, 108.45%, 6.06%, 64.98% and 54.99% respectively, the spectral signal-background ratio increased by about 7.90%, 30.95%, 104.60%, 5.21%, 66.00% and 52.82%, respectively. Under the conditions of the content of potassium is 1.0 g x L(-1) in the sample, the plasma excitation temperature increased by about 239.69 K than that without additive, and the electron density increased by about 4.99 x 10(11) cm(-3). It is thus clear that potassium additives can improve the quality of inductively coupled plasma-atomic emission spectrum.

Why it matters

A significance statement is not available in the OpenAlex record.

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

In order to improve the quality of inductively coupled plasma-atomic emission spectrum and reduce the detection limit of analysis, the influence of potassium additives into water samples on water samples' spectral intensity and signal-to-background ratio was studied. The excitation temperature and electron density of plasma were measured through multi-line slope and the Stark broadening method. The results demonstrated that the plasma spectral intensity intensity increases to a various degree after adding potassium additives into the sample solution. When the content of the potassium is 1.0 g x L(-1), the spectral lines intensity of element Al, Cr, Cu, Mn, Ni and Zn was increased by 8.62%, 32.29%, 108.45%, 6.06%, 64.98% and 54.99% respectively, the spectral signal-background ratio increased by about 7.90%, 30.95%, 104.60%, 5.21%, 66.00% and 52.82%, respectively. Under the conditions of the content of potassium is 1.0 g x L(-1) in the sample, the plasma excitation temperature increased by about 239.69 K than that without additive, and the electron density increased by about 4.99 x 10(11) cm(-3). It is thus clear that potassium additives can improve the quality of inductively coupled plasma-atomic emission spectrum.

Key concepts: Potassium, Inductively coupled plasma, Analytical Chemistry (journal), Excitation temperature, Chemistry, Inductively coupled plasma atomic emission spectroscopy, Emission intensity, Radiant intensity

Related papers

Back to paper searchBrowse research topicsOriginal source
[The enhancement effect of potassium additives on ICP source radiation]. — Research Paper | ScholarLens