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EP 2 929 060 B1 |
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EUROPEAN PATENT SPECIFICATION |
| (45) |
Mention of the grant of the patent: |
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26.10.2016 Bulletin 2016/43 |
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Date of filing: 22.11.2013 |
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International Patent Classification (IPC):
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International application number: |
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PCT/IB2013/060335 |
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International publication number: |
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WO 2014/091341 (19.06.2014 Gazette 2014/25) |
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A PROCESS AND COMPOSITIONS FOR DEGREASING PELTS
VERFAHREN UND ZUSAMMENSETZUNGEN ZUM ENTFETTEN VON HÄUTEN
PROCÉDÉ ET COMPOSITIONS POUR LE DÉGRAISSAGE DE PEAUX
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Designated Contracting States: |
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AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL
NO PL PT RO RS SE SI SK SM TR |
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Priority: |
10.12.2012 IT FI20120276
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| (43) |
Date of publication of application: |
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14.10.2015 Bulletin 2015/42 |
| (73) |
Proprietor: Colortex S.p.A. |
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56029 Santa Croce sull'Arno (Pisa) (IT) |
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Inventors: |
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- GORIA, Enrico
I-50054 Fucecchio (Firenze) (IT)
- CEPPARRONE, Antonuccio
I-56032 Buti (Pisa) (IT)
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Representative: Brazzini, Silvia et al |
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Società Italiana Brevetti S.p.A.
Corso dei Tintori, 25 50122 Firenze 50122 Firenze (IT) |
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References cited: :
US-A- 5 474 787
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US-A- 5 525 120
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- DATABASE WPI Week 199215 Thomson Scientific, London, GB; AN 1992-121185 XP002702516,
& JP H04 68092 A (ASAHI CHEM IND CO LTD) 3 March 1992 (1992-03-03)
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| |
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
Field of the invention
[0001] The present invention refers in general to the field of leather tanning, and more
precisely refers to a novel process of treatment of pelts that combines optimally
the needs of health, ecology and environmental safety, with the aesthetic and functional
features required today from leather, thanks to the use of degreasing agents never
used until today in this field.
State of the Art
[0002] It is known that the process for the manufacture of leather includes different working
steps: amongst the first steps of the process is a degreasing step of animal skins,
with the purpose of eliminating the natural fat residue usually contained in the dermis'
structure of the animal. The presence of fat on the skins to be treated is in fact
a "water-repellent" layer that must be necessarily eliminated if a smoother and more
uniform penetration is desired of the tanning agents and in general of any water-soluble
or water-emulsifiable products to be used in one or more of the manufacture steps.
[0003] Currently, for this purpose, so-called "degreasing" agents are used; they are of
various types and of different nature, such as chlorinated organic solvents, emulsifiers
of various nature, mineral spirits, or natural extracts having a certain solvent power
such as the citrus extracts.
[0004] Chlorinated organic solvents exhibit a high degreasing capability, but their use
has several drawbacks, such as difficulties in the disposal of large amounts of solvents
of this type, highly polluting, and even a worse quality of the animal skin degreased
by using these solvents. As a matter of fact, animal skin loses its typical fullness
and compactness, often resulting too empty and dry, so that even the subsequent tanning
treatments are affected in a negative way. Furthermore, current regulations prohibit
the use of this type of solvents in open systems.
[0005] For these reasons, and in particular for the growing ecological awareness and attention
to working conditions also in the tanning industry, degreasing agents such as chlorinated
solvents are almost disappeared from this industry, at least in Western countries,
where research is now focusing on new degreasing agents that are natural or at least
not harmful to people and environment, that produce lower quantities of waste and
therefore less pollution. To this advancement the ever-changing industry regulations
have also contributed, requiring the development of products and processes that meet
increasingly stringent requirements in terms of environmental protection and in terms
of health and safety of process workers in manufacturing industry.
[0006] These new degreasing agents on the other hand are requested to be at least as efficient
in degreasing as the traditional chemical solvents, to have a reasonably low cost
and not to weigh too much on the economy of the manufacture process with substances
that, as natural and not harmful, however have a prohibitive cost.
[0007] Amongst the degreasing agents known and used until today that are not chlorinated
organic solvents, it is worth mentioning the mineral spirits used in combination with
non-ionic surfactants such as alkylphenol ethoxylates, in particular the nonylphenol
ethoxylates, used for their high degreasing efficiency but now considered unsatisfactory
because of their toxicity and environmental impact associated with their use.
[0008] Other alcohol ethoxylates have been proposed to replace them: they are satisfactory
both from the economic point of view and from the ecological point of view, but they
are less efficient as broad-spectrum degreasers.
[0009] For these reasons up to now, as far as the Applicant is aware, it is still unsolved
the technical problem of having available a degreasing process that is ecological,
economic but efficient, able to further provide a high quality final product.
[0010] The
US Patent No. 5,525,120 describes a process for degreasing animal skins with degreasing preparations based
on non-ionic fatty alcohol alkoxylates.
Summary of the invention
[0011] Now the Applicant has found that the products as defined in the following are degreasing
agents having high efficiency, for removing the natural fat in the animal skins to
be treated as well as for removing fats from the intermediate products in leather
manufacture; they are moreover products that are available on the market or that may
be anyway manufactured at low costs, and they are not harmful for human health and
for the environment.
[0012] The leather obtained by using the present degreasing agents is furthermore of high
quality, and has valuable aesthetic and functional characteristics, since the compactness
and the softness of the starting pelts are advantageously maintained unchanged.
[0013] It is therefore subject of the present invention a process for degreasing pelts or
intermediate products in leather manufacture, comprising the treatment of said pelts
or of said intermediate products with a degreasing agent selected from glycerol diacetate
and derivatives thereof, glycerol triacetate, and mixtures thereof according to claim
1.
[0014] It is a further subject of the invention a degreasing composition for pelts or for
intermediate products in leather manufacture suitable for use in the above said process,
which is an aqueous dispersion comprising a degreasing agent selected from glycerol
diacetate and derivatives thereof, glycerol triacetate, and mixtures thereof, one
or more co-solvents, surfactants and/or co-emulsifying agents.
[0015] Further important characteristics of the process and of the composition of the invention
are described in the following detailed description.
Detailed description of the invention
[0016] In the present invention by the term "glycerol diacetate" a structural isomer of
glycerol diacetate is meant, i.e. glycerol 1,2-diacetate or glycerol 1,3-diacetate,
or mixtures thereof.
[0017] By the term "derivatives" of glycerol diacetate, derivatives are meant that are for
example selected from esters of glycerol diacetate with aromatic or aliphatic, linear
or branched, organic acids, and preferably with organic acids having a number of carbon
atoms ranging from 3 to 10; particularly preferred derivatives of glycerol diacetate
are esters of glycerol diacetate with benzoic acid, butanoic acid and iso-octanoic
acid.
[0018] Glycerol diacetate and glycerol triacetate, also known as diacetin or GDA and triacetin
or GTA respectively, besides having for their nature practically zero degree of hazard
and a much reduced environmental impact, are stable compounds, non-volatile, not inflammable,
and easily dispersible in water by addition of a co-solvent or of surfactants.
[0019] Furthermore, they are products available on the market at low cost, or they may be
easily prepared starting from products available on the market as glycerol and acetic
acid, using known procedures, whose optimal experimental conditions may be easily
defined by any persons skilled in the field. In both cases, they are products that
have been known for decades, but used in completely different fields and for uses
that are completely different from that of the invention.
[0020] The main use of these products is for instance as plasticizer for cigarette filters,
even if other uses are known, triacetin is in fact also used as alimentary additive
or as a fungicide agent in cosmetic products.
[0021] Now the Applicant has surprisingly found that these products are also excellent degreasing
agents for animal skins and solve the technical problem illustrated above. As a matter
of fact, they have shown a high solvent power towards natural triglycerides present
in animal skins, which are therefore more easily extracted from the derma fibrous
structure thus facilitating an in-depth degreasing, otherwise not practicable or anyway
difficult if carried out with the other degreasing agents until now used in an aqueous
environment.
[0022] A particularly preferred degreasing agent according to the invention is triacetin.
[0023] The present degreasing agents may be for instance used in aqueous solution and in
amount comprised between 0.1 and 5% by weight with respect to the total weight of
the pelts treated, and preferably in amount comprised between 2 and 3%. Depending
on the kind of starting pelt to be treated, on the seasonality and of the type of
final desired product, the amount of degreasing agent may be varied accordingly, and
the optimal amounts of the product to be used may be found from time to time.
[0024] According to the invention, the present degreasing agents may be also used "under
dry conditions", i.e. in the absence of water or other solvents, according to the
procedures and with the equipment commonly used for this kind of application.
[0025] The present degreasing agents may be moreover used alone or in combination with other
degreasing agents, natural or not, and/or with surfactants of various nature. During
degreasing in aqueous environment, one or more co-solvents may be furthermore added
to water in order to increase solubility of possible additional components of the
formulation besides the degreasing agent.
Typical degreasing agents according to the invention may for instance comprise:
| |
% by weight/total weight |
| degreasing agent according to the invention |
20-80 |
| water |
10-60 |
| surfactants |
5-50 |
| co-emulsifying agents |
0.5-10 |
| co-solvent |
0.5-10 |
[0026] Surfactants of possible use in the present compositions are selected from the group
consisting of:
- polyethylene glycol 200-1200,
- linear alcohols C10-C16 ethoxylate with 2-10 moles of ethylene oxide (in the following "m EO"),
- iso C10-C16 alcohols ethoxylate with 2-10 m EO,
- linear C10-C16 alcohols sulphated salt with sodium or potassium,
- linear C10-C16 alcohols ethoxylate with 2-10 m EO, sulphated, sodium or potassium salt,
- linear C10-C16 alcohols, phosphated, sodium or potassium salt,
- linear C10-C16 alcohols ethoxylate with 2-10 m EO, phosphated, sodium salt,
- C8-C16 alcohol sulphosuccinates, sodium or potassium salt,
- saturated or unsaturated C12-C22 fatty acids ethoxylate with 2-10 m EO,
- saturated or unsaturated C12-C22 fatty acids esterified with sorbitol ethoxylate with 5-20 m EO,
- saturated or unsaturated C12-C22 fatty acids esterified with glycerol ethoxylate with 5-20 m EO,
- castor oil ethoxylate with 15-100 m EO,
- C12-C22 fatty amines ethoxylate with 3-30 EO m,
- amides from ethanolamines and C12-C22 fatty acids,
- amides from ethanolamines and C12-C2 fatty acids ethoxylate with 2-10 m EO,
- C12-C22 alkanes di-methyl quaternary ammonium salt CI-SO4,
- C12-C18 alkane acids, sulphonated, sodium or potassium salt,
- benzensulphonic acids,
- C10-C16 alkyl derivatives, sodium or potassium salt, and mixtures thereof.
[0027] Co-emulsifying agents of possible use in the present compositions are selected from
the group consisting of:
- saturated or unsaturated C12-C22 fatty acids mono- or di-esters with sorbitol,
- saturated or unsaturated C12-C22 fatty acids mono- or di-esters with glycerol,
- C10-C16 alcohols,
- C12-C22 fatty amines, and mixture thereof.
[0028] Co-solvents of possible use in the present compositions are selected in the group
consisting of:
- hexylene glycol,
- butyl glycol,
- di-butyl glycol,
- propylene glycol,
- di-propylene glycol,
- n-propyl alcohol,
- i-propyl alcohol,
- n-butyl alcohol,
- i-butyl alcohol,
- 1-methoxy-2-propanol, and mixtures thereof.
Preferred degreasing compositions according to the invention comprise:
| |
% by weight/total weight |
| degreasing agent according to the invention |
20-50 |
| water |
20-50 |
| C10-C16 alcohol ethoxylate with 2-10 m EO |
20-40 |
| castor oil ethoxylate with 15-100 m EO |
5-15 |
| saturated-unsaturated C12-C22 fatty acids monoesters with sorbitol |
1-5 |
| hexylene glycol |
1-10 |
[0029] Possible colouring agents and/or perfumes may be added to the present degreasing
composition, as well as possible further excipients or diluents commonly used in this
kind of compositions, for example in order to modify their organoleptic characteristics
and/or make the present composition more easily recognised on the market.
[0030] The leather obtained with the process of the invention is resistant, but also soft
and in general of highly satisfactory quality. Furthermore, the characteristics of
the starting pelts are not altered, even minimally, by this degreasing process, if
not for the removal of the fat layer. In addition, no trace of substances harmful
to people or to the environment is present in the leather degreased which, if subsequently
tanned with the various known techniques, may be used for the manufacture of any finished
product.
[0031] The present process has therefore proved to be an effective solution to the technical
problem highlighted above of not being able to get an efficient degreasing with non-toxic
or non bioaccumulative agents, but to get a satisfactory degreasing only with chemicals,
with a strong impact on the environment and on safety. The use of the present compositions
in the conditions of the present process allows instead to strongly reducing the use
of chemical products that are highly bioaccumulative and dangerous to work environments,
but still obtaining a finished leather product having the aesthetic and functional
characteristics of softness and strength required by the market.
[0032] More specifically, the analyses carried out on leather products degreased by using
the present process showed a residual amount of fat, which is less than or equal to
that present in the leather products treated with traditional organic solvents, while
maintaining a high quality of the finished leather.
[0033] The present process, besides for removing the layer of fat from the dermis of animal
skins used as starting product in leather manufacture, may be used for degreasing
any intermediate products in this type of manufacture, that needs a degreasing, for
instance in the so-called phase of soaking to facilitate the operations of washing;
in the re-tanning to ensure adequate removal of triglycerides on those pelts that
have high quantities of fat and to act as "detergent" of the surface of the pelts
themselves; in the fattening step to favour an uniform distribution of softeners provided
during the application process; in the recovery of leather products having problems
caused by a wrong greasing or other similar defects caused by too much fat on the
surface.
EXAMPLES
EXAMPLE 1
[0034] An example of composition according to the present invention has been prepared with
the following components:
| Components |
% by weight with respect to the total weight of the composition |
| glycerol triacetate |
25 |
| water |
32 |
| iso-C10 alcohol ethoxylate 3 mEO |
5 |
| iso-C10 alcohol ethoxylate 5 mEO |
25 |
| castor oil ethoxylate 25 mEO |
3 |
| castor oil ethoxylate 40 mEO |
3 |
| sorbitan monooleate |
2 |
| hexylene glycol |
5 |
[0035] The preparation of the composition was carried out in a reactor of suitable size
containing the glycerol triacetate, to which were added under slow stirring in the
following order: iso-C
10 alcohol ethoxylate 3 mEO, castor oil ethoxylate 25 mEO, iso-C
10 alcohol ethoxylate 5 mEO, castor oil ethoxylate 40 mEO, and finally sorbitan monooleate
and hexylene glycol. Each component was added only after complete dispersion of the
previous components. Finally, once the composition was homogeneous, water has been
added.
EXAMPLE 2
[0036] In a drum of suitable size containing skins of New Zealand sheep to be degreased,
water and the composition prepared as described in example 1 are added, in amount
of about 4.5% by weight with respect to the total weight of animal skins, at temperature
of approximately 30°C for about 1 hour.
[0037] At the end of this treatment the pelt is washed with water and sent to the subsequent
phases to finally obtain a Chrome-tanned semi-finished product and commonly indicated
as "Wet Blue".
EXAMPLE 3
[0038] The product obtained as described in Example 2 was compared with the same type of
leather, but degreased with commercial formulations based on mineral solvents and
non-ionic surfactants: the excellence of the product degreased with the process of
the invention was emphasized both in terms of greater efficiency of degreasing and
cleaning and in terms of better distribution of natural fats present in the leather
itself.
[0039] On this product analyses were performed, in particular to evaluate the amount of
fat residue remaining on the leather, and therefore to assess the efficiency of the
executed degreasing. More specifically, it is carried out the determination of substances
extractable with methylene chloride according to the method IUC/4 by taking different
samples of material in as many different points of the treated pelts. The result of
this analysis has showed that the residual fat was in amount of about 2.7-3% by weight
with respect to the weight of the leather itself, a value well below the average amount
of residual fat detectable for pelts degreased with the degreasers known and used
until today. The result is even more significant for the fact that it was obtained
starting from a pelt such as that of the New Zealand sheep, which has a high content
of natural fat, approximately equal to 25% by weight.
1. A process for degreasing pelts or of intermediate products in leather manufacture,
comprising the treatment of said pelts or of said intermediate products with a degreasing
agent selected from glycerol diacetate and derivatives thereof, glycerol triacetate,
and mixtures thereof, wherein said degreasing agent is used in aqueous dispersion
in combination with one or more co-solvents, surfactants and/or co-emulsifying agents.
2. The process according to claim 1, wherein said degreasing agent is glycerol triacetate.
3. The process according to claim 1, wherein said degreasing agent is used in amount
ranging between 0,1 and 5% by weight with respect to the total weight of the pelts
or of the intermediate products to be treated.
4. The process according to claim 3, wherein said degreasing agent is used in amount
ranging between 2 and 3% by weight with respect to the total weight of the pelts or
of the intermediate products to be treated.
5. A degreasing composition for treating pelts or intermediate products in leather manufacture,
which is an aqueous dispersion comprising a degreasing agent selected from glycerol
diacetate and derivatives thereof, glycerol triacetate, and mixtures thereof, in combination
with one or more co-solvents, surfactants and/or co-emulsifying agents.
6. The composition according to claim 5, comprising glycerol triacetate as degreasing
agent.
7. The composition according to claim 5, comprising:
| |
% by weight/total weight |
| degreasing agent of the invention |
20-80 |
| water |
10-60 |
| surfactants |
5-50 |
| co-emulsifying agents |
0.5-10 |
| co-solvents |
0.5-10 |
8. The composition according to claim 5 or 7, wherein said co-solvent is selected from
the group consisting of hexylene glycol, butyl glycol, di-butyl glycol, propylene
glycol, di-propylene glycol, n-propyl alcohol, i-propyl alcohol, n-butyl alcohol,
i-butyl alcohol, 1-methoxy-2-propanol, and mixtures thereof.
9. The composition according to claim 5 or 7, wherein said co-emulsifying agents are
selected from the group consisting of saturated or unsaturated C12-C22 fatty acids mono- or di-esters with sorbitol, saturated or unsaturated C12-C22 fatty acids mono- or di-esters with glycerol, C10-C16 alcohols, C12-C22 fatty amines, and mixtures thereof.
10. The composition according to claim 5 or 7, wherein said surfactants are selected from
the group consisting of polyethylene glycol 200-1200, linear alcohols C10-C16 ethoxylate with 2-10 m EO, iso C10-C16 alcohols ethoxylate with 2-10 m EO, linear C10-C16 alcohols sulphated salt with sodium or potassium, linear C10-C16 alcohols ethoxylate with 2-10 m EO sulphated salt with sodium or potassium, linear
C10-C16 alcohols phosphated sodium or potassium salt, linear C10-C16 alcohols ethoxylate with 2-10 m EO, phosphated sodium salt, C8-C16 alcohol sulphosuccinates sodium or potassium salt, saturated or unsaturated C12-C22 fatty acids ethoxylate with 2-10 m EO, saturated or unsaturated C12-C22 fatty acids esterified with sorbitol ethoxylate with 5-20 m EO, saturated or unsaturated
C12-C22 fatty acids esterified with glycerol ethoxylate with 5-20 m EO, castor oil ethoxylate
with 15-100 m EO, C12-C22 fatty amines ethoxylate with 3-30 EO m, amides from ethanolamines and C12-C22 fatty acids, amides from ethanolamines and C12-C22 fatty acids ethoxylate with 2-10 m EO, C12-C22 alkanes di-methyl quaternary ammonium salt CI-SO4, C12-C18 alkane acids sulphonated salt of sodium or potassium, benzene-sulphonic acids, C10-C16 alkyl derivatives salt of sodium or potassium, and mixtures thereof.
11. The composition according to claim 7, comprising:
| Components |
% by weight with respect to total weight of the composition |
| glycerol triacetate |
25 |
| water |
32 |
| iso-decyl alcohol (C10) ethoxylate 3 mEO |
5 |
| iso-decyl alcohol (C10) ethoxylate 5 mEO |
25 |
| castor oil ethoxylate 25 mEO |
3 |
| castor oil ethoxylate 40 mEO |
3 |
| sorbitan monooleate |
2 |
| hexylene glycol |
5 |
1. Verfahren zum Entfetten von Häuten oder Zwischenprodukten bei der Lederherstellung,
enthaltend die Behandlung der Häute oder der Zwischenprodukte mit einem Entfettungsmittel,
das ausgewählt ist aus Glyzerin-Diazetat und Derivaten davon, Glyzerin-Triazetat und
Mischungen davon, wobei das Entfettungsmittel in einer wässrigen Dispersion in Kombination
mit einem oder mehreren Co-Lösungsmittel(n), Oberflächenbehandlungsmittel(n) und/oder
Co-Emulgator(en) verwendet wird.
2. Verfahren nach Anspruch 1, wobei das Entfettungsmittel Glyzerin-Triazetat ist.
3. Verfahren nach Anspruch 1, wobei das Entfettungsmittel in einer Menge verwendet ist,
die im Bereich zwischen 0,1 und 5 Gewichts-% bezüglich des Gesamtgewichts der Häute
oder der Zwischenprodukte liegt, die behandelt werden sollen.
4. Verfahren nach Anspruch 3, wobei das Entfettungsmittel in einer Menge verwendet ist,
die im Bereich zwischen 2 und 3 Gewichts-% bezüglich des Gesamtgewichts der Häute
oder der Zwischenprodukte liegt, die behandelt werden sollen.
5. Zusammensetzung zum Entfetten zum Behandeln von Häuten oder Zwischenprodukten bei
der Lederherstellung, die eine wässrige Dispersion ist, die ein Entfettungsmittel
enthält, das ausgewählt ist aus Glyzerin-Diazetat und Derivaten davon, Glyzerin-Triazetat
und Mischungen davon, wobei das Entfettungsmittel in einer wässrigen Dispersion in
Kombination mit einem oder mehreren Co-Lösungsmittel(n), Oberflächenbehandlungsmittel(n)
und/oder Co-Emulgator(en).
6. Zusammensetzung nach Anspruch 5, enthaltend Glyzerin-Triazetat als Entfettungsmittel.
7. Zusammensetzung nach Anspruch 5, enthaltend:
| |
Gewichts-%/Gesamtgewicht |
| Entfettungsmittel der Erfindung |
20 - 80 |
| Wasser |
10 - 60 |
| Oberflächenbehandlungsmittel |
5 - 50 |
| Co-Emulgatoren |
0,5 - 10 |
| Co-Lösungsmittel |
0,5 - 10 |
8. Zusammensetzung nach Anspruch 5 oder 7, wobei das Co-Lösungsmittel ausgewählt ist
aus der Gruppe, die besteht aus Hexylen-Glycol, Butyl-Glycol, di-Butyl-Glycol, Propylen-Glycol,
di-Propylen-Glycol, n-Propylalkohol, i-Propylalkohol, n-Butylalkohol, i-Butylalkohol,
1-Methoxi-2-Propanol und Mischungen davon.
9. Zusammensetzung nach Anspruch 5 oder 7, wobei die Co-Emulgatoren ausgewählt sind aus
der Gruppe, die besteht aus gesättigten oder ungesättigten C12-C22-Fettsäure-mono- oder -di-Estern mit Sorbitol, gesättigten oder ungesättigten C12-C22-Fettsäure-mono- oder -di-Estern mit Glyzerin, C10-C16-Alkoholen, fettigen C12-C22-Aminen, und Mischungen davon.
10. Zusammensetzung nach Anspruch 5 oder 7, wobei die Co-Emulgatoren ausgewählt sind aus
der Gruppe, die besteht aus Polyethylenglykol 200 - 1200, Linear-Alkohol-C10-C16-Ethoxilaten mit 2 - 10 m EO, iso-C10-C16-Alkohol-Ethoxilaten mit 2 - 10 m EO, sulfatiertes Linear-C10-C16-Alkohol-Salz mit Natrium oder Kalium, sulfatiertes C10-C16-Alkohol-Ethoxilat-Salz mit 2 - 10 m EO mit Natrium oder Kalium, mit Linear-C10-C16-Alkoholen phosphatiertes Natrium- oder Kaliumsalz, mit C10-C16-Alkohol-Ethoxilaten mit 2 - 10 m EO phosphatiertes Natriumsalz, C8-C16-Alkohol-Sulfosuccinat-Natrium- oder Kaliumsalz, gesättigten oder ungesättigten C12-C22-Fettsäure-Ethoxilaten mit 2 - 10 m EO, gesättigten oder ungesättigten C12-C22-Fettsäuren, die mit Sorbitol-Ethoxilat mit 5 - 20 m EO verestert sind, gesättigten
oder ungesättigten C12-C22-Fettsäuren, die mit Glyzerin-Ethoxilat mit 5 - 20 m EO verestert sind, Castoröl-Ethoxilat
mit 15 - 100 m EO, C12-C22-Fettamin-Ethoxilaten mit 3 - 30 EO m, Amiden von Ethanolaminen und C12-C22-Fettsäuren, Amiden von Ethanolaminen und C12-C22-Fettsäure-Ethoxilaten mit 2 - 10 m EO, C12-C22-Alkan-di-Methyl-quartär-Ammoniaksalz Cl-SO4, mit C12-C18-Alkansäuren sulfatiertes Salz von Natrium oder Kalium, Benzen-Sulfon-Säuren, C10-C16-Alkyl-Derivat-Salze von Natrium oder Kalium und Mischungen davon.
11. Zusammensetzung nach Anspruch 7, enthaltend:
| Komponenten |
Gewichts-% bzgl. dem Gesamtgewicht der Zusammensetzung |
| Glyzerin-Triazetat |
25 |
| Wasser |
32 |
| iso-Decylalkohol (C10) Ethoxilat 3 mEO |
5 |
| iso-Decylalkohol (C10) Ethoxilat 5 mEO |
25 |
| Castoröl-Ethoxilat 25 mEO |
3 |
| Castoröl-Ethoxilat 40 mEO |
3 |
| Sorbitan-mono-Oleate |
2 |
| Hexylenglykol |
5 |
1. Procédé de dégraissage de peaux ou de produits intermédiaires dans la fabrication
du cuir, comprenant le traitement des dites peaux ou des dits produits intermédiaires
avec un agent dégraissant choisi parmi le diacétate de glycérol et ses dérivés, le
triacétate de glycérol, et leurs mélanges, dans lequel ledit agent dégraissant est
utilisé en dispersion dans une solution aqueuse en combinaison avec un ou plusieurs
co-solvants, tensioactifs et/ou agents co-émulsifiants.
2. Le procédé selon la revendication 1, dans lequel ledit agent dégraissant est le triacétate
de glycérol.
3. Le procédé selon la revendication 1, dans lequel la quantité d'agent dégraissant utilisée
est comprise entre 0,1 et 5% en poids par rapport au poids total des peaux ou des
produits intermédiaires à traiter.
4. Le procédé selon la revendication 3, dans lequel la quantité d'agent dégraissant utilisée
est comprise entre 2 et 3% en poids par rapport au poids total des peaux ou des produits
intermédiaires à traiter.
5. Une composition dégraissante pour le traitement de peaux ou de produits intermédiaires
dans la fabrication du cuir, qui est une dispersion aqueuse comprenant un agent dégraissant
choisi parmi le diacétate de glycérol et ses dérivés, le triacétate de glycérol, et
leurs mélanges, en combinaison avec un ou plusieurs co-solvants, tensioactifs et/ou
agents co-émulsifiants.
6. La composition selon la revendication 5, comprenant du triacétate de glycérol en tant
qu'agent dégraissant.
7. La composition selon la revendication 5, comprenant:
| |
% en poids / poids total |
| agent dégraissant de l'invention |
20-80 |
| eau |
10-60 |
| tensioactifs |
5-50 |
| agents co-émulsifiants |
0,5-10 |
| co-solvants |
0,5-10 |
8. La composition selon l'une des revendications 5 et 7, dans laquelle ledit co-solvant
est choisi dans le groupe suivant : l'hexylène glycol, le butyle glycol, le di-butyle
glycol, le propylène glycol, le di-propylène-glycol, l'alcool n-propylique, l'alcool
i-propylique, l'alcool n-butylique, l'alcool i-butylique, le 1-méthoxy-2-propanol,
et leurs mélanges.
9. La composition selon l'une des revendications 5 et 7, dans laquelle lesdits agents
co-émulsifiants sont choisis dans le groupe suivant : les mono- ou di-esters d'acides
gras C12-C22 saturés ou insaturés avec du sorbitol, les mono- ou di-esters d'acides gras C12-C22 saturés ou insaturés avec du glycérol, les alcools C10-C16, les amines grasses C12-C22, et leurs mélanges.
10. La composition selon l'une des revendications 5 et 7, dans laquelle lesdits tensioactifs
sont choisis dans le groupe suivant : le polyéthylène glycol 200-1200, les alcools
linéaires C10-C16 éthoxylés avec 2-10 m EO, les iso alcools C10-C16 éthoxylés avec 2-10 m EO, les alcools linéaires C10-C16 sulfatés au sel de sodium ou de potassium, les alcools linéaires C10-C16 éthoxylés avec 2-10 m EO sulfatés au sel de sodium ou de potassium, les alcools linéaires
C10-C16 phosphatés au sel de sodium ou de potassium, les alcools linéaires C10-C16 éthoxylés avec 2-10 m EO phosphatés au sel de sodium, les sulphosuccinates d'alcools
C8-C16, sel de sodium ou de potassium, les acides gras C12-C22 saturés ou insaturés éthoxylés avec 2-10 m EO, les acides gras C12-C22 saturés ou insaturés estérifiés avec du sorbitol éthoxylés avec 5-20 m EO, les acides
gras C12-C22 saturés ou insaturés estérifiés avec du glycérol éthoxylés avec 5-20 m EO, l'huile
de ricin éthoxylée avec 15-100 m EO, les amines grasses C12-C22 éthoxylées avec 3-30 m EO, les amides d'éthanolamines et d'acides gras C12-C22, les amides d'éthanolamines et d'acides gras C12-C22 éthoxylés avec 2-10 m EO, les alcanes C12-C22 di-méthyl sel d'ammonium quaternaire Cl-SO4, les acides d'alcanes C12-C18 sulphonatés au sel de sodium ou de potassium, les acides benzène-sulfoniques, les
dérivés alkyl C10-C16 sel de sodium ou de potassium, et leurs mélanges.
11. La composition selon la revendication 7, comprenant:
| Composants |
% en poids par rapport au poids total de la composition |
| triacétate de glycérol |
25 |
| eau |
32 |
| alcool isodécylique (C10) éthoxylé 3 mEO |
5 |
| alcool isodécylique (C10) éthoxylé 5 mEO |
25 |
| huile de ricin éthoxylée 25 mEO |
3 |
| huile de ricin éthoxylée 40 mEO |
3 |
| monooléate de sorbitan |
2 |
| hexylène glycol |
5 |
REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only.
It does not form part of the European patent document. Even though great care has
been taken in compiling the references, errors or omissions cannot be excluded and
the EPO disclaims all liability in this regard.
Patent documents cited in the description