US20010036974A1 - Blowing agent blends - Google Patents

Blowing agent blends Download PDF

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Publication number
US20010036974A1
US20010036974A1 US09/788,708 US78870801A US2001036974A1 US 20010036974 A1 US20010036974 A1 US 20010036974A1 US 78870801 A US78870801 A US 78870801A US 2001036974 A1 US2001036974 A1 US 2001036974A1
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US
United States
Prior art keywords
blowing agent
foam
blend
pentane
composition
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Abandoned
Application number
US09/788,708
Inventor
Jinhuang Wu
Douglas Dillon
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Arkema Inc
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Atofina Chemicals Inc
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Filing date
Publication date
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Priority to US09/788,708 priority Critical patent/US20010036974A1/en
Publication of US20010036974A1 publication Critical patent/US20010036974A1/en
Abandoned legal-status Critical Current

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Classifications

    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08JWORKING-UP; GENERAL PROCESSES OF COMPOUNDING; AFTER-TREATMENT NOT COVERED BY SUBCLASSES C08B, C08C, C08F, C08G or C08H
    • C08J9/00Working-up of macromolecular substances to porous or cellular articles or materials; After-treatment thereof
    • C08J9/04Working-up of macromolecular substances to porous or cellular articles or materials; After-treatment thereof using blowing gases generated by a previously added blowing agent
    • C08J9/12Working-up of macromolecular substances to porous or cellular articles or materials; After-treatment thereof using blowing gases generated by a previously added blowing agent by a physical blowing agent
    • C08J9/14Working-up of macromolecular substances to porous or cellular articles or materials; After-treatment thereof using blowing gases generated by a previously added blowing agent by a physical blowing agent organic
    • C08J9/149Mixtures of blowing agents covered by more than one of the groups C08J9/141 - C08J9/143
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08JWORKING-UP; GENERAL PROCESSES OF COMPOUNDING; AFTER-TREATMENT NOT COVERED BY SUBCLASSES C08B, C08C, C08F, C08G or C08H
    • C08J2203/00Foams characterized by the expanding agent
    • C08J2203/14Saturated hydrocarbons, e.g. butane; Unspecified hydrocarbons
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08JWORKING-UP; GENERAL PROCESSES OF COMPOUNDING; AFTER-TREATMENT NOT COVERED BY SUBCLASSES C08B, C08C, C08F, C08G or C08H
    • C08J2203/00Foams characterized by the expanding agent
    • C08J2203/14Saturated hydrocarbons, e.g. butane; Unspecified hydrocarbons
    • C08J2203/142Halogenated saturated hydrocarbons, e.g. H3C-CF3
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08JWORKING-UP; GENERAL PROCESSES OF COMPOUNDING; AFTER-TREATMENT NOT COVERED BY SUBCLASSES C08B, C08C, C08F, C08G or C08H
    • C08J2375/00Characterised by the use of polyureas or polyurethanes; Derivatives of such polymers
    • C08J2375/04Polyurethanes

Definitions

  • This invention relates to foam blowing agent blends of (a) chlorodifluoromethane (“HCFC-22” or “22”) with (b) n-pentane (n-C5), i-pentane (i-C5) and/or cyclopentane (c-C5) and to polyol premixes and polyurethane foam compositions containing such blends.
  • HCFC-22 chlorodifluoromethane
  • n-C5 n-pentane
  • i-pentane i-pentane
  • c-C5 cyclopentane
  • HCFC-22 has also been disclosed, as in U.S. Pat. No. 4,636,529) for use as a foam blowing agent agent. When used alone, it has certain disadvantages such as a high global warming potential (“GWP”) of about 1700 and an ODP of about 0.055.
  • GWP global warming potential
  • Foam blowing agent compositions comprise (a) about 5 to 50 mole % of chlorodifluoromethane and (b) about 95 to 50 mole % of a pentane selected from the group consisting of one or more of n-pentane, i-pentane and cyclopentane, as well as foam premix compositions, which premix compositions comprise a polyol and the foregoing blowing agent blend, and polyurethane foam compositions, which foam compositions comprise an A-side containing an isocyanate and a B-side containing a polyol and all or a portion of the foregoing blowing agent blend.
  • the preferred amount of 22 in the blends varies with the particular pentane or pentane mixture, as shown by the examples below, but is generally in the 10-35 mole % range.
  • the blowing agent blend is typically present in a concentration range of about 2-60 weight % (preferably 5-40 weight %), based on the weight of the polyol.
  • the effective concentrations of the blends are typically about 0.1-25 weight % (preferably 0.5-15%) based on the weight of the total polyurethane foam formulation.
  • the pentane component and/or the 22 component of the blend can be added to the A-side or the B-side or a portion thereof distributed in each side. It is also possible to add the blowing agent composition as a third stream to the foam machine, wholly apart from the A- or B-side.
  • premix and foam formulations may be those which are conventionally used, which components and their proportions are well known to those skilled in the art.
  • catalysts, fire retardants and surfactants are typical components of the B-side.
  • the formulations used each contained 170.51 parts M-489, a polymeric methane diphenyl diisocyanate available from Bayer Corporation; 100 parts T-2541, a polyester polyol having a hydroxyl number of 240 available from Kosa; 0.19 part PC-5 and 0.33 part PC-46, which are, respectively, pentamethyldiethylenetriamine and potassium acetate in ethylene glycol, catalysts available from Air Products; 2.98 parts K-15, potassium octoate in dipropylene glycol, a catalyst available from Air Products; 2 parts B-8462, a polysiloxane-polyether copolymer surfactant available from Goldschmidt Chemical Corporation; 10 parts AB-80, a tris(1-chloro-2-propyl)phosphate fire retardant available from Albright & Wilson Americas, Inc; and about 24-25 parts blowing agents, the
  • A-side premix components containing isocyanate and 75% of the blowing agent, were mixed and cooled to 10° C.
  • B-side premix components containing polyol, surfactant, fire retardant, and 25% of the blowing agent, were also mixed and cooled to 10° C.
  • the A and B side premixes were mixed for 20 seconds, followed by injection of the catalyst mixture. Mixing was continued for 15 seconds (except for the i-C5/22 blend, for which the mixing continued for only 10 seconds in order to reduce frothing), after which the mixture was poured into a box.
  • ASTM procedures were then followed to measure (initial) k-factors (ASTM C518) of the resultant foams at ambient temperature (24° C.) and at 0° C.
  • the results are shown in Tables III and IV: TABLE III K-factors (in BTU.in/ft 2 .hr.° F.) at 24° C.

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Medicinal Chemistry (AREA)
  • Polymers & Plastics (AREA)
  • Organic Chemistry (AREA)
  • Polyurethanes Or Polyureas (AREA)
  • Manufacture Of Porous Articles, And Recovery And Treatment Of Waste Products (AREA)

Abstract

Foam blowing agents blends of 5-50 mole % HCFC-22 and 95-50 mole % of n-pentane, i-pentane and/or cyclopentane are provided, as are polyol premixes and polyurethane foam compositi ons containing such blends.

Description

    BACKGROUND OF THE INVENTION
  • This invention relates to foam blowing agent blends of (a) chlorodifluoromethane (“HCFC-22” or “22”) with (b) n-pentane (n-C5), i-pentane (i-C5) and/or cyclopentane (c-C5) and to polyol premixes and polyurethane foam compositions containing such blends. [0001]
  • Until now, the leading polyurethane foam blowing agent has been 1,1-dichloro-1-fluoroethane (“141b”), in order to meet the market place requirements for energy, fire performance and cost. At the same time, however, 141b has a high ozone depletion potential (“ODP”) of about 0.1. Thus, many foam manufacturers are now investigating the lower ODP pentanes as candidates to replace 141b, as noted for example in an article on “Hydrocarbon Blown Rigid Polyurethane Foam for the Boardstock Industry—A novel Approach” by R. E. Berrier et al which appeared in Polyurethanes Expo 98, Sep. 17-20, 1998. They too, however, have property shortcomings for use in foam, such as high cost and high k-factor performance in foam (thus giving foams with poor thermal insulating properties). [0002]
  • HCFC-22 has also been disclosed, as in U.S. Pat. No. 4,636,529) for use as a foam blowing agent agent. When used alone, it has certain disadvantages such as a high global warming potential (“GWP”) of about 1700 and an ODP of about 0.055. [0003]
  • It would therefore be useful to provide the industry with an alternative foam blowing agent which overcomes the deficiencies of 22 or the pentanes alone in terms of properties such as ODP, GWP, cost, and k-factor performance. [0004]
  • BRIEF SUMMARY OF THE INVENTION
  • Foam blowing agent compositions are provided, which compositions comprise (a) about 5 to 50 mole % of chlorodifluoromethane and (b) about 95 to 50 mole % of a pentane selected from the group consisting of one or more of n-pentane, i-pentane and cyclopentane, as well as foam premix compositions, which premix compositions comprise a polyol and the foregoing blowing agent blend, and polyurethane foam compositions, which foam compositions comprise an A-side containing an isocyanate and a B-side containing a polyol and all or a portion of the foregoing blowing agent blend.[0005]
  • DETAILED DESCRIPTION
  • It has now been found that the foregoing blends of pentanes with HCFC-22 overcomes deficiencies associated with the use of either alone. Most important, as shown below, the addition of relatively small amounts of 22 has been found to lower the k-factor (and thus enhance the thermal insulating properties) of foams made with such blends relative to the use of the pentanes alone, while still taking advantage of the low ODP (zero) and GWP properties of the pentanes (for example, cyclopentane has a GWP of 11 versus a GWP of 1700 for 22 alone). Other advantages include lowering of the cost of use of pentanes alone (especially cyclopentane), improved solubility in raw materials such as polyester polyols (especially for n-pentane and i-pentane) and less volatile organic compound (“VOC”) content than pure hydrocarbon since HCFC-22 is not a VOC. [0006]
  • The unexpected improvement shown in the following examples in low temperature (0° C.) k-factor performance is particularly significant for many foam applications such as for refrigerators, freezers and cold storage facilities. [0007]
  • The preferred amount of 22 in the blends varies with the particular pentane or pentane mixture, as shown by the examples below, but is generally in the 10-35 mole % range. [0008]
  • In the premix compositions, the blowing agent blend is typically present in a concentration range of about 2-60 weight % (preferably 5-40 weight %), based on the weight of the polyol. [0009]
  • In the polyurethane foam compositions, the effective concentrations of the blends are typically about 0.1-25 weight % (preferably 0.5-15%) based on the weight of the total polyurethane foam formulation. [0010]
  • The pentane component and/or the 22 component of the blend can be added to the A-side or the B-side or a portion thereof distributed in each side. It is also possible to add the blowing agent composition as a third stream to the foam machine, wholly apart from the A- or B-side. [0011]
  • The other components of the premix and foam formulations may be those which are conventionally used, which components and their proportions are well known to those skilled in the art. For example, catalysts, fire retardants and surfactants are typical components of the B-side. [0012]
  • The practice of the invention is illustrated in more detail in the following non-limiting examples. The formulations used (all having an Iso Index of 300) each contained 170.51 parts M-489, a polymeric methane diphenyl diisocyanate available from Bayer Corporation; 100 parts T-2541, a polyester polyol having a hydroxyl number of 240 available from Kosa; 0.19 part PC-5 and 0.33 part PC-46, which are, respectively, pentamethyldiethylenetriamine and potassium acetate in ethylene glycol, catalysts available from Air Products; 2.98 parts K-15, potassium octoate in dipropylene glycol, a catalyst available from Air Products; 2 parts B-8462, a polysiloxane-polyether copolymer surfactant available from Goldschmidt Chemical Corporation; 10 parts AB-80, a tris(1-chloro-2-propyl)phosphate fire retardant available from Albright & Wilson Americas, Inc; and about 24-25 parts blowing agents, the exact amounts of which are more particularly set forth below; all parts are by weight. [0013]
  • A-side premix components, containing isocyanate and 75% of the blowing agent, were mixed and cooled to 10° C. B-side premix components, containing polyol, surfactant, fire retardant, and 25% of the blowing agent, were also mixed and cooled to 10° C. [0014]
    TABLE I
    Parts of Blowing Agent in Comparative
    Examples with only Pentane Blowing Agent
    i-C5: 24.91  9.96
    c-C5: 14.53 24.23
    n-C5: 24.91
  • [0015]
    TABLE II
    Parts of Blowing Agent in Invention
    Examples with 10 Mole %* 22 in Blowing Agent Blend
    i-C5: 22.43  8.97
    c-C5: 13.08 21.80
    n-C5: 22.43
    HCFC-22:  2.99  2.99  2.99  2.99
  • In making the foam, the A and B side premixes were mixed for 20 seconds, followed by injection of the catalyst mixture. Mixing was continued for 15 seconds (except for the i-C5/22 blend, for which the mixing continued for only 10 seconds in order to reduce frothing), after which the mixture was poured into a box. [0016]
  • ASTM procedures were then followed to measure (initial) k-factors (ASTM C518) of the resultant foams at ambient temperature (24° C.) and at 0° C. The results are shown in Tables III and IV: [0017]
    TABLE III
    K-factors (in BTU.in/ft2.hr.° F.) at 24° C.
    (%s in blends are in mole %)
    For 100% n-C5: 0.173
    For 5%/95% blend 0.171
    of 22/n-C5:
    For 10%/90% blend 0.167
    of 22/n-C5:
    For 100% i-C5: 0.167
    For 5%/95% blend 0.164
    of 22/i-C5:
    For 10%/90% blend 0.164
    of 22/i-C5:
    For 15%/85% blend 0.163
    of 22/i-C5:
    For 100% c-C5: 0.161
    For 10%/90% blend 0.161
    of 22/i-C5:
    For 20%/80% blend 0.154
    of 22/i-C5:
    For 100% of a 0.160
    60/40 c-C5/i-C5
    blend:
    For 5%/95% blend 0.160
    of 22 with the
    60/40 c-C5/i-C5
    blend:
    For 10%/90% blend 0.156
    of 22 with the
    60/40 c-C5/i-C5
    blend:
    For 20%/80% blend 0.151
    of 22 with the
    60/40 c-C5/i-C5
    blend:
  • [0018]
    TABLE IV
    K-factors (in BTU.in/ft2.hr.° F.) at 0° C.
    (%s in blends are in mole %)
    For 100% n-C5: 0.192
    For 5%/95% blend 0.183
    of 22/n-C5:
    For 10%/90% blend 0.176
    of 22/n-C5:
    For 100% i-C5: 0.177
    For 5%/95% blend 0.165
    of 22/i-C5:
    For 10%/90% blend 0.160
    of 22/i-C5:
    For 15%/85% blend 0.157
    of 22/i-C5:
    For 100% c-C5: 0.159
    For 10%/90% blend 0.156
    of 22/i-C5:
    For 20%/80% blend 0.147
    of 22/i-C5:
    For 100% of a 0.167
    60/40 c-C5/i-C5
    blend:
    For 5%/95% blend 0.166
    of 22 with the
    60/40 c-C5/i-C5
    blend:
    For 10%/90% blend 0.157
    of 22 with the
    60/40 c-C5/i-C5
    blend:
    For 20%/80% blend 0.148
    of 22 with the
    60/40 c-C5/i-C5
    blend:

Claims (9)

1. A foam blowing agent composition comprising
(a) about 5 to 50 mole % of chlorodifluoromethane and
(b) about 95 to 50 mole % of a pentane selected from the group consisting of one or more of n-pentane, i-pentane and cyclopentane.
2. The composition of
claim 1
wherein the pentane is a mixture of i-pentane and cyclopentane.
3. A foam blowing agent composition comprising
(a) about 5 to 50 mole % of chlorodifluoromethane and
(b) about 95 to 50 mole % of a pentane selected from the group consisting of one or more of n-pentane and i-pentane.
4. A foam premix composition comprising a polyol and the foam blowing agent composition of
claim 1
.
5. A foam premix composition comprising a polyol and the foam blowing agent composition of
claim 2
.
6. A foam premix composition comprising a polyol and the foam blowing agent composition of
claim 3
.
7. A polyurethane foam composition comprising an isocyanate, a polyol and the foam blowing agent composition of
claim 1
, said foam composition having (a) an A-side which contains the isocyanate and, optionally, a portion of the foam blowing agent composition and (b) a B-side which contains the polyol and the balance of the foam blowing agent composition.
8. A polyurethane foam composition comprising an isocyanate, a polyol and the foam blowing agent composition of
claim 2
, said foam composition having (a) an A-side which contains the isocyanate and, optionally, a portion of the foam blowing agent composition and (b) a B-side which contains the polyol and the balance of the foam blowing agent composition.
9. A polyurethane foam composition comprising an isocyanate, a polyol and the foam blowing agent composition of
claim 3
, said foam composition having (a) an A-side which contains the isocyanate and, optionally, a portion of the foam blowing agent composition and (b) a B-side which contains the polyol and the balance of the foam blowing agent composition.
US09/788,708 2000-03-15 2001-02-20 Blowing agent blends Abandoned US20010036974A1 (en)

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US09/788,708 US20010036974A1 (en) 2000-03-15 2001-02-20 Blowing agent blends

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US09/789,061 Expired - Fee Related US6319886B2 (en) 2000-03-15 2001-02-16 Blowing agent blends
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JP (1) JP2001262120A (en)
CN (1) CN1313353A (en)
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BR (1) BR0100496A (en)
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20030114549A1 (en) * 2001-12-18 2003-06-19 Foam Supplies, Inc. Rigid foam compositions and method employing methyl formate as a blowing agent

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050131095A1 (en) * 2002-08-02 2005-06-16 Jianming Yu Novel polyols
US8453390B2 (en) * 2007-01-30 2013-06-04 Firestone Building Products Company, Llc High density polyurethane and polyisocyanurate construction boards and composite boards
US7932072B1 (en) * 2009-12-07 2011-04-26 E. I. Du Pont De Nemours And Company Perhydrolase providing improved peracid stability

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4636529A (en) 1985-05-13 1987-01-13 Pennwalt Corporation Polyurethane foams from isocyanate, polyester polyol and chlorodifluoromethane
GB9403334D0 (en) * 1993-04-23 1994-04-13 Ici Plc Process for rigid polyurethane foams

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20030114549A1 (en) * 2001-12-18 2003-06-19 Foam Supplies, Inc. Rigid foam compositions and method employing methyl formate as a blowing agent
US6753357B2 (en) 2001-12-18 2004-06-22 Foam Supplies, Inc. Rigid foam compositions and method employing methyl formate as a blowing agent
US20050131094A1 (en) * 2001-12-18 2005-06-16 Kalinowski Timothy T. Rigid foam compositions and methods employing alkyl alkanoates as a blowing agent
US7635723B2 (en) 2001-12-18 2009-12-22 Foam Supplies, Inc. Rigid foam compositions and methods employing alkyl alkanoates as a blowing agent

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AR026484A1 (en) 2003-02-12
US6310111B1 (en) 2001-10-30
US6319886B2 (en) 2001-11-20
MXPA01002705A (en) 2002-04-24
CN1313353A (en) 2001-09-19
BR0100496A (en) 2001-12-04
CA2327138C (en) 2004-10-26
JP2001262120A (en) 2001-09-26
US20010034378A1 (en) 2001-10-25
CA2327138A1 (en) 2001-09-15

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