Claims
- 1. A method for extinguishing a fire comprising the steps of introducing to the fire a fire extinguishing concentration of a composition comprising a compound selected from the group consisting of CF3CHFCF2OCH2F, CF3CHFCF2OCF2H, CF3CHFCF2OCF3, (CF3)2CHCF2OCH3, (CF3)2CHCF2OCH2F, (CF3)2CHCF2OCHF2, (CF3)2CHCF2OCF3, CF3CF═CFOCH3, CF3CF═CFOCH2F, CF3CF═CFOCHF2, CF3CF═CFOCF3, CF2═CFCF2OCH3, CF2═CFCF2OCH2F, CF2═CFCF2OCF2H, CF2═CFCF2OCF3, (CF3)2C═CFOCH3, (CF3)2C═CFOCH2F, (CF3)2C═CFOCF2H, (CF3)2C═CFOCH3, CF2═C(CF3)CF2OCH3, CF2═C(CF3)CF2OCH2F, CF2═C(CF3)CF2OCF2H, and CF2═C(CF3)CF2OCF3.
- 2. The method of claim 1, wherein the compound is selected from the group consisting of CF3CHFCF2OCH3, CF3CHFCF2OCH2F, CF3CHFCF2OCF2H, CF3CHFCF2OCF3, (CF3)2CHCF2OCH3, (CF3)2CHCF2OCH2F, (CF3)2CHCF2OCHF2, (CF3)2CHCF2OCF3.
- 3. The method of claim 1, wherein the compound is employed at a level of at least about 3% (v/v).
- 4. The method of claim 1, wherein the compound is employed in a total flooding system.
- 5. The method of claim 1, wherein the compound is employed in a portable extinguishing system.
- 6. The method of claim 1, wherein the composition comprises a blend with other fire extinguishing agents.
- 7. The method of claim 6, wherein the other fire extinguishing agents are selected from the group consisting of CF3CHFCF3, CF3CF2CF2H, CF3CH2CF3, CF3CF2H, and CF3H.
- 8. A fire extinguishing agent comprising a compound selected from the group consisting of CF3CHFCF2OCH2F, CF3CHFCF2OCF2H, CF3CHFCF2OCF3, (CF3)2CHCF2OCH3, (CF3)2CHCF2OCH2F, (CF3)2CHCF2OCHF2, (CF3)2CHCF2OCF3, CF3CF═CFOCH3, CF3CF═CFOCH2F, CF3CF═CFOCHF2, CF3CF═CFOCF3, CF2═CFCF2OCH3, CF2═CFCF2OCH2F, CF2═CFCF2OCF2H, CF2═CFCF2OCF3, (CF3)2C═CFOCH3, (CF3)2C═CFOCH2F, (CF3)2C═CFOCF2H, (CF3)2C═CFOCH3, (CF3)2C═CFOCH2F, (CF3)2C═CFOCF2H, (CF3)2C═CFOCH3, CF2═C(CF3)CF2OCH3, CF2═C(CF3)CF2OCH2F, CF2═C(CF3)CF2OCF2H, and CF2═C(CF3)CF2OCF3.
- 9. A method of making CF3CHFCF2OCF2H comprising the steps of:
reacting methanol with hexafluoropropene in the presence of base to produce CF3CHFCF2OCH3; chlorinating CF3CHFCF2OCH3 with Cl2 to produce CF3CHFCF2OCHCl2; and fluorinating CF3CHFCF2OCHCl2 with HF to produce CF3CHFCF2OCF2H.
- 10. A method of making a saturated, fluorinated C4 or C5 hydrofluoroether comprising the steps of:
reacting a C1 alcohol with a fluorinated C3 or C4 alkene in the presence of a base to form a first reaction product; chlorinating the first reaction product with Cl2 to form a second reaction product; and fluorinating the second reaction product with HF to form a saturated, fluorinated C4 or C5 hydrofluoroether.
- 11. The method of claim 10, wherein the base is selected from the group consisting of sodium and potassium hydroxide.
- 12. The composition comprising CF3CHFCF2OCF3.
- 13. A method for preparing an ether comprising:
mixing a basic aqueous solution with an alcohol to form a first reactant mixture; providing an olefin having the general formula R1(R2)C═CXY, wherein the R1 group is selected from the group comprising hydrogens, halogens, halogenated alkyl groups, hydrogenated alkyl groups or perhalogenated alkyl groups, R2 is selected from the group comprising hydrogens, halogens, halogenated alkyl groups, hydrogenated alkyl groups or perhalogenated alkyl groups, X and Y are selected from the group comprising H, I, Br, Cl, or F, and X and Y can be the same as one another or different; and combining the first reactant mixture with the olefin to form an ether having the general formula R3CXY—O—R4, wherein the R3 group is selected from the group comprising hydrogenated alkyl groups, halogenated alkyl groups, or perhalogenated alkyl groups and the R4 group is selected from the group comprising hydrogenated alkyl groups, halogenated alkyl groups, or perhalogenated alkyl groups.
- 14. The method of claim 13, wherein the basic aqueous solution comprises hydroxide.
- 15. The method of claim 13, wherein the basic aqueous solution comprises KOH.
- 16. The method of claim 15, wherein the basic aqueous solution comprises from about 10% (wt./wt.) to about 45% (wt./wt.) KOH.
- 17. The method of claim 13, wherein the alcohol comprises methanol.
- 18. The method of claim 13, wherein the first reactant mixture comprises from about 50% (wt./wt.) to about 60% (wt./wt.) alcohol.
- 19. The method of claim 13, wherein the R1 group is selected from the group comprising CF3— or F.
- 20. The method of claim 13, wherein the R2 group is selected from the group comprising H or F.
- 21. The method of claim 13, wherein the R1 group comprises CF3— and the R2 group comprises F.
- 22. The method of claim 13, wherein the R1 group comprises F and the R2 group comprises F.
- 23. The method of claim 13, wherein the R1 group comprises F and the R2 group comprises H.
- 24. The method of claim 13, wherein the X is the same element as the Y.
- 25. The method of claim 13, wherein the X comprises F and the Y comprises F.
- 26. The method of claim 13, wherein the X comprises F and the Y comprises H.
- 27. The method of claim 13, wherein the X comprises H and the Y comprises H.
- 28. The method of claim 13, wherein the olefin is selected from the group comprising CF3CF═CF2, CF3CH═CF2, or CF2═CF2.
- 29. The method of claim 13, wherein the olefin comprises CF3CF═CF2.
- 30. The method of claim 13, wherein the olefin consists essentially of CF3CF═CF2.
- 31. The method of claim 13, wherein the olefin consists of CF3CF═CF2.
- 32. The method of claim 13, wherein the olefin comprises CF2═CF2.
- 33. The method of claim 13, wherein the olefin consists essentially of CF2═CF2.
- 34. The method of claim 13, wherein the olefin consists of CF2═CF2.
- 35. The method of claim 13, wherein the combining is performed in a reaction vessel having a temperature from about −10° C. to about 50° C.
- 36. The method of claim 13, wherein the R3 group is selected from the group comprising CF3CHF—, CF3CH2—, or CHF2—.
- 37. The method of claim 13, wherein the R3 group comprises CF3CHF—.
- 38. The method of claim 13, wherein the R3 group comprises CHF2—.
- 39. The method of claim 13, wherein the R4 group is selected from the group comprising —CH3, —CH2CH3 or —CH(CH3)2.
- 40. The method of claim 13, wherein the R4 group comprises —CH3.
- 41. The method of claim 13, wherein the ether comprises CF3CHFCF2OCH3.
- 42. The method of claim 13, wherein the ether comprises CHF2CF2OCH3.
- 43. The method of claim 13, wherein the ether comprises CF3CH2CF2OCH3.
- 44. The method of claim 13, further comprising separating the ether from the olefin and alcohol by removing the ether in liquid form.
- 45. The method of claim 13, wherein the preparation of the ether further includes the formation of at least two layers, a bottom layer comprising the ether and an upper layer comprising an aqueous solution.
- 46. The method of claim 45, wherein the first reactant mixture comprises the upper layer.
- 47. A method for preparing halogenated ether intermediates comprising:
providing a photochemical reactor containing an ether having the general formula R3CXY—O—R4, wherein the R3 group is selected from the group comprising hydrogenated alkyl groups, halogenated alkyl groups, or perhalogenated alkyl groups and the R4 group is selected from the group comprising hydrogenated alkyl groups, halogenated alkyl groups, or perhalogenated alkyl groups, X and Y are selected from the group comprising H, I, Br, Cl, or F, and X and Y can be the same as one another or different; and reacting the ether with a gaseous halogenating agent in the presence of actinic energy to produce a halogenated ether intermediate having the general formula R5CXY—O—R6, wherein the R5 group is selected from the group comprising halogenated alkyl groups, or perhalogenated alkyl groups and the R6 group is selected from the group comprising halogenated alkyl groups, or perhalogenated alkyl groups.
- 48. The method of claim 47, wherein the R3 group is selected from the group comprising CF3CHF—, CF3CH2—, or CHF2—.
- 49. The method of claim 47, wherein the R3 group comprises CF3CHF—.
- 50. The method of claim 47, wherein the R3 group comprises CHF2—.
- 51. The method of claim 47, wherein the R4 group is selected from the group comprising —CH3, —CH2CH3 or —CH(CH3)2.
- 52. The method of claim 47, wherein the R4 group comprises —CH3.
- 53. The method of claim 47, wherein the ether comprises CF3CHFCF2OCH3.
- 54. The method of claim 47, wherein the ether comprises CHF2CF2OCH3.
- 55. The method of claim 47, wherein the ether comprises CF3CH2CF2OCH3.
- 56. The method of claim 47, wherein the X is the same element as the Y.
- 57. The method of claim 47, wherein the X comprises F and the Y comprises F.
- 58. The method of claim 47, wherein the X comprises F and the Y comprises H.
- 59. The method of claim 47, wherein the X comprises H and the Y comprises H.
- 60. The method of claim 47, wherein the actinic energy comprises uv radiation.
- 61. The method of claim 47, wherein the gaseous halogenating agent comprises chlorine.
- 62. The method of claim 47, wherein the reacting occurs at a temperature from about 10° C. to about 70° C.
- 63. The method of claim 47, wherein the reacting occurs at about 50° C.
- 64. The method of claim 47, wherein the R5 group is selected from the group comprising CF3CHF—, CF3CClF—, CF3CH2—, CF3CHCl—, CF3CCl2—, CHF2— or CClF2—.
- 65. The method of claim 47, wherein the R5 group comprises CF3CHF—.
- 66. The method of claim 47, wherein the R5 group comprises CHF2—.
- 67. The method of claim 47, wherein the R6 group is selected from the group comprising —CH2Cl, —CHCl2, or —CCl3.
- 68. The method of claim 47, wherein the R6 group comprises —CHCl2.
- 69. The method of claim 47, wherein the R6 group comprises —CCl3.
- 70. The method of claim 47, wherein the halogenated ether intermediate comprises CF3CHFCF2OCCl3.
- 71. The method of claim 47, wherein the halogenated ether intermediate comprises CF3CHFCF2OCHCl2.
- 72. The method of claim 47, wherein the halogenated ether intermediate comprises CF3CClFCF2OCCl3.
- 73. The method of claim 47, wherein the halogenated ether intermediate comprises CF3CHFCF2OCH2Cl.
- 74. The method of claim 47, wherein the halogenated ether intermediate comprises CClF2CF2OCCl3.
- 75. The method of claim 47, wherein the halogenated ether intermediate comprises CF3CH2CF2OCCl3.
- 76. A method for preparing fluoroethers comprising:
providing a halogenated ether intermediate comprising R5CXY—O—R6, wherein the R5 group is selected from the group comprising hydrogenated alkyl groups, halogenated alkyl groups, or perhalogenated alkyl groups and the R6 group is selected from the group comprising halogenated alkyl groups or perhalogenated alkyl groups, X and Y are selected from the group comprising H, I, Br, Cl, or F, and X and Y can be the same as one another or different, wherein the halogenated ether intermediate includes at least one halogen selected from the group comprising I, Br, or Cl; fluorinating the halogenated ether intermediate in the presence of HF and a catalyst to produce a fluoroether comprising R7—O—R8, wherein the R7 group is selected from the group comprising hydrogenated alkyl groups, hydrofluorohalogenated alkyl groups, hydrofluorinated alkyl groups, fluorohalogenated alkyl groups, or perfluorinated alkyl groups and R8 is selected from the group comprising hydrofluorohalogenated alkyl groups, hydrofluorinated alkyl groups, fluorohalogenated alkyl groups, or perfluorinated alkyl groups.
- 77. The method of claim 76, wherein the R5 group is selected from the group comprising CF3CHF—, CF3CClF—, CF3CH2—, CF3CHCl—, CF3CCl2—, CHF2—, or CClF2—.
- 78. The method of claim 76, wherein the R5 group comprises CF3CHF—.
- 79. The method of claim 76, wherein the R5 group comprises CHF2—.
- 80. The method of claim 76, wherein the R6 group is selected from the group comprising —CH2Cl, —CHCl2, or —CCl3.
- 81. The method of claim 76, wherein the R6 group comprises —CHCl2.
- 82. The method of claim 76, wherein the R6 group comprises —CCl3.
- 83. The method of claim 76, wherein the halogenated ether intermediate comprises CF3CHFCF2OCCl3.
- 84. The method of claim 76, wherein the halogenated ether intermediate comprises CF3CHFCF2OCHCl2.
- 85. The method of claim 76, wherein the halogenated ether intermediate comprises CF3CHFCF2OCH2Cl.
- 86. The method of claim 76, wherein the halogenated ether intermediate comprises CF3CClFCF2OCCl3.
- 87. The method of claim 76, wherein the halogenated ether intermediate comprises CClF2CF2OCCl3.
- 88. The method of claim 76, wherein the halogenated ether intermediate comprises CF3CCl2CF2OCCl3.
- 89. The method of claim 76, wherein the X is the same element as the Y.
- 90. The method of claim 76, wherein the X comprises F and the Y comprises F.
- 91. The method of claim 76, wherein the X comprises F and the Y comprises H.
- 92. The method of claim 76, wherein the X comprises H and the Y comprises H.
- 93. The method of claim 76, wherein the HF is in gas form.
- 94. The method of claim 76, wherein the fluorination occurs at a temperature of from about 100° C. to about 300° C.
- 95. The method of claim 76, wherein the fluorination occurs at about 200° C.
- 96. The method of claim 76, wherein the catalyst comprises chromium.
- 97. The method of claim 76, wherein the catalyst comprises activated carbon.
- 98. The method of claim 76, wherein R7 is selected from the group comprising CF3CHFCF2—, CF3CClFCF2—, CF3CF2CF2—, CF3CH2CF2—, CF3CHClCF2—, CF3CCl2CF2—, CHF2CF2—, CF3CF2—, or CClF2CF2—.
- 99. The method of claim 76, wherein R7 comprises CF3CHFCF2—.
- 100. The method of claim 76, wherein R8 is selected from the group comprising —CFCl2, —CF2Cl, —CF3, —CHFCl, —CF2H, or —CFH2.
- 101. The method of claim 76, wherein the fluoroether comprises CF3CHFCF2OCF3.
- 102. The method of claim 76, wherein the fluoroether comprises CF3CHFCF2OCHF2.
- 103. The method of claim 76, wherein the fluoroether comprises CF3CF2CF2OCF3.
- 104. A method for the preparation of fluoroethers comprising:
providing an ether having at least one halogen selected from the group comprising I, Br, or Cl; and fluorinating the ether in the presence of liquid HF at a first temperature to produce a first fluoroether having at least one more fluorine atom than the ether.
- 105. The method of claim 104 wherein the ether comprises the general formula R5CXY—O—R6, wherein the R5 group is selected from the group comprising hydrogenated alkyl groups, halogenated alkyl groups, or perhalogenated alkyl groups and the R6 group is selected from the group comprising hydrogenated alkyl groups, halogenated alkyl groups, or perhalogenated alkyl groups, X and Y are selected from the group comprising H, I, Br, Cl, or F, and X and Y can be the same as one another or different, wherein the halogenated ether intermediate includes at least one halogen selected from the group comprising I, Br, or Cl.
- 106. The method of claim 104, wherein the R5 group is selected from the group comprising CF3CHF—, CF3CClF—, CF3CH2—, CF3CHCl—, CF3CCl2—, CHF2—, or CClF2—.
- 107. The method of claim 104, wherein the R5 group comprises CF3CHF—.
- 108. The method of claim 104, wherein the R5 group comprises CHF2—.
- 109. The method of claim 104, wherein the R6 group is selected from the group comprising —CH2Cl, —CHCl2, or —CCl3.
- 110. The method of claim 104, wherein the R6 group comprises —CHCl2.
- 111. The method of claim 104, wherein the R6 group comprises —CCl3.
- 112. The method of claim 104, wherein the ether comprises CF3CHFCF2OCCl3.
- 113. The method of claim 104, wherein the ether comprises CF3CHFCF2OCHCl2.
- 114. The method of claim 104, wherein the ether comprises CF3CHFCF2OCH2Cl.
- 115. The method of claim 104, wherein the ether comprises CF3CClFCF2OCCl3.
- 116. The method of claim 104, wherein the ether comprises CClF2CF2OCCl3.
- 117. The method of claim 104, wherein the ether comprises CF3CH2CF2OCCl3.
- 118. The method of claim 104, wherein the X is the same element as the Y.
- 119. The method of claim 104, wherein the X comprises F and the Y comprises F.
- 120. The method of claim 104, wherein the X comprises F and the Y comprises H.
- 121. The method of claim 104, wherein the X comprises H and the Y comprises H.
- 122. The method of claim 104, wherein the first temperature is from about 40° C. to about 120° C.
- 123. The method of claim 104, wherein the first temperature is about 70° C.
- 124. The method of claim 104, wherein the first fluoroether is selected from the group comprising CF3CHFCF2OCFCl2, CF3CHFCF2OCF2Cl, CHF2CF2OCFCl2, or CHF2CF2OCF2Cl.
- 125. The method of claim 104, further comprising fluorinating the first fluoroether in the presence of HF at a second temperature to produce a second fluoroether comprising R7—O—R8, wherein the R7 group is selected from the group comprising hydrogenated alkyl groups, hydrofluorohalogenated alkyl groups, hydrofluorinated alkyl groups, fluorohalogenated alkyl groups or perfluorinated alkyl groups and R8 is selected from the group comprising hydrofluorohalogenated alkyl groups, hydrofluorinated alkyl groups, fluorohalogenated alkyl groups or perfluorinated alkyl groups.
- 126. The method of claim 125 wherein the first temperature is lower than the second temperature.
- 127. The method of claim 125, wherein the first temperature is from about 40° C. to about 120° C. and the second temperature is from about 100° C. to about 300° C.
- 128. The method of claim 125, wherein the first temperature is about 70° C. and the second temperature is about 230° C.
- 129. The method of claim 125, wherein the first temperature is about 70° C. and the second temperature is about 200° C.
- 130. The method of claim 125, wherein the fluorinating of the first fluoroether occurs in the presence of a catalyst.
- 131. The method of claim 130, wherein the catalyst comprises chromium.
- 132. The method of claim 130, wherein the catalyst comprises activated carbon.
- 133. The method of claim 130, wherein the fluorination or the first fluoroether occurs in the presence of gaseous HF.
- 134. The method of claim 125, wherein R7 is selected from the group comprising CF3CHFCF2—, CF3CClFCF2—, CF3CF2CF2—, CF3CH2CF2—, CF3CHClCF2—. CF3CCl2CF2—, CHF2CF2—, CF3CF2—, or CClF2CF2—.
- 135. The method of claim 125, wherein R7 comprises CF3CHFCF2—.
- 136. The method of claim 125, wherein R8 is selected from the group comprising —CFCl2, —CF2Cl, —CF3, —CHFCl, —CF2H, or —CFH2.
- 137. The method of claim 125, wherein the second fluoroether comprises CF3CHFCF2OCF3.
- 138. The method of claim 125, wherein the second fluoroether comprises CF3CHFCF2OCHF2.
- 139. The method of claim 125, wherein the second fluoroether comprises CF3CF2CF2OCF3.
- 140. The method of claim 125, wherein the second fluoroether comprises CHF2CF2OCF3.
- 141. The method of claim 125, wherein the second fluoroether comprises CHF2CF2OCHF2.
- 142. A method for manufacturing fluoroethers comprising:
combining an alcohol with an olefin to produce an ether; reacting the ether with a halogenating agent to produce a halogenated ether intermediate; and fluorinating the halogenated ether intermediate with HF to form a fluoroether.
- 143. A method for manufacturing fluoroethers comprising:
combining an alcohol with an olefin to produce an ether; reacting the ether with a halogenating agent to produce a halogenated ether intermediate; in the first instance, fluorinating the halogenated ether intermediate with HF at a first temperature to form a fluoroether intermediate; and in the second instance, fluorinating the fluoroether intermediate with HF at a second temperature to form a fluoroether.
- 144. A mixture within a space comprising an extinguishing compound having the general formula Z1-O-Z2, wherein Z1 is selected from the group comprising CF3CHFCF2—, CF3CF2CF2—, (CF3)2CHCF2—, CHF2CF2—, CF2═C(CF3)—, CF3CF═CF—, CF2═CFCF2—, CF3CH═CF—, CF3CHBrCF2—, CF3CFBrCF2—, or CF2BrCF2— and Z2 is selected from the group comprising —CHF2, —CF3, —CH2CF3, —CH2Br, —CFBr2, or —CF2Br.
- 145. The mixture of claim 144, wherein the extinguishing compound comprises about 0.1% (v/v) to about 10% (v/v) of the space.
- 146. The mixture of claim 144, wherein the extinguishing compound comprises CF3CHFCF2OCHF2.
- 147. The mixture of claim 145, wherein the CF3CHFCF2OCHF2 comprises from about 0.1% (v/v) to about 6% (v/v) of the space.
- 148. The mixture of claim 145, wherein the CF3CHFCF2OCHF2 comprises about 6% (v/v) of the space.
- 149. The mixture of claim 144, wherein the extinguishing compound consists essentially of CF3CHFCF2OCHF2.
- 150. The mixture of claim 144, wherein the extinguishing compound consists of CF3CHFCF2OCHF2.
- 151. The mixture of claim 144, wherein the extinguishing compound comprises CF3CHFCF2OCF3.
- 152. The mixture of claim 151, wherein the CF3CHFCF2OCF3 comprises from about 4%(v/v) to about 6% (v/v) of the space.
- 153. The mixture of claim 151, wherein the CF3CHFCF2OCF3 comprises about 5% (v/v) of the space.
- 154. The mixture of claim 144, wherein the extinguishing compound consists essentially of CF3CHFCF2OCF3.
- 155. The mixture of claim 144, wherein the extinguishing compound consists of CF3CHFCF2OCF3.
- 156. A method for one or more of extinguishing, suppressing or preventing a fire in a space by introducing to the space a mixture comprising an extinguishing compound having the general formula Z1-O-Z2, wherein Z1 is selected from the group comprising CF3CHFCF2—, CF3CF2CF2—, (CF3)2CHCF2—, CHF2CF2—, CF2═C(CF3)—, CF3CF═CF—, CF2═CFCF2—, CF3CH═CF—, CF3CHBrCF2—, CF3CFBrCF2—, or CF2BrCF2— and Z2 is selected from the group comprising —CHF2, —CF3, —CH2CF3, —CH2Br, —CFBr2, or —CF2Br.
- 157. The method of claim 156, wherein the extinguishing compound comprises about 0.1% (v/v) to about 10% (v/v) of the space.
- 158. The method of claim 156, wherein the extinguishing compound comprises CF3CHFCF2OCHF2.
- 159. The method of claim 158, wherein the CF3CHFCF2OCHF2 comprises from about 0.1% (v/v) to about 6% (v/v) of the space.
- 160. The method of claim 158, wherein the CF3CHFCF2OCHF2 comprises about 6% (v/v) of the space.
- 161. The method of claim 156, wherein the extinguishing compound comprises CF3CHFCF2OCF3.
- 162. The method of claim 161, wherein the CF3CHFCF2OCF3 comprises from about 4% (v/v) to about 6% (v/v) of the space.
- 163. The method of claim 161, wherein the CF3CHFCF2OCF3 comprises about 5% (v/v) of the space.
- 164. A fire extinguishing, preventing or suppressing system configured to introduce to a space a mixture comprising an extinguishing compound having the general formula Z1-O-Z2, wherein Z1 is selected from the group comprising CF3CHFCF2—, CF3CF2CF2—, (CF3)2CHCF2—, CHF2CF2—, CF2═C(CF3)—, CF3CF═—, CF2═CFCF2—, CF3CH═CF—, CF3CHBrCF2—, CF3CFBrCF2—, or CF2BrCF2— and Z2 is selected from the group comprising —CHF2, —CF3, —CH2CF3, —CH2Br, —CFBr2, or —CF2Br.
- 165. The system of claim 164, wherein the extinguishing compound comprises about 0.1% (v/v) to about 10% (v/v) of the space.
- 166. The system of claim 164, wherein the extinguishing compound comprises CF3CHFCF2OCHF2.
- 167. The system of claim 166 wherein the CF3CHFCF2OCHF2 comprises from about 0.1% (v/v) to about 6% (v/v) of the space.
- 168. The system of claim 166 wherein the CF3CHFCF2OCHF2 comprises about 6% (v/v) of the space.
- 169. The system of claim 164 wherein the extinguishing compound comprises CF3CHFCF2OCF3.
- 170. The system of claim 169, wherein the CF3CHFCF2OCF3 comprises from about 4% (v/v) to about 6% (v/v) of the space.
- 171. The system of claim 169, wherein the CF3CHFCF2OCF3 comprises about 5% (v/v) of the space.
RELATED PATENT DATA
[0001] This patent is a continuation-in-part of international application PCT/US01/44256, filed Nov. 14, 2001, entitled “Fire Extinguishing Methods Utilizing Hydrofluoroethers,” which claims priority to U.S. provisional patent application 60/249,684, filed Nov. 17, 2000, having the same title; this patent also claims priority to U.S. provisional patent application 60/390,202, filed Jun. 20, 2002, entitled “Ethers and Materials and Methods for Producing and Using the Same.”
Provisional Applications (2)
|
Number |
Date |
Country |
|
60249684 |
Nov 2000 |
US |
|
60390202 |
Jun 2002 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
PCT/US01/44256 |
Nov 2001 |
US |
Child |
10435455 |
May 2003 |
US |