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Pretreatment method for liquid-phase micro-extraction sample

A sample pretreatment and extraction technology, applied in the preparation of test samples, measuring devices, instruments, etc., can solve the problems that the balance cannot be truly realized, the stirring speed of the sample pool is low, and the extraction time is limited, so as to improve the sensitivity and extraction efficiency , high stability, and the effect of increasing the extraction volume

Inactive Publication Date: 2008-11-26
HUAZHONG NORMAL UNIV
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  • Abstract
  • Description
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AI Technical Summary

Problems solved by technology

[0006] (2) The liquid droplets suspended on the needle tip will drop due to slight vibrations, so the experiment has very high requirements on the experimental environment, and requires the operator to be extremely careful, and the stirring speed of the sample pool must also be adjusted very low
[0007] (3) Due to the decrease of the droplet volume, its vapor pressure rises, causing the extraction agent to be extremely volatile, and the extraction time is limited. Generally speaking, the extraction of the analyte has stopped before the equilibrium between the two phases is reached, and the equilibrium cannot be achieved. Really realized, resulting in relatively poor enrichment effect and relatively low sensitivity
Since the liquid film is always fixed on the microporous film, the choice of organic solvent in the liquid film is very important to its stability, and must meet the conditions such as non-water solubility, non-volatility and low viscosity, so there are only a few organic solvents ( n-undecane, n-hexyl ether, etc.) are available, and the efficiency of using these solvents to separate and enrich polar compounds is often low

Method used

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  • Pretreatment method for liquid-phase micro-extraction sample

Examples

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Embodiment Construction

[0029] The example structure of this Fangming liquid phase microextraction method is as figure 1 As shown, the device includes a magnetic stirrer 1, a 0.2 ml PCR tube (cut off the cap in advance) 2, a sample bottle 3, a bottle stopper 4, and a stirring magnet 5. Fill the bottom of the PCR tube 2 with an appropriate amount of extraction solution, then seal it with an appropriate amount of sample solution, insert the PCR tube mouth upwards into the bottle stopper 4 of the sample bottle 3, and fill the sample containing the analyte solution (sample solution). A stirring magnet is placed in the bottle 3, the bottle stopper 4 equipped with the PCR tube is inserted into the sample bottle 3 containing the sample solution, and the sample bottle 3 is placed sideways on a magnetic stirrer for stirring and extraction.

[0030] Utilize the liquid-phase microextraction method of the present invention to measure the broad grass clear and two analogs thereof in the water sample:

[0031] Ad...

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Abstract

This invention relates to one liquid phase extract sample front process method, which comprises the following steps: a, taking one magnetic mixture device and one tube cover PCR tube for 0.2 ml without cover, one sample bottle, bottle plug and mixture magnetic probe; b, containing extraction liquid in bottom of PCR tube for liquid sealing by sample liquid; c, plugging the PCR tube into bottle plug; d, taking sample liquid in the sample bottle with mixture magnetic probes; e, containing the plug of tube into sample bottle for mixing and extraction.

Description

technical field [0001] The invention relates to a liquid phase micro-extraction sample pretreatment method. Background technique [0002] The sample pretreatment technology has an important impact on the analysis results and has been paid much attention. Currently widely used pretreatment techniques include liquid-liquid extraction (LLE), solid-phase extraction (SPE), solid-phase microextraction (SPME), and membrane extraction. Classical liquid-liquid extraction is cumbersome to operate, uses a large amount of organic solvents that are toxic or harmful to humans and the environment, and is not easy to automate. SPE technology has been rapidly developed in many fields due to its advantages of high efficiency, reliability, and low solvent consumption, but it needs to elute and purify substances to meet the requirements of instrumental analysis such as gas chromatography (GC) or high performance liquid chromatography (HPLC). SPME is a solvent-free sample pretreatment technolo...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N30/08G01N1/34
Inventor 徐晖潘文慧任贻军
Owner HUAZHONG NORMAL UNIV
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