Atmosphere-pressure glow discharging detection method for metal ions and detection system

A glow discharge and metal ion technology, applied in the field of spectral analysis of analytical chemistry, can solve the problems of harsh operation, long time-consuming, cumbersome steps, etc., and achieve the effect of improving analysis ability, improving analysis efficiency and simple operation.

Active Publication Date: 2017-01-04
CHINA UNIV OF GEOSCIENCES (WUHAN)
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Problems solved by technology

However, the analytical performance of APGD excitation sources reported so far is still far behind that of large-scale laboratory instruments. The pre-enrichment of the elements to be detected through sample pretreatment (such as solid-phase extraction) can improve the analytical performance of APGD, but it will bring How to further improve the performance of APGD analysis in a simple and effective way has become an urgent problem to be solved

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  • Atmosphere-pressure glow discharging detection method for metal ions and detection system
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  • Atmosphere-pressure glow discharging detection method for metal ions and detection system

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Embodiment Construction

[0034] The present invention will be described in detail below in conjunction with the accompanying drawings and embodiments, and the content of the present invention is not limited to the following embodiments.

[0035] The invention provides a method for detecting metal ions by atmospheric pressure glow discharge, comprising the following steps:

[0036] (1) Fill the APGD excitation source with argon gas at a flow rate of 300mL / min;

[0037] (2) The APGD excitation source is ignited to generate a normal pressure glow discharge, the power supply is adjusted to a steady current mode, the current is stable at 20-40mA, and the voltage range is 500-1000V;

[0038](3) The sample solution is introduced into the hydride generator, the sample solution reacts in the hydride generator to generate analyte gaseous species, the analyte gaseous species is taken out by argon and mixed with oxygen, and the above mixed gas is continuously passed into APGD Pre-enrichment is carried out in the...

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Abstract

The invention provides an atmosphere-pressure glow discharging detection method for metal ions and a detection system. The detection method includes the steps that by controlling oxygen doping, analyte is subjected to in-situ on-line capturing and enriched inside an APGD excitation source; after the analyte is pre-enriched for certain time, supplying of carrying gas, the gaseous analyte and oxygen is stopped, and the gas inlet end of the APGD excitation source is closed; after 1 s to 3 s, the gas inlet end of the APGD excitation source is opened again, supplying of the carrying gas and the gaseous analyte is recovered, disturbance is generated in the glow-discharge-plasma static environment inside the APGD excitation source, and the pre-enriched analyte is released. Disturbance is generated in the mode that an electromagnetic valve is controlled by a computer to be frequently turned on and off; software integrated control can be achieved in the enriching-releasing process, and the precision degree and the automation degree are high; as the complex and time-consuming pretreatment pre-enrichment process is replaced with the in-situ on-line pre-enrichment technology, the quantitative detection analysis efficiency of samples is greatly improved, and the detection limit is reduced by an order of magnitude.

Description

technical field [0001] The invention relates to a detection method and a detection system of metal ions, in particular to a method and a detection system of atmospheric pressure glow discharge detection of metal ions, which belong to the field of spectral analysis of analytical chemistry. Background technique [0002] With the increase of human activities, including the mining, smelting, processing and commercial manufacturing activities of various metal minerals in agricultural industry, metal ion pollution is becoming more and more serious. And it contains heavy metal elements with significant biological toxicity in terms of environmental pollution, such as mercury, cadmium, lead, antimony, chromium, and metalloid arsenic. If the heavy metal elements are not treated, they will be directly discharged into rivers, lakes or oceans, or enter the soil. , Because they cannot be biodegraded, these rivers, lakes, oceans and soils are polluted. Under the biomagnification of the foo...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N21/33
CPCG01N21/33
Inventor 朱振利杨春郑洪涛胡圣虹
Owner CHINA UNIV OF GEOSCIENCES (WUHAN)
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