Stabilized heat transfer compositions, methods and systems
The present invention relates to heat transfer compositions comprising refrigerant, lubricant and stabilizer, wherein the refrigerant comprises about 49% by weight difluoromethane (HFC-32), about 11.5% by weight pentafluoroethane (HFC-125), and about 39.5% by weight trifluoroiodomethane (CF 3 I), and wherein said lubricant comprises polyol ester (POE) lubricant and/or polyvinyl ether (PVE) lubricant, and wherein said stabilizer comprises an alkylated naphthalene and optionally but preferably an acid depleting moiety.
1. A heat transfer compositions comprising refrigerant, lubricant and stabilizer, said refrigerant consisting of the following three compounds, with each compound being present in the following relative percentages:
about 49% by weight difluoromethane (HFC-32),
about 11.5% by weight pentafluoroethane (HFC-125), and
about 39.5% by weight trifluoroiodomethane (CF3I), wherein (i) said lubricant comprises polyol ester (POE) lubricant and/or polyvinyl ether (PVE) lubricant, (ii) said stabilizer comprises alkylated naphthalene, and (iii) said alkylated naphthalene is present in the composition in an amount of from 1% to less than 10% by weight based on the weight of the alkylated naphthalene and the lubricant.
2. The heat transfer composition of claim 1 wherein said alkylated naphthalene is present in the composition in an amount of from 1% to 8% by weight based on the weight of the alkylated naphthalene and the lubricant.
3. The heat transfer composition of claim 1 wherein said alkylated naphthalene is present in the composition in an amount of from 1.5% to 8% by weight based on the weight of the alkylated naphthalene and the lubricant.
4. The heat transfer composition of claim 1 wherein said alkylated naphthalene is present in the composition in an amount of from 1.5% to about 6% by weight based on the weight of the alkylated naphthalene and the lubricant.
5. The heat transfer composition claim 4 wherein said lubricant comprises PVE lubricant.
6. The heat transfer composition claim 5 wherein said stabilizer further comprises an acid depleting moiety (ADM).
7. The heat transfer composition claim 6 wherein said stabilizer comprises from about 40% by weight to about 99.9% of alkylated naphthalene and from 0.05% to about 50% by weight of ADM based on the weight of the stabilizer.
8. The heat transfer composition of claim 7 wherein said alkylated naphthalene comprises AN5.
9. The heat transfer composition of claim 8 wherein said stabilizer further comprises a phenol.
10. The heat transfer composition of claim 9 wherein said phenol comprises BHT.
11. The heat transfer composition of claim 7 wherein said stabilizer alkylated naphthalene comprises AN10.
12. The heat transfer composition of claim 8 wherein said stabilizer further comprises a phenol.
13. The heat transfer composition of claim 12 wherein said phenol comprises BHT and said ADM comprises ADM4.
14. The heat transfer composition of claim 13 wherein said ADM consists essentially of ADM4.
15. The heat transfer composition of claim 14 wherein said lubricant comprises POE.
16. The heat transfer composition of claim 15 wherein said POE lubricant comprises neopentyl POE.
17. The heat transfer composition of claim 15 wherein said POE lubricant has a viscosity at 40° C. measured in accordance with ASTM D445 of from about 30 cSt to about 70 cSt.
18. The heat transfer composition of claim 17 wherein said POE lubricant has a viscosity measured @ 100° C. in accordance with ASTM D445 of from about 5 cSt to about 10 cSt.
19. The heat transfer composition of claim 18 wherein said alkylated naphthalene consists essentially of AN5.
20. The heat transfer composition of claim 18 wherein said alkylated naphthalene consists of AN5.