WO1998047385A1 - Fat emulsions - Google Patents

Fat emulsions Download PDF

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Publication number
WO1998047385A1
WO1998047385A1 PCT/EP1998/002135 EP9802135W WO9847385A1 WO 1998047385 A1 WO1998047385 A1 WO 1998047385A1 EP 9802135 W EP9802135 W EP 9802135W WO 9847385 A1 WO9847385 A1 WO 9847385A1
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WO
WIPO (PCT)
Prior art keywords
fat
continuous emulsion
emulsion according
oil
blend
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/EP1998/002135
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French (fr)
Inventor
Frederick William Cain
Anne Hailes
Leo Frans Vermaas
Olga Cornelia Zwemmer
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Unilever NV
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Unilever NV
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Filing date
Publication date
Application filed by Unilever NV filed Critical Unilever NV
Priority to EP98921457A priority Critical patent/EP0977489B1/en
Priority to AU74306/98A priority patent/AU7430698A/en
Priority to US09/403,546 priority patent/US6277430B1/en
Priority to DE69832477T priority patent/DE69832477T2/en
Publication of WO1998047385A1 publication Critical patent/WO1998047385A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • A—HUMAN NECESSITIES
    • A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23D—EDIBLE OILS OR FATS, e.g. MARGARINES, SHORTENINGS OR COOKING OILS
    • A23D7/00—Edible oil or fat compositions containing an aqueous phase, e.g. margarines
    • A23D7/005—Edible oil or fat compositions containing an aqueous phase, e.g. margarines characterised by ingredients other than fatty acid triglycerides
    • A23D7/0056—Spread compositions
    • A—HUMAN NECESSITIES
    • A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23D—EDIBLE OILS OR FATS, e.g. MARGARINES, SHORTENINGS OR COOKING OILS
    • A23D7/00—Edible oil or fat compositions containing an aqueous phase, e.g. margarines
    • A23D7/005—Edible oil or fat compositions containing an aqueous phase, e.g. margarines characterised by ingredients other than fatty acid triglycerides
    • A23D7/0053—Compositions other than spreads
    • A—HUMAN NECESSITIES
    • A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23D—EDIBLE OILS OR FATS, e.g. MARGARINES, SHORTENINGS OR COOKING OILS
    • A23D7/00—Edible oil or fat compositions containing an aqueous phase, e.g. margarines
    • A23D7/015—Reducing calorie content; Reducing fat content, e.g. "halvarines"
    • C—CHEMISTRY; METALLURGY
    • C09—DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09K—MATERIALS FOR MISCELLANEOUS APPLICATIONS, NOT PROVIDED FOR ELSEWHERE
    • C09K23/00—Use of substances as emulsifying, wetting, dispersing, or foam-producing agents
    • C09K23/017—Mixtures of compounds
    • C09K23/018—Mixtures of two or more different organic oxygen-containing compounds

Definitions

  • Food products often contain emulsifying systems.
  • Components for these emulsifying systems can be selected from many sources but often they comprise partial glycerides and phospholipids .
  • these emulsifying systems can give good to acceptable results when applied in food products containing a fat emulsion, such as spreads, dressings, mayonnaise, creams etc we also found that product properties like spreadability, melt down or flavour release still were not optimal.
  • This problem is known for in particular water-in-oil emulsions such as spreads, more particularly low fat spreads, wherein the emulsifier system has a critical role. This is in particular the case in products wherein a component is required that can provide structuring to the food products.
  • nutritive food compositions that contain high amounts of pine nut oil and polyunsaturated fatty acids such as CLA, EPA and DHA.
  • the compositions also contain a small amount of an oil soluble, physiologically active component, which could be octacosanol (cf claim 4) .
  • an oil soluble, physiologically active component which could be octacosanol (cf claim 4) .
  • the examples also illustrate the preparation of a margarine the margarine prepared does not contain policosanol. Therefore it cannot be derived from this document that the use of long chain alcohols in fat continuous emulsions has a beneficial effect on product performance.
  • our invention concerns in the first instance fat- continuous emulsions of fat and water, having a fat content of 0.5-99.5 wt%, preferably 10-90 wt%, most preferably 15- 85 wt% and containing an emulsifier system, wherein the emulsifier system is a blend of components, with emulsifying properties, comprising components (A) , (B) and (C) , wherein:
  • A a partial glyceride, containing at least one fatty acid residue with at least 2 carbon atoms
  • B a phospholipid
  • C a long chain alcohol having at least 20 carbon atoms in the alcohol chain, while (A) , (B) and (C) are present in amounts, based on the total emulsifier blend of:
  • (B) 0-80 wt% of (B) , preferably 2-60 wt%, most preferably 10-40 wt% 0.01-99.98 wt% of (C) , preferably 2-70 wt%, most preferably 10-60 wt%, and the total amount of components (A) and (B) in this blend always being at least 0.02 wt%.
  • emulsifier blends component (A) is selected from the group consisting of saturated and unsaturated monoglycerides, saturated or unsaturated or mixed diglycerides, or mixtures thereof with emulsifying properties.
  • Very convenient products are based on partial glycerides derived from saturated fatty acids with 2-22 carbon atoms in particular 8-18 carbon atoms, most preferably 16-18 carbon atoms.
  • partial glycerides based on mono or polyunsaturated fatty acid residues can be used successfully as well.
  • partial glycerides derived from oleic acid and linoleic acid perform well.
  • Component (B) of above blends can be selected from the group consisting of lecithin, enzymically treated lecithin, fractions of lecithin.
  • the enzymically treated lecithin preferably is a lecithin treated with phospholipase A and/or D. Also fractions of lecithin can be used successfully eg a fraction obtained after ethanol extraction performs very good.
  • Component (C) is the healthy component in above emulsifier blends. This component is preferably a straight chain alcohol with more than 20 carbon atoms, in particular having 26-30 C atoms. The health benefits of these components (C) are disclosed in the two documents referred to earlier. However the positive impact on the structuring properties of the blend is not disclosed therein. This component is present in a number of natural products such as w eatgerm-wax, carnauba- wax, rice bran wax and sugar cane wax. Commercial products, containing these can be obtained from eg Garuda, Int
  • fat-continuous emulsions of fat and water having a fat content of 0.5-99.5 wt%, preferably 10-90 wt%, most preferably 15-85 wt% and containing an emulsifier system, wherein the emulsifier system is a blend as disclosed above are part of our invention.
  • These emulsions contain the emulsifier blend according to the invention in amounts such that the ratio fat: emulsifier blend in the emulsion ranges from 99.9:0.1 to 90:10.
  • the solid fat content is measured on a fat that was subjected to the following T-regime: eIt at 80 oC , cool to 0 oC and keep it 1 hr at 0 oC, warm up to measurement temperature and keep it at this temperature for half an hour.
  • Very suitable fats comprise at least two components (D) and (E) from which (D) has an N20>20 and (E) has a content mono and diunsaturated fatty acid residues of at least 25 %, preferably at least 45 %, in particular 45-70 % .
  • component (D) can be selected from the group consisting of palm kernel fractions, palm fractions, interesterified mixtures thereof, interesterified hardened palm oil and hardened palm kernel oil and fractions thereof, interesterified mixtures of liquid oils and hardened liquid oils, and fractions thereof, fats containing at least 20 wt%, preferably at least 35 wt% of SUS triglycerides .
  • Preferred fats D are interesterified palm oil fractions; interesterified mixtures of palm oil 58 and palm kernel 41, and its fractions, interesterified palm stearin/palm kernel stearin and its fractions and interesterified soybean oil/soybean oil 65 and its fractions.
  • Component (E) suitably is selected from the group consisting of sunflower oil, high oleic sunflower oil, rape seed oil, high oleic rape seed oil, palm oil olein, corn oil, soybean oil, high oleic soybean oil.
  • the emulsions that are obtained are fat continuous and preferably do not contain water soluble emulsifiers, other than proteins.
  • the emulsions can also contain other ingredients eg proteins in particular proteins derived from milk.
  • Another component that is useful for in particular achieving a structuring of the waterphase, in particular in those products that are low in fat content are thickeners.
  • Useful thickeners can be selected from the group consisting of starch, modified starch, guar gum, carrageenan, locust bean gum and gelatin.
  • a premix was made at 60 °C of the components given in the amounts indicated.
  • the premix was processed in a system consisting of an Al, an A2 and a Cl unit, wherein Al and A2 are two scraped surface heat exchanger whereas Cl was a resting unit in case a margarine was made and an inventor in case a halverine was made.
  • the hardness of the products was measured on a Stevens texture analyser provided with a probe of 6.35 mm under standard conditions.

Landscapes

  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Oil, Petroleum & Natural Gas (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)
  • Materials Engineering (AREA)
  • Organic Chemistry (AREA)
  • Edible Oils And Fats (AREA)

Abstract

Novel fat-continous emulsion, containing a blend with emulsifying properties is obtained by the blending of: 0-90 % of a partial glyceride (=A); 0-80 % of a phospholipid (=B); 0.01-99.98 % of a long chain alcohol having > 20 C-atoms in the alcohol chain, while the amount of (A) + (B) ≥ 0.02 % and incorporating this blend in a fat-continuous emulsion.

Description

FAT EMULSIONS
Food products often contain emulsifying systems. Components for these emulsifying systems can be selected from many sources but often they comprise partial glycerides and phospholipids . Although these emulsifying systems can give good to acceptable results when applied in food products containing a fat emulsion, such as spreads, dressings, mayonnaise, creams etc we also found that product properties like spreadability, melt down or flavour release still were not optimal. This problem is known for in particular water-in-oil emulsions such as spreads, more particularly low fat spreads, wherein the emulsifier system has a critical role. This is in particular the case in products wherein a component is required that can provide structuring to the food products.
Moreover the food products from nowadays need to contain components that make them healthier than the food products known so far.
Long chain alcohols are applied in food products such as beverages to improve stability of the beverage emulsion. (cf JP 63/219357) . Herefore a water soluble emulsifier should be present in the composition. In this document nothing is disclosed about the use of these compositions in fat continuous emulsions let it be about the improvements in product properties that can be achieved by this use. From JP 62/224258 it is known that nutritive foods can be obtained that contain 5 out of 7 components named per se. One of these components is octacosanol ie a component comprising a long chain alcohol in high amounts. This document however does not disclose the use of the long chain alcohol in fat continuous emulsions neither per se nor combined with other emulsifiers.
From JP 61/058536 nutritive food compositions are known that contain high amounts of pine nut oil and polyunsaturated fatty acids such as CLA, EPA and DHA. The compositions also contain a small amount of an oil soluble, physiologically active component, which could be octacosanol (cf claim 4) . Although the examples also illustrate the preparation of a margarine the margarine prepared does not contain policosanol. Therefore it cannot be derived from this document that the use of long chain alcohols in fat continuous emulsions has a beneficial effect on product performance. We studied, whether we could find a new blend with emulsifying properties comprising also a very healthy component that provides structuring properties to fat- continuous emulsions, while also providing simultaneously cholesterol lowering properties to the food products. Although the cholesterol lowering component per se is known for this purpose cf EP 654 262 and WO 94/07830 the positive impact of the component on the structuring properties of fat-continuous systems is not disclosed in these documents. This structuring effect is noticed as a higher hardness for the fat continuous emulsion (Stevens value) .
Therefore our invention concerns in the first instance fat- continuous emulsions of fat and water, having a fat content of 0.5-99.5 wt%, preferably 10-90 wt%, most preferably 15- 85 wt% and containing an emulsifier system, wherein the emulsifier system is a blend of components, with emulsifying properties, comprising components (A) , (B) and (C) , wherein:
A= a partial glyceride, containing at least one fatty acid residue with at least 2 carbon atoms B= a phospholipid and
C= a long chain alcohol having at least 20 carbon atoms in the alcohol chain, while (A) , (B) and (C) are present in amounts, based on the total emulsifier blend of:
0-90 wt% of (A) , preferably 2-60 wt %, most preferably 10-40 wt%.
0-80 wt% of (B) , preferably 2-60 wt%, most preferably 10-40 wt% 0.01-99.98 wt% of (C) , preferably 2-70 wt%, most preferably 10-60 wt%, and the total amount of components (A) and (B) in this blend always being at least 0.02 wt%.
In above emulsifier blends component (A) is selected from the group consisting of saturated and unsaturated monoglycerides, saturated or unsaturated or mixed diglycerides, or mixtures thereof with emulsifying properties.
Very convenient products are based on partial glycerides derived from saturated fatty acids with 2-22 carbon atoms in particular 8-18 carbon atoms, most preferably 16-18 carbon atoms. However partial glycerides based on mono or polyunsaturated fatty acid residues can be used successfully as well. In particular partial glycerides derived from oleic acid and linoleic acid perform well.
Component (B) of above blends can be selected from the group consisting of lecithin, enzymically treated lecithin, fractions of lecithin. The enzymically treated lecithin preferably is a lecithin treated with phospholipase A and/or D. Also fractions of lecithin can be used successfully eg a fraction obtained after ethanol extraction performs very good. Component (C) is the healthy component in above emulsifier blends. This component is preferably a straight chain alcohol with more than 20 carbon atoms, in particular having 26-30 C atoms. The health benefits of these components (C) are disclosed in the two documents referred to earlier. However the positive impact on the structuring properties of the blend is not disclosed therein. This component is present in a number of natural products such as w eatgerm-wax, carnauba- wax, rice bran wax and sugar cane wax. Commercial products, containing these can be obtained from eg Garuda, Int or
Dalmar Lab and are known as Octacosanol®, Ateromixol®.
Thus fat-continuous emulsions of fat and water having a fat content of 0.5-99.5 wt%, preferably 10-90 wt%, most preferably 15-85 wt% and containing an emulsifier system, wherein the emulsifier system is a blend as disclosed above are part of our invention. These emulsions contain the emulsifier blend according to the invention in amounts such that the ratio fat: emulsifier blend in the emulsion ranges from 99.9:0.1 to 90:10.
Preferred fats that are applied in our emulsions are fats that display a solid fat content (measured by NMR on a non stabilised fat) at 5 oC (=N5)of >10, preferably >20 and at 35 oC(=N35) < 7, preferably <3. The solid fat content is measured on a fat that was subjected to the following T-regime: eIt at 80 oC , cool to 0 oC and keep it 1 hr at 0 oC, warm up to measurement temperature and keep it at this temperature for half an hour.
Very suitable fats comprise at least two components (D) and (E) from which (D) has an N20>20 and (E) has a content mono and diunsaturated fatty acid residues of at least 25 %, preferably at least 45 %, in particular 45-70 % . Herein component (D) can be selected from the group consisting of palm kernel fractions, palm fractions, interesterified mixtures thereof, interesterified hardened palm oil and hardened palm kernel oil and fractions thereof, interesterified mixtures of liquid oils and hardened liquid oils, and fractions thereof, fats containing at least 20 wt%, preferably at least 35 wt% of SUS triglycerides . Preferred fats D are interesterified palm oil fractions; interesterified mixtures of palm oil 58 and palm kernel 41, and its fractions, interesterified palm stearin/palm kernel stearin and its fractions and interesterified soybean oil/soybean oil 65 and its fractions. Component (E) suitably is selected from the group consisting of sunflower oil, high oleic sunflower oil, rape seed oil, high oleic rape seed oil, palm oil olein, corn oil, soybean oil, high oleic soybean oil.
The emulsions that are obtained are fat continuous and preferably do not contain water soluble emulsifiers, other than proteins.
The emulsions can also contain other ingredients eg proteins in particular proteins derived from milk. Another component that is useful for in particular achieving a structuring of the waterphase, in particular in those products that are low in fat content are thickeners. Useful thickeners can be selected from the group consisting of starch, modified starch, guar gum, carrageenan, locust bean gum and gelatin. EXAMPLES I-III
Margarines and halvarines (protein based and water based) were made according to the recipe mentioned in tables I-III. The processing was performes as follows:
A premix was made at 60 °C of the components given in the amounts indicated. The premix was processed in a system consisting of an Al, an A2 and a Cl unit, wherein Al and A2 are two scraped surface heat exchanger whereas Cl was a resting unit in case a margarine was made and an inventor in case a halverine was made.
The hardness of the products was measured on a Stevens texture analyser provided with a probe of 6.35 mm under standard conditions.
The results are given in tables I-III. It can be concluded that the products containing a policosanol were in general harder than the products without this component, although the total of (hymono + bolec + policosanol) was always 0.3 %, except for the waterhalverines were this total was always 0.4 % . The results also demonstrates that the effect was bigger the more policosanol was present.
I EFFECT of POLICOSANOL on PRODUCT PROPERTIES of MARGARINES
Figure imgf000009_0001
from Garuda Int (>95 wt% alcohols with 24-34 C atoms; from which 60% is C28) Table I (cont)
Figure imgf000010_0001
From Carnauba-wax (> 98% is C24-C34 - alcohol from which 70% is C32) Table I ( cont;
Figure imgf000011_0001
from Sugar cane wax (97% is C26-C30 alcohols, from which 62% is C28 alcohol) II EFFECT of POLICOSANOL on PRODUCT PROPERTIES of PROTEIN
HAL ARINES
Figure imgf000012_0001
from Garuda Int, Table II (cont.
Figure imgf000013_0001
from Carnauba-wax Table II (cont)
Figure imgf000014_0001
from Rice bran wax (>98% is C24-C34 alcohol, from which 78% is C28-C34) III POLICOSANOL IN WATERHALVARINES
Figure imgf000015_0001
from Garuda Int,

Claims

Fat continuous emulsion of fat and water having a fat content of 0.5-99.5 wt%, preferably 10-90 wt%, most preferably 15-85 wt% and containing an emulsifier system, wherein the emulsifier system is a blend of components with emulsifying properties, comprising components (A) , (B) and (C) , wherein:
A= a partial glyceride, containing at least one fatty acid residue with at least 2 carbon atoms
B= a phospholipid and
C= a long chain alcohol having at least 20 carbon atoms in the alcohol chain, while (A) , (B) and (C) are present in amounts, based on the total emulsifier blend of:
0-90 wt% of (A) , preferably 2-60 wt %, most preferably
10-40 wt%.
0-80 wt% of (B) , preferably 2-60 wt%, most preferably 10-40 wt%
0.01-99.98 wt% of (C) , preferably 2-70 wt%, most preferably 10-60 wt%, and the total amount of components (A) and (B) in this blend always being at least 0.02 wt%.
Fat continuous emulsion according to claim 1, wherein component (A) is selected from the group consisting of saturated and unsaturated monoglycerides, saturated or unsaturated or mixed diglycerides, or mixtures thereof with emulsifying properties.
3. Fat continuous emulsion according to claim 1, wherein component (B) is selected from the group consisting of lecithin, enzymically treated lecithin, fractions of lecithin.
4. Fat continuous emulsion according to claim 1, wherein component (C) is a straight chain alcohol with more than 20 carbon atoms, in particular having 26-30 C atoms .
5. Fat-continuous emulsion according to claim 1, wherein the emulsion contains the blend with the emulsifying properties in amounts such that the ratio fat: blend with emulsifying properties ranges from 99.9:0.1 to 90:10.
6. Fat-continuous emulsion according to claims 1-5, wherein the fat of the fat-continuous emulsion displays a solid fat content (measured by NMR on a non stabilised fat) at 5 oC (=N5) of >10, preferably >20 and at 35 oC(=N35) < 7, preferably <3
7. Fat-continuous emulsion according to claims 1-6, wherein the fat comprises at least two components (D) and (E) from which (D) has an N20>20 and (E) has a content mono and diunsaturated fatty acid residues of at least 25 %, preferably at least 45 %, in particular 45-70 %.
8. Fat-continuous emulsion according to claim 7, wherein component (D) is selected from the group consisting of palm fractions, interesterified hardened palm oil and hardened palm kernel oil and fractions thereof, interesterified mixtures of liquid oils and hardened liquid oils, and fractions thereof, fats containing at least 20 wt%, preferably at least 35 wt% of SUS triglycerides .
9. Fat-continuous emulsion according to claim 7, wherein component (E) is selected from the group consisting of sunflower oil, high oleic sunflower oil, rape seed oil, high oleic rape seed oil, palm oil olein, corn oil, soybean oil, high oleic soybean oil.
10. Fat-continuous emulsion according to claim 1-9, wherein the emulsion contains > 1 wt % of a protein, in particular a milk protein.
11. Fat-continuous emulsion according to claim 1-10, wherein the emulsion contains a thickener, selected from the group consisting of starch, modified starch, guar gum, carrageenan, locust bean gum and gelatin.
PCT/EP1998/002135 1997-04-24 1998-04-02 Fat emulsions Ceased WO1998047385A1 (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
EP98921457A EP0977489B1 (en) 1997-04-24 1998-04-02 Fat emulsions
AU74306/98A AU7430698A (en) 1997-04-24 1998-04-02 Fat emulsions
US09/403,546 US6277430B1 (en) 1997-04-24 1998-04-02 Fat emulsions
DE69832477T DE69832477T2 (en) 1997-04-24 1998-04-02 FAT EMULSIONS

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
EP97302826 1997-04-24
EP97302826.9 1997-04-24

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EP (1) EP0977489B1 (en)
AU (1) AU7430698A (en)
DE (1) DE69832477T2 (en)
WO (1) WO1998047385A1 (en)

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US6355274B1 (en) 1999-12-15 2002-03-12 Mcneil-Ppc, Inc. Encapsulated long chain alcohols
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DATABASE WPI Section Ch Week 8842, Derwent World Patents Index; Class D13, AN 88-297717, XP002042066 *
DATABASE WPI Section Ch Week 8950, Derwent World Patents Index; Class D13, AN 89-367379, XP002073226 *
PATENT ABSTRACTS OF JAPAN vol. 012, no. 092 (C - 483) 25 March 1988 (1988-03-25) *
PATENT ABSTRACTS OF JAPAN vol. 012, no. 176 (C - 498) 25 May 1988 (1988-05-25) *

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1108363A1 (en) * 1999-12-15 2001-06-20 McNEIL-PPC, INC. Long chain alcohols provided in edible oils
US6355274B1 (en) 1999-12-15 2002-03-12 Mcneil-Ppc, Inc. Encapsulated long chain alcohols
EP1108365A3 (en) * 1999-12-15 2002-04-17 McNEIL-PPC, INC. Encapsulated long chain alcohols
EP1108364A3 (en) * 1999-12-15 2002-05-29 McNEIL-PPC, INC. Long chain alcohols admixed in sterol compounds
US6875443B2 (en) 1999-12-15 2005-04-05 Mcneil-Ppc, Inc. Encapsulated long chain alcohols
US7232574B1 (en) 1999-12-15 2007-06-19 Mcneil-Ppc, Inc. Long chain alcohols provided in edible oils

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US6277430B1 (en) 2001-08-21
DE69832477T2 (en) 2006-08-03
EP0977489B1 (en) 2005-11-23
AU7430698A (en) 1998-11-13
DE69832477D1 (en) 2005-12-29
EP0977489A1 (en) 2000-02-09

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