Claims
- 1. A process for qualitative or quantitative determination of a reactive chemical contained in a sample, comprising passing the sample containing the reactive chemical through a column or planar chromatography apparatus, the column or planar chromatography apparatus including packing or plates containing a porous doped sol gel glass, the doped sol gel glass being formed from a metal alkoxide by a gelling step conducted at room temperature and a drying step conducted at not greater than 41.degree. C., and the doped sol-gel glass containing a compound encapsulated therein which is reactive with the reactive chemical in the pores of the doped sol gel glass.
- 2. A process as defined by claim 1, wherein the apparatus is a thin layer chromatography apparatus including plates containing the doped sol gel glass.
- 3. A process as defined by claim 2, wherein the reactive chemical comprises iron and the compound reactive with iron and encapsulated within the sol gel glass is 1,10-o-phenanthroline.
- 4. A process as defined by claim 2, wherein the reactive chemical comprises cobalt, iron and copper, and the compound reactive with the reactive chemical and encapsulated within the sol gel glass is 1-nitroso-2-naphthol.
- 5. A process as defined by claim 2, wherein the compound reactive with the reactive chemical and encapsulated within the sol gel glass is selected to allow separation and spot visualization to be performed in one step.
- 6. A process for analyzing a gas sample containing a reactive chemical, comprising passing the gas sample containing the reactive chemical through glass capillaries or tubes containing porous doped sol gel glass pellets, the doped sol gel glass pellets being formed from a metal alkoxide by a gelling step conducted at room temperature and a drying step conducted at not greater than 41.degree. C., and the doped sol-gel glass containing a colorimetric reagent encapsulated therein which is reactive with the reactive chemical in the pores of the doped sol gel glass pellets, wherein the reactive chemical reacts with the colorimetric reagent to form a colored section of the capillaries or tubes and the length of the colored section is a function of the concentration of the reactive chemical in the gas sample.
- 7. A process as defined by claim 6, wherein the gas sample comprises air and the colorimetric reagent reacts with an acidic component or an alkaline component in the air.
- 8. A process as defined by claim 6, wherein the colorimetric reagent comprises a methyl orange reagent.
- 9. A process for chromatographic separation, comprising passing a sample through a chromatography apparatus to achieve separation of at least one component therefrom, wherein prior to the separation, a porous doped sol gel glass is included in chromatographic media in the apparatus, the doped sol gel glass being formed from a metal alkoxide by a gelling step conducted at room temperature and a drying step conducted at not greater than 41.degree. C., and the doped sol-gel glass containing a compound encapsulated therein which effects a pretreatment cleanup for interference removal.
Priority Claims (1)
Number |
Date |
Country |
Kind |
92134 |
Jan 1990 |
ILX |
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Parent Case Info
The present application is a continuation-in-part application of copending application Ser. No. 07/738,039 filed Jul. 31, 1991, which is a continuation-in-part application of abandoned copending application Ser. No. 07/637,873 filed Jan. 8, 1991.
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Number |
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Date |
Kind |
3896092 |
Epton et al. |
Jul 1975 |
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4335017 |
Miles et al. |
Jun 1982 |
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4436823 |
Blumcke et al. |
Mar 1984 |
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Non-Patent Literature Citations (4)
Entry |
Carturan et al "Inorganic Gels for Immobilization of Biocatalysts" J. of Mole Catalysis, 57 (1989) L13-L16. |
R. E. Majors, J. of Chromatographic Science, 15, 334 (1977). |
E. Stahl, Thin Layer Chromatography, 2nd ed., SpringerVerlag, Berlin (1969) p. 48. |
Brinker, C. J. Scherer, G. W. Sol-Gel Science, Academic Press, San Diego (1990). |
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
738039 |
Jul 1991 |
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Parent |
637873 |
Jan 1991 |
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