BACKGROUND OF THE INVENTION
Field Of The Invention:
[0001] This invention relates to aqueous liquid detergent compositions containing alkyl
benzene sulfonate and added detergent boosting levels of magnesium ions.
Description Of The Prior Art:
[0002] Light-duty liquid detergent compositions, such as those suitable for use in washing
dishes, are well known. Performance of such compositions is a measurement of both
foam mileage, i.e. number of dishes washed, and grease cutting ability. The liquid
dishwashing detergent compositions presently on the market are designed to remove
oily/greasy soils from glasses, dishes, and other tableware and kitchen utensils while
maintaining an acceptable layer of suds.
[0003] Liquid detergent formulations containing magnesium salts and magnesium surfactants
show enhanced performance, as is disclosed in U.S. Patents 2,908,651 and 2,437,253.
Certain combinations of active ingredients can also provide a range of enhanced detergent
properties. An enhanced performance liquid detergent composition, disclosed in U.S.
Patent 4,435,317, contains (a) a C
10-C
16 alkyl sulfate, (b) a C
10-C
16 alkyl ethoxy sulfate and (c) a linear C
10-C
16 alkyl benzene sulfonate in a ratio of the total weight of (a) + (b) to the weight
of (c) of less than or equal to 33:1, and containing magnesium in a molar amount corresponding
to 0.20x-0.70x where x is the number of moles of alkyl sulfate. The amount of magnesium
salts that can be added to the compositions disclosed in U.S. Patent 4,435,317 is
limited because the salts raise temperature at which inorganic salt crystals form
in the compositions upon cooling.
[0004] FR-A-2,588,013 describes a composition (comprising a C
9-15 alkylbenzene sulfonate of monoisopropanolamine, monoethanolamine, or of potassium;
magnesium sulfate; sodium alkylether sulfate; ethanol and the balance; water. This
composition is suitable to form aqueous viscous dilutions upon dilution, so that not
too much liquid detergent is used in dishwashing.
[0005] JP-A-54-24906 shows a composition comprising 10-30% by weight of a mixture of magnesium
salts of linear alkylbenzene sulfonates and magnesium salts of alkylpolyoxyethylene
ether sulfuric acid esters; the ratio of both types of magnesium salts varying between
4:1 and 1:1; and to 100 weight parts of a solution containing 5-25 weight parts polyethylene
glycol having a polymerisation degree of 4-50. This composition aims to avoid the
formation of films and water spots on tableware.
[0006] Enhanced performance in relation to grease cutting ability and foam mileage are also
achieved by increasing the concentration of surfactant active ingredients in the liquid
detergent formulation. There are, however, several problems associated with the preparation
of liquid detergent compositions containing high proportions of active detergent materials
in order satisfy the requirements of clarity, viscosity and stability of the product.
[0007] Generally, it is necessary to add a fairly high proportion of hydrotrope to those
detergent compositions that have a high concentration of active detergent materials.
Hydrotropes are fairly expensive and are generally inactive materials and thus do
not contribute to detergency but have the effect of rendering the active ingredients
water soluble and the composition homogeneous at those temperatures normally encountered
in transport and storage. Hydrotropes generally lower the "cloud point" of liquid
detergent compositions, thus maintaining a clear liquid composition at temperatures
at which a detergent composition lacking hydrotrope would become cloudy and unattractive
in appearance. U.S. Patent 4,235,758 discloses that the use of a magnesium alkylbenzene
sulfonate derived from a linear C
10-C
13 alkylbenzene of average molecular weight of 220-250 significantly reduces the requirement
for hydrotrope at any level of active detergent material.
[0008] The present invention provides compositions comprised of certain specific detergent
active ingredients, in unique combinations and proportions, which are unexpectedly
capable of superior performance to other liquid detergents in relation to both foam
mileage and grease cutting.
[0009] It is, accordingly, an object of this invention to provide physically stable liquid
detergent compositions that offer superior grease cutting and foam mileage performance.
[0010] It is another object of this invention to provide detergent compositions containing
magnesium, alkylbenzene sulfonate and added detergency boosting levels of magnesium
ions, which are especially efficient in removing greasy greasy soils, and which have
a reduced requirement for hydrotropes to maintain a suitable cloud point.
[0011] Still another object of this invention is to provide a concentrated detergent base
composition containing detergency boosting levels of magnesium ions and alkyl benzene
sulfonate which may be stored as a concentrated liquid base composition and which
may be manufactured using conventional low shear liquid mixing equipment.
SUMMARY OF THE INVENTION
[0012] According to the present invention, there is provided an aqueous liquid detergent
composition especially suitable for use in dishwashing, and containing
(A) from 20 to 70%, preferably 30 to 55%, of a surfactant mixture of (a) from 15 to
35% by weight of the magnesium salt of a C10-C18 alkylbenzene sulfonic acid, (b) from 1 to 5% by weight of a magnesium salt, in an
amount such that the molar ratio of total magnesium ion to alkylbenzene sulfonate
ranges from 0.65:1.0 to 1.0:1.0, (c) from 1 to 20% by weight of a water-soluble C10-C16 primary alkyl ethoxy sulfate containing an average of from 1 to 6 ethylene oxide
groups per alkyl group in the alkyl ether sulfate and, (d) from 0 to 20% by weight
of a primary, secondary or tertiary amine or alkali metal salt of C10-C16 alkyl sulfate; and
(B) from 0.5 to 8% by weight of a suds promoting agent selected from group consisting
of C10-C18 ethoxylated and non-ethoxylated mono- or di- C1-C5 alkanolamides and C12-C14 alkyl amides condensed with with up to 15 moles ethylene oxide per mole of amide,
and balance, primarily water.
[0013] The composition also includes :
(C) from 0 to 10% by weight of a low irritant organic solvent; and
(D) from 0 to 10% by weight of a hydrotrope, and further
(E) other adjuvants, such as chelating agents, coloring agents, dyes, perfumes, bactericides,
fungicides, preservatives, sunscreening agents, pH modifiers or buffering agents,
opacifiers, antioxidants, proteins, and the like.
[0014] The present invention also provides a pourable liquid detergent base composition
of concentrated light duty liquid detergents containing alkylbenzene sulfonic acid
and detergency boosting levels of magnesium ions and which can be stored at ambient
temperature for future use without gelling.
DETAILED DESCRIPTION OF THE INVENTION
[0015] Detergent compositions in accordance with the present invention comprise a mixture
of two or three essential anionic surfactants of defined constitution and proportions
and have a specified molar ratio of magnesium ion to alkylbenzene sulfonate ranging
from 0.65:1.0 to 1.0:1.0.
[0016] The first essential surfactant ingredient is a water-soluble salt of alkylbenzene
sulfonic acid, which may be linear or branched. The alkyl group preferably contains
from 10 to 18 carbon atoms, most preferably from 11 to 13, especially 12 carbon atoms,
preferably in a linear chain configuration. The alkyl benzene sulfonate may be present
as an alkali metal, amine, ammonium, or alkaline earth metal salt, preferably the
magnesium salt. Thus, the most preferred alkylbenzene sulfonate is magnesium salt
of linear dodecylbenzene sulfonate.
[0017] The acid form of alkylbenzene sulfonic acid can be converted to the magnesium salt
form either prior to admixture with the other detersive ingredients or thereafter.
The conversion may be accomplished either by direct neutralization with magnesium
oxide or hydroxide or by ion exchange between, for example, an alkali metal salt or
the ammonium salt of alkylbenzene sulfonate and a water-soluble alkaline earth metal
salt. Preferably, a source of magnesium ions is added to the detergent mixture to
form the desired salt of alkylbenzene sulfonate. Magnesium chlorides, magnesium sulfates,
magnesium acetates or magnesium hydroxides are examples of magnesium sources. The
preferred magnesium sources are magnesium oxides or hydroxides and sulfates.
[0018] The alkylbenzene sulfonate component is present at a level of from 15 to 35% by weight
of the composition, preferably in the range from 15 to 22%, most preferably in the
range from 19 to 21% by weight.
[0019] The point of attachment of the alkyl chain to the benzene nucleus, referred to as
the phenyl isomer distribution, is not critical but, preferably, less than 20% of
the alkyl benzene of this invention comprises the 2-phenyl isomer.
[0020] A second essential surfactant component of the present composition is a primary alkyl
ethoxy sulfate derived from the condensation product of a C
10-C
16 alcohol with an average of from 1 to 6 ethylene oxide groups, preferably 2 to 4,
especially 3 ethylene oxide groups per mole of alcohol. The C
10-C
16 alcohols may be derived, for example, from natural fats or Ziegler olefin build-up
or Oxo synthesis. It is preferable to use alkyl ethoxy sulfates and alkyl sulfates
of the same carbon chain length, preferably C
12-C
13. The level of alkyl ethoxy sulfate in the present composition to achieve the desired
foam and detersive properties is 1-30% by weight, preferably the range from 10-20%
by weight, based on the total composition.
[0021] The surfactant system of the detergent of the present invention may optionally also
include an amount ranging from 0-20% of the total composition, preferably 10-15% by
weight, of an alkali metal or ammonium or amine salt of a linear or branched C
10-C
18 alkyl sulfate anionic surfactant. The cationic counterion of the alkyl sulfate may
be taken from the group consisting of alkali metals, ammonia and amines, e.g., triethylammonium,
triethanolamine (TEA), diethanolamine or monoethanolamine, etc. The alkali metal may
be, for example, sodium or potassium, preferably sodium.
[0022] The composition of the present invention contains from 0.027 to 0.064 moles of total
magnesium ion. Generally, 0.023 to 0.053 moles of magnesium ion are provided through
the incorporation of the magnesium alkylbenzene sulfonate. Additional magnesium is
added to the composition in the form of a water-soluble compound, most preferably
a salt, such as, for example, magnesium sulfate or magnesium chloride. The preferred
magnesium source is magnesium sulfate heptahydrate, added to the composition at from
1 or 2 to 5% weight, preferably from 2.5 to to 3.5% by weight, corresponding to 0.01
to 0.014 moles of added magnesium. The total magnesium ion to alkylbenzene sulfonate
in to the composition controlled to correspond to a molar ratio of from 0.65:1.0 to
1.0:1.0, preferably from 0.65:1.0 to 0.8:1.0.
[0023] The additional magnesium ions added in salt form provide improved grease cutting
performance and also lower the cloud point of the formula better than the more expensive
hydrotropes. The additional magnesium salt also provides better phase stability to
the composition. Using magnesium to boost detergency is known in the art, however,
when used in a molar ratio of total magnesium ion to alkylbenzene sulfonate in a range
of 0.65:1.0 to 0.8:1.0, the excess magnesium salt not only enhances foam mileage but
also increases fluidity, allowing for a decrease in hydrotrope and alcohol levels,
thus lowering the concentration of inactive ingredients that do not boost detergency
of the composition. This decrease in the level of inactive ingredients leaves room
in the composition for an even higher level of detersive active ingredients.
[0024] The level of detersive active ingredients in the compositions of this invention is
in the range from 20-70% by weight, preferably from 30 to 55%. This increased level
of active ingredients results in enhanced foam mileage, thus providing a superior
light duty liquid detergent. The usual problems of increased viscosity, decreased
stability and product clouding is avoided by using an increased level of magnesium
ions in a molar ratio of magnesium ions to alkylbenzene sulfonate in the range of
0.65:1.0 to 1.0:1.0, preferably from to 0.8:1.0 and none or only a low concentration
of hydrotrope. The additional magnesium ions in the compositions of this invention
also boosts detergency of the surfactant system.
[0025] In general, the consumer views sudsing ability as a measure of cleaning ability.
A suds promoting agent, such as, for example, a mono- or di-alkanolamide, may, therefore,
be added to the present composition at a level of from 0.5 to 8% by weight, preferably
1 to 6% and, more preferably 1 to 5% by weight. The preferred suds promoting agent
is a mixture of lauric and myristic monoethanolamides. Alternatively, the alkyl group
of the amide may be derived from coconut or palm kernel oil. Suitable alkanolamides
include either mono or dialkanolamides having a carbon chain distribution of C
1-C
5, preferably C
1-C
3, especially mono- or di-ethanolamide. The alkanolamide may be ethoxylated or may
be a mixture of non-ethoxylated alkanolamide and ethoxylated alkanolamide in order
to increase the solubility of the alkanolamide in the composition.
[0026] Although not essential, clarity and homogeneity of the invention compositions may
be improved by inclusion of, for example, organic solvents or hydrotropes and these
and other non-essential additives may be included in the compositions in amounts that
do not adversely effect the desired properties. Organic solvents may be included for
their thinning effect, ability to lower the clear point and for solubilization. Organic
solvents, such as, for example isopropanol, n-propanol, ethanol, propylene glycol
or mixtures thereof may be included. When used, the solvent level is usually less
than or equal to 10% by weight, preferably less than 8%, more preferably in the range
of 5 to 8% by weight. Ethanol is the preferred solvent. It is also customary to include
a hydrotropic substance in the composition such as urea, sodium xylene sulfonate,
potassium xylene sulfonate, sodium cumene sulfonate, and ammonium xylene sulfonate,
in order to assist in solubilizing various components of the composition and maintaining
a low clear point. Mixtures of two or more hydrotropes may also be used. The hydrotrope,
when used, is generally present in amounts below 8%, preferably below 6%, such as
1 to 6%, especially 2 to 5% by weight.
[0027] Various other optional ingredients may also be included in the composition for their
desirable aesthetic or functional characteristics. Such ingredients include opacifying
agents to make the composition appear pearly, such as behenic acid or ethylene glycol
distearate; perfumes; heavy metal chelating agents such as EDTA; bactericides such
as trichlorocarbanilide, tetrachlorosalicylanilide, hexachlorophene, or chlorobromosalicylanilide;
antioxidants; thickeners such as quar gum, polyacrylates, polyacrylamide or Irish
moss; dyes, water dispersible pigments; preservatives, such as formaldehyde or hydrogen
peroxide; pH modifiers. When used, these optional adjuvants may be present in total
amounts up to 10% by weight, preferably up to 3% by weight, based on the total composition.
The pH of the compositions may be within the range from 6 to 8, preferably from 6.5
to 7.5, and may be adjusted if necessary by addition of suitable acids or bases, such
as HCl, NaOH. Excellent greasy soil removal is attained when an effective amount of
the instant compositions is dissolved in an aqueous dishwashing solution. Typical
use concentrations are usually at least 0.05% by weight in water. Of course, this
can be adjusted, depending on the soil level and type and desires of the user.
[0028] Currently, great commercial interest is shown in the more concentrated liquid detergent
compositions. The advantages of highly concentrated liquids are evident, i.e., reduced
transport and packaging costs and smaller quantities of product needed by the consumer.
The major disadvantage in developing compositions with high active ingredient levels
is the difficulty in making the formula due to the increased "solids" concentrations.
The word "solids" is used herein to describe all those ingredients of the composition
other than solvents, such as water or alcohol.
[0029] The compositions of the present invention employ high levels of anionic surfactants,
which are, in general, less water-soluble than nonionic surfactants. The decreased
solubility of the anionic surfactants coupled with the increased concentration of
active ingredients often results in thick pastes with very high viscosities, thereby
necessitating the use of heavy duty or high shear mixing equipment. Accordingly, in
a preferred mode for carrying out the present invention a non-conventional process
is used for the manufacture of the compositions of the present invention.
[0030] According to this preferred method, a detergent base comprising magnesium alkylbenzene
sulfonate and amide foam booster is preferably manufactured by a process wherein alkanolamide,
in the specified amount, is added to an aqueous slurry containing magnesium oxide
or hydroxide, hydrotropes, and any inorganic salts or organic solvents of the liquid
detergent compositions of this invention, in the specified amounts, and the alkylbenzene
sulfonic acid, is added after the alkanolamide has been dissolved in the slurry. This
method has the advantage of utilizing conventional liquids mixing equipment, while
resulting in a composition with enhanced fluidity during neutralization and upon cooling.
[0031] The following representative non-limiting examples will illustrate the invention
although applicants do not intend to be bound thereby.
Example 1.
[0032] The following compositions are prepared with conventional low shear mixing equipment
by mixing the materials in the proportions as listed.
| |
Run No. |
| |
1 |
2 |
| |
(Wt.%) |
| Water, deionized |
11.66 |
11.28 |
| TEA lauryl sulfate (40% solution) |
28.75 |
28.75 |
| Sodium alkyl ethoxy sulfate, 3E0 |
18.02(66.6%) |
17.7(67.8%) |
| Sodium xylene sulfonate (40% sol.) |
- |
5.23 |
| Sodium cumene sulfonate (93%) |
2.9 |
1.0 |
| Magnesium oxide |
1.16 |
1.16 |
| MgSO4·7H2O |
1.0 |
3.0 |
| Na2SO4 |
1.5 |
0.5 |
| Lauric/myristic monoethanolamide(prill) |
- |
3.49 |
| Lauric/myristic monoethanolamide/sodium xylene sulfonate 5:3 blend |
8.72 |
- |
| Ethanol |
5.5 |
7.5 |
| Dodecylbenzene sulfonic acid |
18.75 |
18.87 |
| Minor ingredients (dye, perfume, etc.) |
2.04 |
1.52 |
| |

|

|
| Molar ratio of Mg+2: Alkylbenzene sulfonate |
0.54:1.0 |
0.67:1.0 |
| Cloud point |
6°C |
0°C |
[0033] The composition of Run No. 2 is a physically stable liquid upon accelerated aging
at elevated temperature. The composition of Run No. 1, while having a higher hydrotrope
level, was found to exhibit phase separation on aging. Each of the compositions of
Runs 1 and 2 are evaluated by the following performance criteria:
(1) Grease Removal Test
[0034] This test is used to measure grease removal of the composition at a concentration
of 1% liquid detergent at 50 ppm water hardness, at 27°C (80°F), with 600 dipping
cycles at 60 rpm. For this test, 0.5 grams of lard at room temperature is evenly applied
to a frosted glass microscope slide using a serrated knife blade. The results are
calculated as milligrams of lard removed.
[0035] A modified version of the Grease Removal test is used to measure grease removal of
a 0.05% solution of liquid detergent at 50 ppm water hardness and 42°C (108°F), with
600 dipping cycles at 60 rpm. For this test, 0.1 ± 0.02 grams of lard is applied to
plastic test tubes by dipping the pre-weighed tubes in melted lard and blotting off
any excess grease before it solidifies. The tubes are then re-weighed and used the
same day they are prepared.
[0036] Detergent compositions to be tested are prepared, warmed to the appropriate temperature
and poured into 250 ml beakers. The desired temperature of the solution is maintained
by a circulating water bath. The test composition is agitated with a stirring rod
until a layer of foam covers the top of each. The beakers and soiled tubes are placed
in the dipping apparatus which is then run at 600 cycles at 60 rpm. Upon completion
of the test cycle, the tubes are removed, rinsed in deionized water at 25°C (77°F)
air dried overnight and weighed. The soil removal performance (percent cleaned) is
then calculated by the following formula:

where A = the weight of the tube, B = the weight of the tube plus soil, C = the
weight of the tube after washing.
[0037] A comparison of the average amount of greasy soil removed by the composition of Run
No. 2 with a best selling light duty dishwashing composition (Control 2) as determined
by the Grease Removal test at 0.05% detergent concentration, 50 ppm water hardness,
42°C (108°F), 600 dipping cycles at 60 rpm is shown in Table 1.
(B) Hand Dish Washing Test
[0038] Six liters of a diluted (0.1% or 0.075%) test solution prepared using 50 ppm water
at 120°F is delivered to a dish pan from a separatory funnel suspended above the pan
to generate a layer of foam. Plates soiled with 5.4 grams lard are washed to a foam
end point. This test measures the total number of plates that can be washed with the
detergent composition until the foam completely disappears.
(C) Dynamic Foam Stability Test:
[0039] This test is used to determine the dynamic foam stability of a liquid detergent composition
at 50 ppm water hardness at 45°C (113°F).
[0040] A diluted (0.05 or 0.04%) test solution is titrated with constant delivery of mixed
soil to a foam end point under constant agitation. The test measures the amount of
mixed soil required to deplete the surfactants of the composition.
(D) Cylinder Foam Test:
[0041] This test is used to determine the sudsing ability of a liquid detergent composition
at 50 ppm water hardness at 45°C (113°F).
[0042] 100 mls of a 0.1% LOL test solution is placed in a 500 ml graduated cylinder. The
cylinder is inverted 20 times and the amount of foam is measured. Soil (0.01 grams)
is added to the solution and the cylinder is again inverted 20 times. The decrease
in foam level is then noted.
[0043] The results of the testing for the compositions of Run Nos. 1 and 2 and the results
of two different best selling commercial light duty dishwasher compositions are shown
in Table 2.
TABLE 1
| Average Soil Removal % |
| |
42°C (108°F) |
| Run 2 |
50.9 |
| Control 2 |
22.1 |
[0044] The results of this test indicate that the composition of Run No. 2 removes twice
as much greasy soil at 42°C (108°F) than does a leading commercial brand of hand dishwashing
detergent containing similar detersive active ingredients but which has a molar ratio
of magnesium ion to alkylbenzene sulfonate of 0.31:1.0.
TABLE 2
| |
Performance Tests-Set I |
Performance Tests-Set II |
| Test Method |
Run. 1 |
Control 1 |
Ratio |
Run 2 |
Control 2 |
Ratio |
| |
| Hand Dish (1) |
34.5 |
28.5 |
1.21 |
--- |
---- |
--- |
| |
| 0.1% LDL |
|
|
|
|
|
|
| 5.4g lard |
|
|
|
|
|
|
| 120 F |
|
|
|
|
|
|
| |
| Hand Dish (1) |
--- |
---- |
--- |
35.7 |
33.4 |
1.07 |
| 0.075% LDL |
|
|
|
|
|
|
| 5.4g lard |
|
|
|
|
|
|
| 120 F |
|
|
|
|
|
|
| |
| Grease Removal (2) |
107 |
40 |
2.68 |
220 |
190 |
1.16 |
| 1% LDL |
|
|
|
|
|
|
| 600 cycles |
|
|
|
|
|
|
| 60 rpm |
|
|
|
|
|
|
| lard soil |
|
|
|
|
|
|
| 80F |
|
|
|
|
|
|
| |
| Dynamic Foam |
|
|
|
|
|
|
| Stability Test (3) |
1.21 |
1.09 |
1.11 |
1.37 |
1.28 |
1.07 |
| 113 F |
|
|
|
|
|
|
| |
| Cylinder Foam (4) |
375/ |
205/ |
1.83/ |
365/ |
285/ |
1.28/ |
| 0.1% LDL |
342 |
165 |
2.07 |
335 |
265 |
1.26 |
| 20 cycles |
|
|
|
|
|
|
| 30 rpm |
|
|
|
|
|
|
| 100 F |
|
|
|
|
|
|
| (0.01 mixed food soil) |
|
|
|
|
|
|
| All tests use 50 ppm hardness water. |
| (1) Hand dish results are in plate count to foam end point. |
| (2) Grease Removal results are milligrams of lard removed. |
| (3) Dynamic Foam Stability results are foam performance ratios versus a standard liquid
detergent composition containing 34% surfactant ingredients. |
| (4) Cylinder test results are cc's of foam (no soil/with soil). |
- Control 1:
- Leading commercial brand of hand dishwashing composition containing 50% active ingredients
including 17% linear alkylbenzene sulfonate, 23% alkyl ethoxy sulfate, 10% fatty acid
monoethanolamide and a total magnesium content of 0.70% . This composition has a molar
ratio of magnesium to alkylbenzene sulfonate of 0.58:1.0.
- Control 2:
- A second leading commercial brand of hand dishwashing composition containing 56% active
ingredients including 24% linear alkyl benzene sulfonate, 22% alkyl ethoxy sulfate·3EO,
10% ethoxylated fatty acid monoethanolamide and also containing 0.5% magnesium, corresponding
to a molar ratio of magnesium to alkylbenzene sulfonate of 0.31:1.0.
Example 2.
[0045] A stable pourable liquid detergent composition is prepared by mixing the following
ingredients using a conventional low shear liquids mixing apparatus. The proportion
of each ingredient is as follows:
| |
Run No. |
| |
Wt. % |
| |
1 |
2 |
| Water, deionized |
22.1 |
17.6 |
| TEA lauryl sulfate |
- |
12.0 |
| Sodium alkyl ethoxy sulfate·3E0 |
14.0 |
15.2 |
| Sodium xylene sulfonate (40% sol) |
12.0 |
13.1 |
| Sodium cumene sulfonate (45% sol.) |
4.7 |
5.2 |
| Magnesium oxide |
1.8 |
1.1 |
| MgSO4·7H2O |
4.8 |
5.5 |
| Na2SO4 |
- |
0.5 |
| Lauric/myristic monoethanolamide (prill) |
8.0 |
8.0 |
| Propylene glycol |
2.3 |
2.5 |
| Dodecylbenzene sulfonic acid |
30.3 |
19.3 |
| Total |

|

|
| Consistency at 25°C |
Physically stable liquid |
Physically stable liquid |
1. A liquid dishwashing detergent composition providing stable foaming characteristics
and which is especially effective in removing greasy soils, said composition comprising:
(A) from 20 to 70% by weight of a surfactant system comprising
(a) from 15 to 35% by weight of the magnesium salt of a C10-C18 alkylbenzene sulfonic acid anionic surfactant;
(b) from 1 to 5% by weight of a water soluble magnesium salt, in an amount such that
the molar ratio of total magnesium ion to alkylbenzene sulfonate ranges from 0.65:1.0
to 1.0:1.0,
(c) from 1 to 20% by weight of a water-soluble C10-C16 primary alkyl ethoxy sulfate containing an average of from 1 to 6 ethylene oxide
groups per alkyl group in the alkyl ether sulfate, and
(d) from 0 to 20% by weight of a primary, secondary or tertiary amine or alkali metal
salt of C10-C18 alkyl sulfate; and
(B) from 0.5 to 8% by weight of a suds promoting agent selected from the group consisting
of C10-C18 ethoxylated and non-ethoxylated mono- or di- C1-C5 alkanolamides and C12-C14 alkyl amides condensed with up to 15 moles ethylene oxide per mole of amide;
(C) from 0 to 10% by weight of a low irritant organic solvent;
(D) from 0 to 10% by weight hydrotrope; and
(E) from 0 to 10% by weight of one or more optional additive chosen from chelating
agents, coloring agents, dyes, perfumes, bactericides, fungicides, preservatives,
sunscreening agents, pH modifiers, pH buffering agents, opacifiers, antioxidants,
proteins and
(F) the balance, water.
2. The composition of Claim 1 that comprises
(A) from 30 to 55%;
(B) from 1 to 6%;
(C) from 5 to 8%;
(D) from 0 to 6%;
(E) from 0 to 3%; and
(F) the balance, water.
3. The composition of Claim 1 wherein the surfactant system (A) comprises (a) from 19
to 21% by weight of a magnesium salt of a C10-C18 alkylbenzene sulfonic acid; (b) an amount of a water-soluble magnesium salt such
that the molar ratio of magnesium ion to alkylbenzene sulfonate is 0.65:1.0 to 0.8:1.0;
(c) from 10 to 13% by weight of a C10-C16 alkyl ethoxy sulfate with 3 groups of ethylene oxide per mole of alcohol; and (d)
from 10 to 15% by weight of a C10-C16 alkyl sulfate.
4. A physically stable liquid dishwashing detergent base composition comprising:
(A) from 30 to 70% by weight detersive active ingredients comprising
(a) from 10 to 50% by weight of the magnesium salt of a C10-C18 alkylbenzene sulfonic acid;
(b) from 1 to 5% by weight of a watersoluble magnesium salt, in an amount such that
the molar ratio of total magnesium ion to alkylbenzene sulfonate ranges from 0.65:1.0
to 1.0:1.0;
(c) from 1 to 27% by weight of a water-soluble C10-C16 primary alkyl ethoxy sulfate salt containing an average of from 1 to 6 ethylene oxide
groups per alkyl group;
(d) from 0 to 27% by weight of a primary amine or alkali metal salt of a C10-C16 alkyl sulfate; and
(B) from 0.6 to 11% by weight of a suds promoting agent selected from the group consisting
of a C10-C16 mono- and di-C1-C5 alkanolamides and C12-C14 alkyl amides condensed with up to 15 moles ethylene oxide per mole of amide;
(C) from 0 to 10% by weight of a low irritant organic solvent;
(D) from 0 to 8% by weight of a hydrotrope; and
(E) the balance, water.
5. The composition of Claim 4 that comprises:
(A) from 60 to 65%;
(B) from 1 to 8%;
(C) from 2.5 to 3.5%;
(D) from 1 to 5%; and
(E) the balance, water.
6. The composition of Claim 4 wherein the surfactant system (A) comprises a water-soluble
magnesium salt in an amount sufficient to provide a molar ratio of total magnesium
ion to magnesium alkylbenzene sulfonate in the range of 0.65:1.0 to 0.8:1.0.
1. Flüssige Geschirrspüldetergenszusanmensetzung zur Erzielung von stabilen Schaumeigenschaften,
mit der insbesondere fettige Verunreinigungen wirksam entfernt werden, welche Zusammensetzung
folgendes enthält:
(A) 20 bis 70 Gew.% eines oberflächenaktiven Systems mit
(a) 15 bis 35 Gew.% des Magnesiumsalzes eines C10-C18 Alkylbenzolsulfonsäure anionischen oberflächenaktiven Stoffes;
(b) 1 bis 5 Gew.% eines wasserlöslichen Magnesiumsalzes in solcher Menge, daß das
Molverhältnis der gesamten Magnesiumionen zu Alkylbenzolsulfonat im Bereich von 0,65:1
zu 1,0:1,0 liegt;
(c) 1 bis 20 Gew.% eines wasserlöslichen C10-C16 primären Alkyläthoxysulfats, das durchschnittlich 1 bis 6 Äthylenoxidgruppen pro
Alkylgruppe im Alkyläthersulfat enthält; und
(d) 0 bis 20 Gew.% eines primären, sekundären oder tertiären Amins oder Alkalimetallsalzes
des C10-C18 Alkylsulfats; und
(B) 0,5 bis 8 Gew.% eines Schaumfördermittels, ausgewählt aus der Gruppe, bestehend
aus C10-C18 äthoxylierten und nicht-äthoxylierten Mono- oder Di- C1-C5 Alkanolamiden und C12-C14 Alkylamiden, kondensiert mit höchstens 15 Mol Äthylenoxid pro Mol Amid;
(C) 0 bis 10 Gew.% eines wenig reizenden organischen Lösungsmittels;
(D) 0 bis 10 Gew.% Hydrotrop; und
(E) 0 bis 10 Gew.% eines oder mehrerer beliebigen Zusatzmittel, ausgewählt aus Chelierungsmitteln,
Färbemitteln, Farbstoffen, Riechstoffen, Bakteriziden, Fungiziden, Praservierungsmitteln,
Sonnenschutzmitteln, pH-Modifizierern, pH-Puffern, Trübungsmitteln, Antioxidantien,
Proteinen und
(F) den Rest Wasser.
2. Zusammensetzung nach Anspruch 1, die folgendes enthält:
(A) 30 bis 55%;
(B) 1 bis 6%;
(C) 5 bis 8%;
(D) 0 bis 6%;
(E) 0 bis 3%; und
(F) den Rest Wasser.
3. Zusammensetzung nach Anspruch 1, wobei das oberflächenaktive System (A) folgendes
enthält:
(a) 19 bis 21 Gew.% eines Magnesiumsalzes einer C10-C18 Alkylbenzolsulfonsäure;
(b) eine solche Menge eines wasserlöslichen Magnesiumsalzes, daß das Molverhältnis
der Magnesiumionen zu Alkylbenzolsulfonat im Bereich von 0,65:1 zu 0,8:1,0 liegt;
(c) 10 bis 13 Gew.% eines C10-C16 Alkyläthoxysulfats mit drei Äthylenoxidgruppen pro Mol Alkohol; und
(d) 10 bis 15 Gew.% eines C10-C16 Alkylsulfats.
4. Physikalisch stabile flüssige Geschirrspülmittelbasiszusammensetzung, die folgendes
enthält:
(A) 30 bis 70 Gew.% Reinigungswirkstoffen, versehen mit
(a) 10 bis 50 Gew.% des Magnesiumsalzes einer C10-C18 Alkylbenzolsulfonsäure;
(b) 1 bis 5 Gew.% eines wasserlöslichen Magnesiumsalzes in solcher Menge, daß das
Molverhältnis der gesamten Magnesiumionen zu Alkylbenzolsulfonat im Bereich von 0,65:1
zu 1,0:1,0 liegt,
(c) 1 bis 27 Gew.% eines wasserlöslichen C10-C16 primären Alkyläthoxysulfats, das durchschnittlich 1 bis 6 Äthylenoxidgruppen pro
Alkylgruppe enthält,
(d) 0 bis 27 Gew.% eines primären Amins oder Alkalimetallsalzes eines C10-C16 Alkylsulfats; und
(B) 0,6 bis 11 Gew.% eines Schaumfördermittels, ausgewählt aus der Gruppe, bestehend
aus C10-C16 Mono- und Di-C1-C5 Alkanolamiden und C12-C14 Alkylamiden, kondensiert mit höchstens 15 Mol Äthylenoxid pro Mol Amid;
(C) 0 bis 10 Gew.% eines wenig reizenden organischen Lösungsmittels;
(D) 0 bis 8 Gew.% Hydrotrop; und
(E) den Rest Wasser.
5. Zusammensetzung nach Anspruch 4, die folgendes enthält:
(A) 60 bis 65%;
(B) 1 bis 8%;
(C) 2,5 bis 3,5%;
(D) 1 bis 5%; und
(E) den Rest Wasser.
6. Zusammensetzung nach Anspruch 4, wobei das oberflächenaktive System (A) ein wasserlösliches
Magnesiumsalz in genügender Menge enthält, um ein Molverhältnis der gesamten Magnesiumionen
zu Magnesiumalkylbenzolsulfonat im Bereich von 0,65:1 zu 0,8:1,0 zu erzielen.
1. Une composition détergente liquide pour le lavage de la vaisselle, présentant des
propriétés de moussage stable, et qui est particulièrement efficace pour l'enlèvement
de salissures grasses, ladite composition comprenant :
(A) de 20 à 70 % en poids d'un système surfactant comprenant
(a) de 15 à 35 % en poids du sel de magnésium d'un surfactant anionique d'acide C10-C18-alkyl-benzène-sulfonique ;
(b) de 1 à 5 % en poids d'un sel de magnésium soluble dans l'eau, en une quantité
telle que le rapport molaire du total des ions magnésium au sulfonate d'alkylbenzène
est de 0,65:1,0 à 1,0:1,0 ;
(c) de 1 à 20 % en poids d'un éthoxy-sulfate d'alkyle primaire en C10-C16 soluble dans l'eau contenant une moyenne de 1 à 6 groupements d'oxyde d'éthylène
par groupement alkyle dans le sulfate d'alkyl-éther, et
(d) de 0 à 20 % en poids d'une amine primaire, secondaire ou tertiaire ou d'un sel
d'un métal alcalin de sulfate d'alkyle en C10-C18 ; et
(B) de 0,5 à 8 % en poids d'un promoteur de mousse choisi dans le groupe constitué
des mono- ou di-C1-C5-alcanolamides non-éthoxylés et éthoxylés en C10-C18, et des alkylamides en C12-C14 condensés avec jusqu'à 15 moles d'oxyde d'éthylène par mole d'amide ;
(C) de 0 à 10 % en poids d'un solvant organique faiblement irritant;
(D) de 0 à 10 % en poids d'un hydrotrope ; et
(E) de 0 à 10 % en poids d'un ou plusieurs additifs optionnels choisi parmi les agents
chélatants, les agents colorants, les pigments, les parfums, les bactéricides, les
fongicides, les conservateurs, les agents filtrant le rayonnement solaire, les modifieurs
de pH, les agents tampon de pH, les opacifiants, les antioxydants, les protéines et
(F) pour le reste, de l'eau.
2. La composition de la revendication 1 comprenant
(A) de 30 à 55 % ;
(B) de 1 à 6 % ;
(C) de 5 à 8 % ;
(D) de 0 à 6 % ;
(E) de 0 à 3 % ; et
(F) pour le reste, de l'eau.
3. La composition de la revendication 1, dans laquelle le système surfactant (A) comprend
(a) de 19 à 21 % en poids d'un sel de magnésium d'un acide C10-C18-alkyl-benzène-sulfonique ; (b) une quantité d'un sel de magnésium soluble dans l'eau
telle que le rapport molaire des ions magnésium au sulfonate d'alkylbenzène est de
0,65:1,0 à 0,8:1,0 ; (c) de 10 à 13 % en poids d'un éthoxy-sulfate d'alkyle en C10-C16 contenant 3 groupements d'oxyde d'éthylène par mole dalcool ; et (d) de 10 à 15 %
en poids d'un sulfate d'alkyle en C10-C16.
4. Une composition détergente liquide pour le lavage de la vaisselle physiquement stable,
comprenant :
(A) de 30 à 70 % en poids d'ingrédients actifs sur le plan de la détergence, comprenant
:
(a) de 10 à 50 % en poids du sel de magnésium d'un acide C10-C18-alkyl-benzène-sulfonique ;
(b) de 1 à 5 % en poids d'un sel de magnésium soluble dans l'eau, en une quantité
telle que le rapport molaire du total des ions magnésium au sulfonate d'alkylbenzène
est de 0,65:1,0 à 1,0:1,0 ;
(c) de 1 à 27 % en poids d'un sel éthoxy-sulfate d'alkyle primaire en C10-C16 soluble dans l'eau contenant une moyenne de 1 à 6 groupements d'oxyde d'éthylène
par groupement alkyle ;
(d) de 0 à 27 % en poids d'une amine primaire ou d'un sel d'un métal alcalin de sulfate
d'alkyle en C10-C16 ; et
(B) de 0,6 à 11 % en poids d'un promoteur de mousse choisi dans le groupe constitué
des C10-C16-mono- ou di-C1-C5-alcanolamides et des alkylamides en C12-C14 condensés avec jusqu'à 15 moles d'oxyde d'éthylène par mole d'amide ;
(C) de 0 à 10 % en poids d'un solvant organique faiblement irritant;
(D) de 0 à 8 % en poids d'un hydrotrope ; et
(E) pour le reste, de l'eau.
5. La composition de la revendication 4 qui comprend :
(A) de 60 à 65 % ;
(B) de 1 à 8 % ;
(C) de 2,5 à 3,5 % ;
(D) de 1 à 5 % ; et
(E) pour le reste, de l'eau.
6. La composition de la revendication 4, dans laquelle le système surfactant (A) comprend
un sel de magnésium soluble dans l'eau, en une quantité suffisant à fournir un rapport
molaire du total des ions magnésium à l'alkylbenzène-sulfonate de magnésium valant
de 0,65:1,0 à 0,8:1,0.