STABILIZED FLUOROOLEFIN REFRIGERANT COMPOSITIONS AND METHODS FOR THEIR PRODUCTION, STORAGE AND USAGE
The present invention relates to refrigerant compositions comprising at least one fluoroolefin, at least one lubricant and an effective amount of at least one inhibitor wherein the inhibitor is present in the fluoroolefin and the lubricant.
1 . A refrigerant composition comprising HFO-1234yf, HFO-1234ze, HFO-1225ye, trifluoropropyne, and at least one additional hydrofluorocarbon (HFC) selected from one of HFC-32, HFC-125, HFC-134a, HFC-152a, HFC-236fa, and HFC-227ea and containing between >0 and <500 ppm of a liquid limonene inhibitor, wherein the composition has a liquid phase and a gaseous phase and the liquid limonene inhibitor remains in the liquid phase at temperatures up to 150° C. and inhibits the oligomerization and/or homopolymerization of fluoroolefins comprising at least HFO-1234yf in the presence of an oxygen containing initiator.
2 . The refrigerant composition of claim 1 contains an initiator compound in an amount up to 15,000 ppm, and optionally at least one of a lubricant, an antioxidant, an acid scavenger, a performance enhancer, and a flame suppressant.
3 . The refrigerant composition of claim 2 wherein the at least one initiator compound is selected from at least of air, oxygen, cumene hydroperoxide, and fluoroolefin polyperoxides, peroxides, hydroperoxides, persulfates, percarbonates, perborates and hydropersulfates.
4 . The refrigerant composition of claim 1 further comprising at least one member selected from the group consisting of HCC-40, HCFC-22, CFC-115, HCFC-124, HCFC-1122, and CFC-1113, optionally in amounts of >0 and about 2 percent by weight.
5 . The refrigerant composition of claim 1 wherein the inhibitor is present in an amount of about 30 to about 500 ppm.
6 . The refrigerant composition of claim 1 wherein the inhibitor is present in an amount of about 50 to about 500 ppm.
7 . The refrigerant composition of claim 1 wherein the inhibitor is present in an amount of about 50 to about 200 ppm.
8 . The refrigerant composition of claim 1 wherein the amount of inhibitor ranges from about 30 to about 100 ppm.
9 . The refrigerant composition of claim 2 wherein the antioxidant comprises at least one member selected from the group consisting of butylated hydroxytoluene, butylated hydroxyanisole, tertiary-butylhydroquinone, gallate, 2-phenyl-2-propanol, 1-(2,4,5-trihydroxyphenyl)-1-butaone, phenolics, bisphenol methane derivatives, and 2,2′-methylene bis (4-methyl-6-t-butyl phenol).
10 . The refrigerant composition of claim 1 further comprising at least one member selected from the group consisting of HFO-1225yeZ, HFO-1243zf, HFC-236ea, and HFC-245fa wherein the total amount of the at least one additional member comprises ≤1 wt. based on the total amount of the composition.
11 . A method for heating or cooling using the refrigerant composition of claim 1 .
12 . A container comprising the composition of claim 1 .
13 . The refrigerant composition of claim 1 comprising a lubricant selected from one of POE and PAG.
14 . The refrigerant composition of claim 3 containing one of: (i) between 30 and 2000 ppm of air, (ii) between 10 and 2000 ppm of air, (iii) between 10 and 1000, or (iv) between 10 and 500 ppm of air.
15 . The refrigerant composition of claim 1 wherein the amount of the additional HFC compounds inhibitor ranges from about 30 to about 100 ppm.
16 . The refrigerant composition of claim 1 containing less than about 0.03 wt. % of oligomeric/homopolymeric products derived from the HFO-1234yf.
17 . The refrigerant composition of claim 1 containing between 25 and 75% by weight of the additional HFC compounds.
18 . The refrigerant composition of claim 1 further comprising 3,3,3-trifluoropropene (HFO-1243zf).
19 . A method comprising replacing an existing refrigerant composition with the refrigerant composition of claim 1 .