Claims
- 1. A heat transfer composition, comprising:
(a) from about 0% to about 90% by weight of an alcohol; (b) from about 1% to about 90% by weight of a polyalkene oxide; (c) from about 0% to about 50% by weight of an additive; and (d) balance being water; wherein said composition is used in a fuel cell assembly.
- 2. The heat transfer composition according to claim 1, wherein said composition comprises about 20% to about 80% alcohol.
- 3. The heat transfer composition according to claim 1, wherein said composition comprises about 30% to about 70% alcohol.
- 4. The heat transfer composition according to claim 1, wherein said composition comprises about 40% to about 60% alcohol.
- 5. The heat transfer composition according to claim 1, wherein said alcohol is selected from the group consisting of methanol, ethanol, propanol, butanol, furfurol, tetrahydrofurfuryl, ethoxylated furfuryl, ethylene glycol, diethylene glycol, triethylene glycol, 1,2 propylene glycol, 1,3 propylene glycol, dipropylene glycol, butylene glycol, glycerol, monoethylether of glycerol, dimethyl ether of glycerol, sorbitol, 1,2,6-hexanetriol, trimethylolpropane, methoxyethanol and mixtures thereof.
- 6. The heat transfer composition according to claim 1, wherein said alcohol is selected from the group consisting of ethylene glycol, 1,2-propylene glycol, 1,3-propylene glycol, glycerol, tetrahydrofurfuryl alcohol and mixtures thereof.
- 7. The heat transfer composition according to claim 1, wherein said composition comprises about 2% to about 75% of a polyalkylene oxide.
- 8. The heat transfer composition according to claim 1, wherein said composition comprises about 3% to about 50% polyalkylene oxide.
- 9. The heat transfer composition according to claim 1, wherein said composition comprises about 5% to about 25% polyalkylene oxide.
- 10. The heat transfer composition according to claim 1, wherein said polyalkylene oxide has an average molecular weight from about 55 to about 380,000.
- 11. The heat transfer composition according to claim 1, wherein said polyalkylene oxide has an average molecular weight from about 135 to about 10,000.
- 12. The heat transfer composition according to claim 10, wherein said polyalkylene oxide is selected from the group consisting of polyoxyethylene, oxypropylene, oxybutylene polymers and mixtures thereof
- 13. The heat transfer composition according to claim 1, wherein said polyalkylene oxide is selected from the group consisting of UCON LB-135, UCON LB-165-Y24, UCON LB-165Y3, UCON LB-165, UCON 1281, UCON LB-65, UCON 50-HB-55, UCON 50-HB-260, UCON 50-HB-100, UCON 50-HB-5100, UCON 75-H-1400, UCON 75-H-90,000, UCON 50-HB-260-Y3, UCON HTF 500, LB165 Y24, LB165Y3; H1400, HB-100, HB-260, 50-HB-260-Y3, Pluronic L-92, Polyglycol P-425, Formasil 433, Formasil 891, Silwet L-7200, Silwet L-7230, 10 Silwet L-7600, Silwet L-7604, Silwet L-7607, Silwet L-7657, Silwet L-7650, Silwet L-7664, Silwet L-8600, Silwet L-8620, Silwet L-77, and TBF-190.
- 14. The heat transfer composition according to claim 1, wherein said composition comprises about 1% to about 30% additive.
- 15. The heat transfer composition according to claim 1, wherein said composition comprises about 2% to about 20% additive.
- 16. The heat transfer composition according to claim 1, wherein said composition comprises about 3% to about 10% additive.
- 17. The heat transfer composition according to claim 1, wherein said additive is selected from the group consisting of dielectric fluids, wetting agents, antifoam agents, lubricants, surfactants, solvents and corrosion inhibitors.
- 18. The heat transfer composition according to claim 17, wherein said additive is selected from the group consisting of TBA-4456, Syltherm XLT, TBF-193, TBF-77A, Miramine TO-DT, Slytherm 800, Rhodafac PL-6, Exxsol D130, Rhodafac PA-32, Rhodameen T-15, Deriphat 151C, Lubrhophos RD-510, Lubrhophos LB-400 and Mazon RI-4a.
- 19. A heat transfer composition comprising:
(a) from about 20% to about 80% by weight of an alcohol; (b) from about 2% to about 75% by weight of a polyalkene oxide; (c) from about 1% to about 30% additive; and (d) balance being water; and wherein said composition is used in a fuel cell assembly.
- 20. A heat transfer composition comprising:
(a) from about 30% to about 70% by weight of an alcohol; (b) from about 3% to about 50% by weight of a polyalkene oxide; (c) from about 2% to about 20% by weight of an additive; and (d) balance being water; and wherein said composition is used in a fuel cell assembly.
- 21. A heat transfer composition comprising:
(a) from about 40% to about 60% by weight of an alcohol; (b) from about 5% to about 25% by weight of a polyalkene oxide; (c) from about 5% to about 10% by weight of an additive; and (c) balance being water; and wherein said composition is used in a fuel cell assembly.
- 22. The heat transfer composition according to any of one claim 1, 19, 20, or 21, wherein said composition has an electrical resistance greater than about 5 KΩ·cm.
- 23. A fuel cell system comprising one or more fuel cell assemblies and a heat transfer composition according to any one of claim 1, 19, 20 or 21.
- 24. The fuel cell system according to claim 23, wherein said fuel cell assembly is selected from the group consisting of PEMFC, PAFC, MCFC, SOFC and AFC.
- 25. A method for removing heat from a fuel cell assembly, wherein said method comprises the step of contacting said fuel cell assembly with a heat transfer composition according to any of one claim 1, 19, 20 or 21.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit under 35 U.S.C. §119(e) of U.S. Provisional Application No. 60/358,201, filed Feb. 19, 2002.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60358201 |
Feb 2002 |
US |