Intra-microspray ICP torch

4990740
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Inventors

Meyer, Gerhard A.

Application #

320002

Filed

Mar-6-1989

Published

Feb-5-1991

Current US Class

219/121.48
219/121.49
219/121.51
219/121.52
239/343
239/432
315/111.51

International Classes

B23K 009/00

Field of Search

219/121.5 219/121.52 219/121.48 219/121.51 219/121.49 239/338 239/343 239/370 239/432 261/78.2 261/DIG. 315/111.51 315/111.21

Assignee

The Dow Chemical Company (Midland, MI)

Examiners

Paschall; M. H.

Attorney, Agent or Firm

Wood, Herron & Evans, Stevens; Timothy S.

US Patent References

4084934   Combustion appar...
4177945   Humidifier unit
4206160   Mechanical device...
4251033   Mist generating str...
4482246   Inductively coupled...
4551609   Spectrometry plas...
4575609   Concentric micro-n...
4739147   Pre-aligned demou...
4746067   Liquid atomizing d...

Referenced by:

View Backward References

Other References

"Direct Liquid Sample Introduction for Flow Injection Analysis and Liquid Chromatography with Inductively Coupled Argon Plasma Spectrometric Detection" by Kimberly Lawrence, Gary W. Rice, and Velmer A. Fassel, Analytical Chemistry, 1984.

Citation

Cite This Patent

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Abstract
An intra-microspray ICP torch for use in conjunction with spectographic analysis generates a high temperature ionized gas in a plasma region at one end of the torch, and includes a preshaped tube mounted within the torch, with a first end of the tube terminating adjacent the plasma region, and a nebulizer mounted to a second end of the tube. The preshaped tube has at least one set of impactors that define at least two chambers, the impactors blocking the line of sight between adjacent chambers. The nebulizer propels a pressurized aerosol/sample mixture at the impactors, toward the plasma region. The impactors divert the mixture as it travels from chamber to chamber toward the plasma region, causing a filtering effect that promotes passage to the plasma region of sample particles having a size of about 15 microns or less, thereby resulting in optimum spectrographic clarity.
 
Claims
I claim:

1. An ICP torch comprising:

means for generating a high temperature ionized gas in a plasma region at one end of the torch;

multichamber particle discrimination means having first and second ends, the first end extending through said torch and terminating adjacent said plasma region;

a nebulizer mounted to said second end and adapted to propel a pressurized mixture of aerosol and sample particles through said multichamber particle discrimination means toward said plasma region;

impaction means positioned within said multichamber particle discrimination means and located within said torch, said impaction means adapted to divert flow of said pressurized mixture while enroute to said plasma region, thereby to produce a filtering effect to promote introduction into said plasma region of sample particles in the form of a fine mist wherein said multichamber particle discrimination means further comprises;



Description
FIELD OF THE INVENTION

This invention relates to an inductively coupled plasma torch that is used in conjunction with a spectrometer for the purpose of elemental analysis.

BACKGROUND OF THE INVENTION

In an inductively coupled plasma torch, referred to as an ICP torch, a gas is ionized in a plasma region located at one end of the torch and a sample is injected or introduced into the plasma region, the sample becoming atomized to enable elemental detection by a number of techniques, including spectrometric analysis. A prealigned demountable plasma torch is disclosed in applicant'U.S. Pat. No. 4,739,147, expressly incorporated herein by reference in its entirety.

To obtain optimal analytical performance with an ICP torch, particularly for interfacing spectrographic analysis with chromatography, it is desirable to introduce the sample into the plasma region in the form of a finely dispersed particle mist at a relatively constant flow. It is commonly accepted within the industry that the size of the sample particles reaching the plasma region should be less than about 15 microns. In order to prevent the introduction to the plasma region of larger sized particles, prior devices have utilized a nebulizer in conjunction with some type of large volume particle size discrimination chamber.
 
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