IP Library › Granted Patent US 11,479,517
Granted Patent B2
US 11,479,517 · App. 13/923,659 · Granted Oct 25, 2022

Explosive formulations of mixture of carbon dioxide and a reducing agent and methods of using same

Inventor: Daren Normand Swanson (Burlington, CA)
C06B43/00C01B32/184C01B32/25C01B32/26C01B33/12C01B35/1036C01D1/02C01D15/02C01F3/02C01F5/04C01F7/422C01F11/02C01G23/047C01G25/02C06B25/34F42D3/00F42D3/04
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Quick Facts
Patent No.
US 11,479,517
App. No.
13/923,659
Granted
Oct 25, 2022
Kind
B2
Abstract

The disclosure relates to embodiments of an explosive formulation comprising a detonable mixture of an oxidizing agent such as carbon dioxide, and a material that decomposes the oxidizing agent exothermically (a reducing agent), and additives that increase the mixture's shock sensitivity. The formulations may be used in a method to produce diamonds or nano oxides or in other applications that use traditional explosives such as, but not limited to: ammonium nitrate and fuel oil combinations (ANFO), watergel explosives, emulsion explosives and RDX.

Claims (25)

1. A detonable mixture suitable for blasting comprising between about 60% to about 80% weight per weight carbon dioxide (CO2) in the solid state and at least one reducing agent selected from the group consisting of powdered, flaked, atomized, alloys or combinations of elemental metals aluminum (Al), magnesium (Mg), lithium (Li), beryllium (Be), calcium (Ca), sodium (Na), titanium (Ti) and zirconium (Zr); powdered, flaked, atomized or combinations of non-metal elemental boron (B) and silicon (Si); powdered metal hydrides lithium hydride (LiH), sodium hydride (NaH), beryllium hydride (BeH 2 ), magnesium hydride (MgH 2 ), calcium hydride (CaH 2 ), aluminum hydride (AlH 3 ), lithium aluminum hydride (LiAlH 4 ), sodium aluminum hydride (NaAlH 4 ), magnesium alanate (Mg(AlH 4 ) 2 ) and calcium alanate (Ca(AlH 4 ) 2 ); liquid, supercritical or gaseous forms of diborane (B 2 H 6 ) or silane (SiH 4 ) or any combinations of any of the listed reducing agents.

2. The detonable mixture of claim 1 wherein the mixture is dry ice blended with the reducing agent at temperatures and pressures that permit the solid state of CO2.

3. The detonable mixture of claim 1 wherein the reducing agent is elemental magnesium.

4. The detonable mixture of claim 1 wherein the reducing agent is elemental aluminum.

5. The detonable mixture of claim 1 wherein the reducing agent is elemental silicon and one or more of the reducing agents of claim 1 , excluding silicon.

6. The detonable mixture of claim 1 wherein the reducing agent is elemental boron.

7. The detonable mixture of claim 1 wherein the reducing agent is lithium aluminum hydride.

8. The detonable mixture of claim 1 wherein the mixture contains an additive in the form of a sensitizer to increase the mixture's shock sensitivity and rate of reaction on detonation.

9. The detonable mixture of claim 8 wherein the mixture is blended with about 1% to about 35% sensitizer on a weight percentage basis.

10. The detonable mixture of claim 9 wherein the mixture contains about 10% to about 30% reducing agent and is blended with about 1% to about 30% sensitizer on a weight percentage basis.

11. The detonable mixture of claim 8 wherein the additive is selected from the group consisting of MMAN, RDX, PETN or HMX.

12. The detonable mixture of claim 1 wherein the reducing agent is a combination of two or more of aluminum (Al), magnesium (Mg), lithium (Li), beryllium (Be), boron (B), silicon (Si), calcium (Ca), sodium (Na), titanium (Ti), zirconium (Zr), lithium hydride (LiH), sodium hydride (NaH), beryllium hydride (BeH 2 ), diborane (B 2 H 6 ), magnesium hydride (MgH 2 ), calcium hydride (CaH 2 ), aluminum hydride (AlH 3 ), silane (SiH 4 ), lithium aluminum hydride (LiAlH 4 ), sodium aluminum hydride (NaAlH 4 ), magnesium alanate (Mg(AlH 4 ) 2 ), and calcium alanate (Ca (AlH 4 ) 2 ).

13. The detonable mixture of claim 1 wherein the reducing agent is an alloy or combination of magnesium and aluminum in a powdered, flaked or atomized state or combination thereof.

14. The detonable mixture of claim 1 wherein the mixture contains an additive in the form of a sensitizer to affect the mixture's shock sensitivity and rate of reaction on detonation.

15. The detonable mixture of claim 14 wherein the additive is selected from the group consisting of MMAN, RDX, PETN or HMX.

16. The detonable mixture of claim 1 wherein the amount of reducing agent in the detonable mixture is between about 20% to about 40% on a weight percentage basis.

17. Use of the detonable mixture of claim 1 to transform the carbon in carbon dioxide into diamonds and graphene via detonation.

18. Use of the detonable mixture of claim 1 as a mining explosive.

19. Use of the detonable mixture of claim 12 to produce, via detonation, a solid nano oxide.

20. Use of the detonable mixture of claim 1 to transform the carbon in carbon dioxide into diamonds via detonation by a) preparing a detonable charge comprising carbon dioxide (CO2) in the solid state and a reducing agent selected from the group consisting of powdered, flaked, atomized, alloys or combinations of elemental metals aluminum (Al), magnesium (Mg), lithium (Li), beryllium (Be), calcium (Ca), sodium (Na), titanium (Ti) and zirconium (Zr); powdered, flaked, atomized or combinations of non-metal elemental boron (B) and silicon (Si); powdered metal hydrides lithium hydride (LiH), sodium hydride (NaH), beryllium hydride (BeH 2 ), magnesium hydride (MgH 2 ), calcium hydride (CaH 2 ), aluminum hydride (AlH 3 ), lithium aluminum hydride (LiAlH 4 ), sodium aluminum hydride (NaAlH 4 ), magnesium alanate (Mg(AlH 4 ) 2 ) and calcium alanate (Ca (AlH 4 ) 2 ); liquid, supercritical or gaseous forms of diborane (B 2 H 6 ) or silane (SiH 4 ) or any combinations of any of the listed reducing agents, wherein the charge has a neutral or positive oxygen balance calculated without including the carbon in the carbon dioxide; b) detonating the charge, thereby oxidizing the reducing agent and producing a material that contains diamond; and c) collecting by-products produced by the detonation.

21. Use according to claim 20 of a detonable mixture to transform the carbon in carbon dioxide into diamonds via detonation including separating the by-products produced by the detonation to collect the diamonds.

22. Use according to claim 19 of a detonable mixture to transform the carbon in carbon dioxide into diamonds and produce a solid nano oxide via detonation by a) preparing a detonable charge comprising carbon dioxide (CO 2 ) in the solid state and an effective amount of a reducing agent selected from the group consisting of powdered, flaked, atomized, alloys or combinations of elemental metals aluminum (Al), magnesium (Mg), lithium (Li), beryllium (Be), calcium (Ca), sodium (Na), titanium (Ti) and zirconium (Zr); powdered, flaked, atomized or combinations of non-metal elemental boron (B) and silicon (Si); powdered metal hydrides lithium hydride (LiH), sodium hydride (NaH), beryllium hydride (BeH 2 ), magnesium hydride (MgH 2 ), calcium hydride (CaH 2 ), aluminum hydride (AlH 3 ), lithium aluminum hydride (LiAlH 4 ), sodium aluminum hydride (NaAlH 4 ), magnesium alanate (Mg(AlH 4 ) 2 ) and calcium alanate (Ca (AlH 4 ) 2 ); liquid, supercritical or gases such as diborane (B 2 H 6 ) or silane (SiH 4 ) or combinations thereof wherein the charge has a neutral or positive oxygen balance calculated without including the carbon in the carbon dioxide; b) detonating the charge thereby oxidizing the reducing agent and producing a material that contains an oxide; and c) collecting by-products produced by the detonation.

23. Use according to claim 22 of a detonable mixture to produce a solid nano oxide via detonation including separating the by-products produced by the detonation to collect the nano oxide.

24. A detonable mixture formulation comprising between about 65% to about 75% carbon dioxide (CO 2 ) in the solid state and a reducing agent selected from the group consisting of powdered, flaked, atomized, alloys or combinations of elemental metals aluminum (Al), magnesium (Mg), lithium (Li), beryllium (Be), calcium (Ca), sodium (Na), titanium (Ti) and zirconium (Zr); powdered, flaked, atomized or combinations of non-metal elemental boron (B) and silicon (Si); powdered metal hydrides lithium hydride (LiH), sodium hydride (NaH), beryllium hydride (BeH 2 ), magnesium hydride (MgH 2 ), calcium hydride (CaH 2 ), aluminum hydride (AlH 3 ), lithium aluminum hydride (LiAlH 4 ), sodium aluminum hydride (NaAlH 4 ), magnesium alanate (Mg(AlH 4 ) 2 ) and calcium alanate (Ca(AlH 4 ) 2 ); liquid, supercritical or gaseous forms of diborane (B 2 H 6 ) or silane (SiH 4 ) or any combinations of any of the listed reducing agents.

25. A detonatable mixture suitable for blasting comprising carbon dioxide (CO2) in the solid state and between about 15% to about 50% weight per weight at least one reducing agent selected from the group consisting of powdered, flaked, atomized, alloys or combinations of elemental metals aluminum (Al), magnesium (Mg), lithium (Li), beryllium (Be), calcium (Ca), sodium (Na), titanium (Ti) and zirconium (Zr); powdered, flaked, atomized or combinations of non-metal elemental boron (B) and silicon (Si); powdered metal hydrides lithium hydride (LiH), sodium hydride (NaH), beryllium hydride (BeH2), magnesium hydride (MgH2), calcium hydride (CaH2), aluminum hydride (A1H3), lithium aluminum hydride (LiA1H4), sodium aluminum hydride (NaAlH4), magnesium alanate (Mg(AlH4)2) and calcium alanate (Ca(AlH4)2); liquid, supercritical or gaseous forms of diborane (B2H6) or silane (SiH4) or any combinations of any of the listed reducing agents.

Continuity (3)
Continuation In Part 12809917
Provisional Application 61008632 · Dec 21, 2007
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