Technical field
[0001] The present invention relates to the field of detergent or cleaning compositions.
The compositions of the present invention are multi-purpose cleaning compositions
which are suitable for use as hard-surface cleaners as well as in laundry applications.
Background
[0002] A wide variety of cleaning compositions have been described in the art. Typically,
cleaning compositions can be divided into hard surface cleaning compositions and laundry
cleaning compositions. Cleaning compositions of these two types are traditionally
very different in formulation and are sold as different 8roducts with different marketing
concepts. These differences impose on the consumer to have to purchase and use at
least two different products. Furthermore, compositions of the two types above, especially
hard surface cleaners, can be divided into subtypes. Indeed, many different kinds
of hard-surface cleaners are available, for instance bathroom cleaners, kitchen cleaners
or floor cleaners.
[0003] This variety in formulation is rendered necessary by the difference in nature between
the soils which can be found on laundry and on various surfaces in kitchens, floors
and bathroom. For instance, kitchen soils comprise mainly edible oils, while bathroom
soils comprise mainly sebum and soap scum, also limescale; floor soils comprise mainly
particulate soils and laundry may have many different soils and stains.
[0004] It is the object of the present invention to formulate a multi-purpose liquid cleaner
which can be satisfactorily used on various surfaces as well as in laundry applications,
to clean various soils and stains. The compositions according to the present invention
should also be able to perform in a variety of conditions, i.e. in hard and soft water.
They should also provide satisfactory shine performance and surface safety when used
as hard surface cleaners.
[0005] It has now been found that this object can be simply and efficiently met by formulating
a cleaning composition which comprises a specific nonionic surfactant system in a
mildly acidic range. Indeed it has been found that combining nonionic surfactants
belonging to four different HLB (hydrophilic-lipophilic balance) classes provides
a cleaning composition which exhibits a great flexibility in the soils it may clean.
Furthermore, it has been found that said surfactants of said four classes act in synergy
in cleaning most type of soils. Furthermore still, it has been found that adding hydrogen
peroxide to this nonionic surfactant system delivers stronger cleaning performance
especially in laundry applications.
Summary of the invention
[0006] The present invention is an aqueous cleaning composition having a pH of from 0.5
to 6, said composition comprising from 2% to 40% by weight of the total composition
of a nonionic surfactant system, whereby said nonionic surfactant system comprises:
- At least one nonionic surfactant with an HLB above 15;
- At least one nonionic surfactant with an HLB of from above 13 to 15;
- At least one nonionic surfactant with an HLB of from 9 to 13;
- At least one nonionic surfactant with an HLB below 9.
[0007] Highly preferred compositions herein further comprise hydrogen peroxide.
Detailed description of the invention
[0008] The compositions according to the present invention are aqueous liquid cleaning compositions.
Said aqueous compositions have a pH as is of from 0.5 to 6, preferably 1 to 5, most
preferably from 2 to 4.5. The pH of the compositions can be adjusted by using organic
or inorganic acids, or alkalinizing agents.
[0009] The compositions according to the present invention further comprise a specific nonionic
surfactant system comprising at least four nonionic surfactants. Said nonionic surfactant
system is efficient in cleaning a variety of different soils, and significant cooperation
has been observed between the four different types of surfactants.
[0010] The nonionic surfactant system herein comprises a mixture of at least four different
nonionic surfactants, each of which lies in a specified HLB (hydrophilic-lipophilic
balance) range. The compositions of the present invention thus clean a variety of
soils from particulate to nonparticulate soils, from hydrophilic to hydrophobic soils.
[0011] Accordingly, the nonionic surfactant system according to the present invention comprises:
- At least one nonionic surfactant with an HLB above 15, hereinafter referred to as
highly hydrophilic surfactant;
- At least one nonionic surfactant with an HLB of from above 13 to 15, hereinafter referred
to as hydrophilic surfactant;
- At least one nonionic surfactant with an HLB of from 9 to 13, hereinafter referred
to as hydrophobic surfactant;
- At least one nonionic surfactant with an HLB below 9, hereinafter referred to as highly
hydrophobic surfactant.
[0012] Suitable nonionic surfactants for the implementation of said surfactant system are
fatty alcohol ethoxylates which are commercially available with a variety of fatty
alcohol chain length and a variety of ethoxylation degrees. By simply varying the
length of the chain of the fatty alcohol and the degree of ethoxylation, fatty alcohol
ethoxylates can be obtained with different HLB values. Accordingly, suitable highly
hydrophilic surfactants for use herein are Lutensol® AO30 (HLB=17) or Lutensol ® AT
25 (HLB= 16) or AT 50 (HLB=18) or AT 80 (HLB=18.5). Suitable hydrophilic surfactants
for use herein are Dobanol ® 91-8 (HLB=13.7) or 91-10 (HLB=14.7). Suitable hydrophobic
surfactants for use herein are Dobanol ® 23-6.5 (HLB=11.9) or Dobanol ® 25-7 (HLB=12)
or Dobanol ® 91-5 (HLB=11.6) or Dobanol ® 91-6 (HLB=12.5). Suitable highly hydrophobic
surfactants for use herein are Dobanol ® 23-3, Lutensol ® AO3, Dobanol ® 91-2.5 and
Dobanol ® 23-2.
[0013] In the compositions according to the present invention, said nonionic surfactants
belonging to the four classes described hereinabove act in synergy, particularly on
kitchen dirt soils and bathtub soils. It is thus possible to use low total levels
of said nonionic surfactant system. The compositions according to the present invention
comprise from 40% down to 2% by weight of the total composition of said nonionic surfactant
system, preferably from 15% to 3%.
[0014] It has been found that, in order to obtain the best cleaning performance on kitchen
dirt soils, it is preferable to use a nonionic surfactant system according to the
present invention wherein the weight ratio of highly hydrophilic surfactant to hydrophilic
surfactant is at most 1:1.5, and wherein the combined amount of said highly hydrophilic
and hydrophilic surfactant in the total composition is at least 2% by weight, preferably
at least 2.5%.
[0015] It has also been found that, in order to obtain the best cleaning performance on
bathtub soils, it is preferable to use a nonionic surfactant system according to the
present invention wherein the weight ratio of highly hydrophobic to hydrophobic surfactant
is from 1.5:1 to 2.5:1, preferably 2:1, and wherein the combined amount of said hydrophobic
and highly hydrophobic nonionic surfactant in the total composition is at least 1.5%
by weight.
[0016] The compositions according to the present invention may further comprise additional
nonionic surfactants, i.e. there can be more than one surfactant in each class hereinabove.
The compositions according to the present invention do not require the use of an anionic
surfactant system. Accordingly, the compositions according to the present invention
are preferably free of anionic surfactants.
[0017] In multi-purpose cleaning compositions, it is essential to control the suds profile
of the composition. Indeed, too much foaming is likely to be detrimental to shine,
and makes rinsing troublesome for the consumer. Furthermore, oversudsing will also
be an issue as the composition is used in a laundry washing machine. Controlling foaming
is even more of an issue in acidic conditions where fatty acids, which are traditionally
used as suds suppressors, cannot be used because they tend to be insoluble in such
conditions. It is also advisable to avoid the use of silicone-based suds suppressors
which are detrimental to the stability of hydrogen peroxide and the aesthetics of
the product.
[0018] An additional advantage of the compositions herein is that said nonionic surfactant
system presents a good suds profile and therefore does not require the use of a suds
suppressing ingredient. It has been found that, for an optimum suds profile, it is
preferable to use a nonionic surfactant system according to the present invention
wherein the weight ratio of the sum of the highly hydrophilic and hydrophilic surfactants
to the highly hydrophobic surfactant is of 1.5:1 or more.
[0019] In a highly preferred embodiment of the invention, compositions herein preferably
comprise from 2% to 15% by weight of the total composition of hydrogen peroxide or
a source thereof. Indeed, the presence of hydrogen peroxide provides strong cleaning
benefits which are particularly noticeable in laundry applications. Furthermore, the
nonionic surfactant system for use in the compositions according to the present invention
is remarkably compatible with hydrogen peroxide in that good hydrogen peroxide storage
stability was observed, even in the absence of hydrogen peroxide stabilizers. Furthermore
still, ingredients which are typically sensitive to hydrogen peroxide, such as dyes
or brighteners, appear to be stable upon storage in the compositions according to
the present invention without having to add stabilizers for that purpose.
[0020] The compositions according to the present invention may further comprise a variety
of optional ingredients such as builders, solvents, brighteners, perfumes and dyes.
[0021] The compositions according to the present invention can be used as a household cleaner
in the bathroom or in the kitchen, and can also be used as a laundry detergent or
as a laundry detergent booster. When used as hard surface cleaners, the compositions
according to the present invention are easy to rinse and provide good shine characteristics
on the cleaned surfaces.
[0022] The present invention will be further illustrated by the following examples.
Examples
[0023] The following compositions were made by mixing the listed ingredients in the listed
proportions (weight % unless otherwise specified). The compositions in the examples
were tested and proved satisfactory on cleaning laundry, kitchen dirt soils as well
as bathtub soils. Furthermore, the stability of hydrogen peroxide, brightener and
dye was monitored and proved satisfactory at 50°c for two weeks.
|
I |
II |
III |
Lutensol ® AO 30 |
0.75 |
1.50 |
0.75 |
Dobanol ® 91-10 |
2.60 |
3.00 |
2.60 |
Dobanol ® 23-6.5 |
0.90 |
0.50 |
0.90 |
Dobanol ® 23-3 |
1.75 |
1.00 |
1.00 |
H₂O₂ |
7.00 |
7.00 |
7.00 |
Tinopal ® CBS X (1) |
0.10 |
0.10 |
0.10 |
Cosmenyl ® A2R (2) |
6ppm |
6ppm |
6ppm |
H₂SO₄ up to pH |
4.00 |
4.00 |
4.00 |
2-Butyl Octanol |
- |
- |
0.75 |
Water and minors |
--------up to 100%------- |
(1) is a distyryl diphenyl brightener commercially available from Ciba-Geigy. |
(2) is a dye commercially available from Hoechst. |
1. An aqueous cleaning composition having a pH of from 0.5 to 6, said composition comprising
from 2% to 40% by weight of the total composition of a nonionic surfactant system,
characterized in that said nonionic surfactant system comprises:
- At least one nonionic surfactant with an HLB above 15;
- At least one nonionic surfactant with an HLB of from above 13 to 15;
- At least one nonionic surfactant with an HLB of from 9 to 13;
- At least one nonionic surfactant with an HLB below 9.
2. A composition according to claim 1 which comprises from 3% to 15% by weight of the
total composition of said nonionic surfactant system.
3. A composition according to any of the preceding claims which is substantially free
of anionic surfactants.
4. A composition according to any of the preceding claims which comprises from 2% to
15% by weight of the total composition of hydrogen peroxide, or a source thereof.
5. A composition according to any of the preceding claims wherein the weight ratio of
highly hydrophilic surfactant to hydrophilic surfactant is at most 1:1.5, and wherein
the combined amount of said highly hydrophilic and hydrophilic surfactant in the total
composition is at least 2% by weight, preferably at least 2.5%.
6. A composition according to any of the preceding claims wherein the weight ratio of
highly hydrophobic to hydrophobic surfactant is from 1.5:1 to 2.5:1, preferably 2:1,
and wherein the combined amount of said hydrophobic and highly hydrophobic nonionic
surfactant in the total composition is at least 1.5% by weight.
7. A composition according to any of the preceding claims wherein the weight ratio of
the sum of highly hydrophilic and hydrophilic surfactants to highly hydrophobic surfactant
is 1.5:1 or more.
8. A composition according to any of the preceding claims which further comprises a brightener
and a dye.