[0001] The present invention relates to aqueous compositions of acids or acidic salts and
more particularly to novel compositions of these acids or acidic salts which include
a thickening agent.
[0002] As used in the specification acidic salts refer to those compounds which in an aqueous
solution liberate protons.
[0003] Aqueous solutions of acids and acidic salts have long been used in compositions for
cleaning. Such compositions include toilet bowl cleaners, metal cleaners and brighteners,
rust stain removers, denture cleansers, metal descalers, general hard surface cleaners
and disinfectants.
[0004] It has been found that a desirable property of many of the aforementioned compositions
is that they have sufficient viscosity so as to allow the composition to be effectively
applied to surfaces, for example, by brushing, or to allow the composition to remain
in contact with the surface for a sufficient time to act. The latter function has
particular relevance to the cleaning of angular surfaces such as those found in toilet
bowls where prolonged contact between the composition and the bowl is required for
effective cleaning.
[0005] There are many such compositions known in the art that have the requisite viscosity
characteristics. Most of such compositions achieve their viscosity through the use
of one or more of the following thickening agents:-
(a) cellulose derivatives exemplified by sodium carboxymethyl cellulose, hydroxyethyl
cellulose, methyl hydroxyethyl cellulose, methyl cellulose, hydroxypropylmethyl cellulose,
hydroxybutylmethyl cellulose;
(b) gums such as xanthan gum,
(c) acrylic acid polymers such as Carbopol (Registered Trade Mark of B.F. Goodrich)
(d) nonionic surfactants such as nonyl phenol ethoxylates;
(e) poly(ethylene oxide) resins such as Polyox (Registered Trade Mark of Union Carbide);
(f) anionic surfactants such as alkylbenzene sulfonates and alkyl ether sulfates;
and
(g) sodium silicates such as sodium metasilicate.
[0006] Most of these thickeners whilst able to effectively increase the viscosity of aqueous
acid or acidic salt compositions do have some disadvantages in use.
[0007] The cellulose derivatives and gums tend to hydrolyse on storage which results in
a reduction in viscosity of the composition. They are also generally difficult to
dissolve, in some cases intensive mixing being required in order to bring them into
solution.
[0008] Acrylic acid polymers are generally only useful in solutions which have a pH near
neutral and above. They also tend to hydrolyse on storage and to achieve viscosity,
need to be neutralized with a fairly strong alkali.
[0009] Nonionic surfactants have the disadvantage that usually high levels of about 5-10%
are required to achieve satisfactory viscosity, thus making them expensive to use.
[0010] The poly(ethyleneoxide) water soluble resins also require generally high levels to
achieve desirable composition viscosity and additionally, in some acid solutions show
significant instability.
[0011] Sodium silicates are able to produce aqueous acid or acidic salt gel compositions.
However, in developing viscosity in a composition, it has been noted that the viscosity
generally develops over a long period of time, for example, as much as twelve hours.
In commercial manufacturing processes, this is often inconvenient. It is also to be
noted that on storage, such gels tend to break down into small pieces which in many
instances is undesirable.
[0012] Other thickening agents and compositions disclosed in the art which relate to an
aqueous acid and/or acidic salt compositions include:-GB-A-1,443,244 (Reckitt & Colman
Products Limited) which discloses a thickening agent of the formula:

for thickening aqueous compositions of mineral acids and acid salts of strong inorganic
acids.
[0013] GB-A-2,071,688 (Jeyes Limited) which discloses as a thickening agent a mixture of:
(a) a substantially acid insoluble compound of the formula (I) or (II); and
(b) a substantially acid soluble cationic or nonionic surfactant, for thickening aqueous
compositions of inorganic acids or acid salts of strong inorganic acids.


[0014] These compositions require a substantially acid soluble cationic or nonionic surfactant
to achieve thickening.
[0015] US-A-3,786,091 (Bolsing) which discloses a phosphoric acid containing base paste,
produced by preparing a finely divided aqueous dispersion of a long chain amine, preheating
this dispersion, introducing preheated phosphoric acid thereinto with vigorous agitation,
at elevated temperature until neutral and then stirring the resulting mixture until
cold.
[0016] US-A-4,021,377 (Borchert et al) which discloses a citric acid-amine reaction product
obtained by mixing citric acid and water soluble or water dispersible amine in water
until all the citric acid is dissolved. Generally the reaction is accompanied by a
rise in temperature to about 40 C over an hour. The resultant solution containing
amine salts of citric acid and citric acid amides is viscous. It is to be noted that
the concentrations of citric acid and the amines exemplified are particularly high,
the amines exemplified being in the range 12-45% W/W and the citric acid, 19.2% W/W.
Further, only the amines monoethanolamine, diethanolamine and triethanolamine are
exemplified.
[0017] US-A-3520820 discloses amine-containing corrosion inhibitors which contain aliphatic
amines and acetic acid and which are mixed with non-ionic emulsifiers to form liquid,
cold water dispersible emulsions. The compositions contain only from 0.1 to 0.6 mole
of acid per mole of the fatty amine and thus are not acidic compositions.
[0018] US-A-3925229 discloses the production of a phosphoric acid containing paste intended
for use in the cleaning of metals. No compositions are disclosed which are not in
paste form.
[0019] FR-A-2459830 discloses cleaning compositions which may be for the cleaning and removal
of tartar from sanitary ware, such as toilet bowls. The invention is directed to aqueous
solutions of sulfamic acid, the viscosity of which is adjusted and stabilized by the
addition of four types of viscosity adjusting or thickening agents.
[0020] US-A-4021377 discloses liquid detergent compositions which comprise the reaction
product of citric acid and a water-soluble or water-dispersible amine. The reaction
product is said to be a mixture of amine salts of citric acid and citric acid amides.
[0021] The present inventor has recognized the difficulties of the prior art thickening
agents for such aqueous acid or acidic salt compositions. Accordingly, the present
invention seeks to provide alternative compositions to those of the prior art.
[0022] Accordingly, the present invention provides a thickened aqueous liquid toilet bowl
cleansing composition having a pH of not more than 6.5 and having a viscosity of not
less than 30 mPas at 25° C when measured with a Brookfield RVT viscometer at 50 rpm
using a No. 1 spindle, which composition comprises at least one acid or acidic salt,
optionally a strong ionic salt, and, as the sole organic agent to thicken the composition
and impart said viscosity to the composition in an amount of from 0.1 to 10% w/w,
at least one compound of the formula:

in which R contains 8 to 24 carbon atoms and is a substituted or unsubstituted alkyl,
aryl, alkaryl, aralkyl or alkenyl group, R
1 is hydrogen, a substituted or unsubstituted alkyl, aryl, alkaryl, aralkyl or alkenyl
group, R
2 is hydrogen, a substituted or unsubstituted alkyl, aryl, alkaryl, aralkyl or alkenyl
group, provided that if either R, R
1 or R
2 is an alkyl or alkenyl group derived from a fatty acid obtained from a natural oil
or fat or an equivalent synthetic fatty acid, or is an alkaryl group containing from
8 to 12 carbon atoms in the alkyl moiety, then the other substituents are not respectively
of the formulae: [A]
x - H and [A]y - H, where A is either ethoxy or propoxy and x, y are independently 1,
2 or 3, the thickening agent and the acid or acidic salt being together substantially
water soluble.
[0023] In a second aspect, the present invention consists in a method of forming a thickened
aqueous solution, comprising dissolving in water (a) at least one compound selected
from the group consisting of acids and acidic salts, (b) a thickening agent which
is at least one of the compounds selected from the group consisting of compounds of
the formula:

in which R, R, and R
2 are as above defined. and optionally (c) a strong ionic salt, said thickening agent
and the salts being together substantially water soluble, in amounts sufficient to
produce a viscosity of not less than 30 mPa s at 25° C when measured with a Brookfield
RVT viscometer at 50 rpm using a No. 1 spindle.
[0024] In the context of this specification, substantially water soluble means that a thickening
agent and an acid or acidic salt selected in accordance with the invention, will together
either be soluble in water at 25° C or at most will form a hazy solution that does
not separate into two phases during normal storage.
[0025] It will be appreciated that the compositions of the present invention may be readily
distinguished over those disclosed in the aforementioned patent application GB-A-2071688
(Jeyes Limited) in that the compositions claimed therein are directed towards substantially
acid insoluble amines or amine oxides, which require a substantially acid soluble
cationic or nonionic surfactant to achieve thickening.
[0026] By contrast the present invention is limited to amines which together with the selected
acid or acidic salt are substantially water soluble, without a cationic or nonionic
surfactant being required to achieve solution and thickening. It is also to be noted
that in GB-A-2071688 it is stated that neither of the amine, cationic surfactant or
nonionic surfactant alone with an aqueous solution of an inorganic acid or acid salt
will cause thickening.
[0027] It will also be appreciated that the aforementioned US-A-4,021,377 (Borchert et al)
does not disclose, nor does it suggest that thickening will occur in compositions
envisaged by the present invention without recourse to heating the amine with citric
acid to form various reaction products. The present inventor believes that the disclosure
in this US patent that the reaction products of citric acid and an amine are viscous
in solution was merely an observation by the inventors, and perhaps not unexpected
in view of the high concentration of reactants employed. In fact, there is no disclosure
in this US patent that the inventors are aware that levels of amines as low as those
preferred and exemplified in the present invention will form thickened compositions
with acid or acidic salt solutions. The real thrust of this patent is a method of
producing a concentrated solution of desired reaction products which happen in this
high concentration to be viscous.
[0028] In order to demonstrate this, the present inventor produced aqueous solutions containing
5% w/w citric acid anhydrous and 2% w/w mono-, di- or tri-ethanolamine. No thickening
was noted in any of these solutions.
[0029] Similarly, in US-A-3,786,091 (Bolsing), it is taught that it is necessary to obtain
the reaction products between the selected amine and phosphoric acid by heating them
together to produce a paste.
[0030] Thus, Bolsing in the simplest embodiment of his invention disperses the selected
amine in water, heats the dispersion to between 40° C and 100° C and then adds to
it at least a neutralising amount of phosphoric acid, preheated to between 40 C and
120°C. Stirring is continued until the temperature falls to between 5°C and 25 C and
the resultant composition is a paste consisting of the reaction products between phosphoric
acid and selected amine. Bolsing also discloses that other acids such as sulphuric,
hydrochloric, tartaric, oxalic, hydrofluoric and nitric may be used as an additive
to a base paste of his invention. He further discloses that other amines may also
be used as additives.
[0031] The present invention may be distinguished over Bolsing when it is considered that
the amines of the Bolsing invention must be derivatives of substituted or unsubstituted
hydrocarbons having 8-24 carbon atoms, the selected amine must be reacted by heating
with phosphoric acid to achieve viscosity and there is no hint or suggestion that
acids other than phosphoric acid are operative. Additionally, with respect to acidic
salts, it is noted that Bolsing refers to ammonium chloride as an auxiliary.
[0032] In contrast, the present invention teaches that thickening can be achieved with a
range of acids and acidic salts, no heating is required to obtain thickening and the
present inventor believes that amines additional to those of Bolsing are operative.
[0033] In the above formula I the group R contains from 8 to 24 carbon atoms. Preferably
the group R contains from 8 to 24 carbon atoms in an unsubstituted alkyl or alkenyl
group.
[0034] Preferably, the group R
1 and R
2 are independently a hydrogen atom or a lower unsubstituted alkyl group, where lower
refers to groups containing 1 to 4 carbon atoms or a substituted alkyl group. More
preferably the groups R
1 and R
2 are independently a hydrogen atom or a lower unsubstituted alkyl group. Most preferably,
the groups R
1 and R
2 are independently a hydrogen atom or a methyl group.
[0035] Preferred thickening agents of the present invention that are primary amines include
Farmin 0 (Farmin is a registered trade mark of Kao Soap Co.) or Genamin OL-100D (Genamin
is a registered trade mark of Hoechst), both of which are mainly oleylamine and Farmin
T or Genamin TA100D, both of which are tallow fatty amine distilled. These thickening
agents are able to thicken organic acids including formic, acetic, DL lactic, adipic,
glycollic, malonic, succinic, pentetic, ascorbic, chloroacetic, citric and propionic
acids. In some cases a small addition of a strong ionic salt such as sodium chloride
is required to achieve adequate composition viscosity in the preferred concentration
range of thickening agent. Naturally, increasing the concentration of thickening agent
will increase viscosity in many cases. However, because of the relatively low cost
of such salts, it is preferred to use a mixture of thickening agent and strong ionic
salt to achieve the desired viscosity. However, it must also be considered that the
addition of extra thickening agent may increase the pH and thereby decrease the efficiency
of a composition.
[0036] Preferred thickening agents of the present invention that are tertiary amines include
Genamin S0302D (dimethyl soya bean oil fatty amine distilled) and Genamin TA302D (dimethyl
tallow fatty amine distilled). These amines are able to thicken organic acids including
citric acid, L tartaric acid, formic acid, DL malic acid, acetic acid, DL lactic acid,
adipic acid, maleic acid, ethylenediaminetetraacetic acid, glycollic, malonic, succinic
and propionic acid and inorganic acids including sulfamic acid, phosphoric acid, boric,
hydrofluoric and sulphuric acid. Generally, for reasons outlined above, these amines
require the addition of a strong ionic salt, such as sodium chloride in order to achieve
adequate composition viscosity in the preferred concentration range of thickening
agent.
[0037] Preferred thickening agents of the present invention that are tertiary amines able
to thicken acidic salts include Genamin TA302D and Genamin S0302D. Genamin TA302D
is able to thicken aqueous solutions of monosodium citrate, and potassium hydrogen
tartrate with the addition of a strong ionic salt such as sodium chloride. Genamin
S0302D is able to thicken aqueous solutions of aluminium sulphate, sodium hydrogen
sulphate, sodium dihydrogen orthophosphate, disodium ethylenediaminetetraacetate and
aluminium potassium sulphate with a small addition of a strong ionic salt such as
sodium chloride required in some cases; the sodium chloride being required to achieve
adequate composition viscosity as previously described.
[0038] Preferred thickening agents of the present invention that are primary amines able
to thicken acidic salts include Farmin 0, Genamin OL-100D, Farmin T and Genamin TA-100D.
These amines are able to thicken aqueous solutions of aluminium acetate.
[0039] Other amines considered by the present inventor to be within the scope of this invention
include:
Farmin DMON (Dimethyl oleylamine);
Onamin@ 1416 (N-alkyl C14-C16 dimethylamine)
Genamin 14R302D (tetradecyl dimethylamine distilled);
Genamin 16R302D (hexadecyl dimethylamine distilled);
Genamin 14R100D (tetradecylamine distilled);
Genamin 16R100D (hexadecylamine distilled);
the following amines obtainable from KenoGard-
Amine 2MOL (dimethyloleylamine)
Amine 28 (dioctylamine)
Amine 210 (didecylamine)
Amine M28 (methyldioctylamine) and
Amine M210 (methyldidecylamine).
[0040] It is to be noted that the abovementioned preferred amines are in fact mixtures of
a number of amines with one amine being predominant. The present inventor believes
that the predominant amine may function to solubilize the minor amines in compositions
of the present invention.
[0041] For example, Farmin 0 is predominantly oleylamine having an approximate alkyl content
of 6% C
14, 13% C1 and 81% C18, whilst Genamin S0302D has an approximate average chain length
distribution of 2% C
14-, 15% C
16 and 83% C
18 and Genamin TA302D has an approximate average chain length distribution of 5% C
14-, 30% C
16 and 65% C
18.
[0042] Additionally, amines of the invention may be generally derived from natural or synthetic
sources of tallow, soya bean oil, oleic acid, palmitic acid, myristic acid, linoleic
acid, linolenic acid, ricinoleic acid or hexadecanoic acid.
[0043] Generally the acids to which the present invention is directed include inorganic
acids such as sulphuric, hydrofluoric, boric, sulphamic and phosphoric acids and the
organic acids formic, acetic, DL lactic, propionic, citric, DL malic, L tartaric,
adipic, maleic and ethylenediaminetetraacetic acid, malonic, glycollic, succinic,
ascorbic, pentetic and chloroacetic acids.
[0044] The acidic salts to which the present invention is directed include the acid salts
of inorganic or organic acids such as monosodium citrate, sodium hydrogen sulphate,
sodium dihydrogen orthophosphate, disodium ethylenediaminetetraacetate, aluminium
acetate and potassium hydrogen tartrate, aluminium sulphate and aluminium potassium
sulphate.
[0045] The concentration of acid or acidic salt may be varied over a wide range depending
on the end use of the composition. In some cases, particularly where a strong acid
such as hydrofluoric acid is used and a near neutral product is required, the concentration
of acid or acidic salt may be as low as 0.01 % w/w.
[0046] In other cases, the concentration of acid or acidic salt may be in excess of 90%.
[0047] Generally, the concentration of acid or acidic salt will lie in the range of from
0.1 to 30% w/w.
[0048] In use, the thickening agent will be present in a concentration in the composition
of from 0.1 to 10% w/w. Preferably, the concentration in the composition will lie
in the range of from 0.4 to 5.0% w/w.
[0049] In order to achieve a desired viscosity in the composition, the concentration of
the thickening agent may be varied appropriately. However, in some cases, it has been
found that it is not possible to achieve sufficient composition viscosity for some
applications. In such cases, the addition of a salt which has high ionic strength
has been found to enhance the viscosity of these compositions. In most cases however,
the concentration of thickening agent and high ionic strength salt will be optimized
in order to produce a cost effective composition of the desired viscosity. Generally,
the ionic salts will be selected from alkali metal halides or sulphates and ammonium
halides or sulphates. Suitable such salts include sodium chloride, sodium sulphate,
potassium sulphate, potassium chloride, ammonium chloride and the like.
[0050] Alternatively, the present inventor believes that certain long chain quaternary ammonium
compounds may achieve similar thickening to the aforementioned salts. An example is
Arquad 16-50 which is hexadecyltrimethyl ammonium chloride or Arquad S-50 which is
a mixture of octadecanyl and oc- tadecadienyl trimethyl ammonium chloride. Arquad
is a trade mark of Armour Hess Chemicals.
[0051] It has further been found that in some cases whilst the composition is thick, clear
and stable at room temperature, in order to achieve a satisfactory upper and lower
cloud point for a composition, it is necessary to add another ingredient such as salt
with a strong ionic effect of the type mentioned above, a cationic, nonionic or amphoteric
surfactant or a solvent miscible with the composition, for example ethanol, isopropanol,
butyl Icionol and the like (Icionol is a trade mark of ICI) and Dowanol DPM (dipropyleneglycol
methylether. Dowanol is a trade mark of Dow Chemicals). Such an addition of salt,
surfactant or solvent insures that a composition will remain stable under hot and
cold weather conditions.
[0052] A variety of other ingredients may be added to compositions of the invention depending
on their end use. Thus, germicides, surfactants including anionic, nonionic, cationic
and amphoteric, sequestering agents, corrosion inhibitors, perfumes and colouring
agents may be added.
[0053] A principal advantage of the present invention is that an aqueous acid or acidic
salt solution may be readily and easily thickened. Generally the steps of obtaining
such thickened compositions will be - (a) add an appropriate amount of acid or acidic
salt to water and stir to dissolve, (b) add a thickening agent of the present invention
to the solution and stir until dissolved and (c) add other ingredients if required,
stirring to dissolve.
[0054] It will be appreciated that since the thickening agent of the present invention is
defined to be soluble in the selected acidic salt or acid solution, and as it will
generally be easily wet, the step (b) above will be relatively rapid unlike many of
the prior art thickening agents, which whilst they may be soluble are frequently difficult
to wet.
[0055] Other advantages of the thickening agents of the present invention are that they
are relatively inexpensive and in use produce smooth, homogeneous immediate thickening.
Furthermore, thickened compositions are stable with respect to viscosity. For example,
the present inventor has found that a citric acid composition thickened with Farmin
0 had no substantial change in viscosity when stored at room temperature for 12 months.
[0056] A still further advantage is that the present inventor has found that the compositions
of the invention have some surfactant and corrosion inhibition properties. The former
finding means that water immiscible substances such as fragrances may be directly
solubilized in a composition of the invention without requiring the addition of emulsifiers
or auxiliary solvents, and in compositions in which the surface active properties
are required, potentially less or no additional surfactant would be required.
[0057] The present inventor has also found that if only sufficient of an acid or an acidic
salt is present to just dissolve a thickening agent of the present invention, then
a composition of near neutral pH may be obtained. Thus, Farmin 0 may be used to thicken
lactic acid at a pH of 6.5. The advantage of this finding is that it may be used in
aqueous liquid cleaners in general.
[0058] The present inventor has further found that an acid or acidic salt which is usually
considered to be water insoluble at room temperature may be brought into solution
through the use of a thickening agent of the present invention, with thickening occurring.
The viscosity may be increased through the use of a strong ionic salt such as sodium
chloride. To prepare such compositions, the acid is dispersed in the water and the
thickening agent added with mixing. It is observed that as the acid and thickener
go into solution, the solution increases in viscosity.
[0059] Preferred compositions of this type include ethylenediaminetetraacetic acid with
Genamin S0302D as the thickening agent, potassium hydrogen tartrate with Genamin TA302D
as thickening agent and pentetic acid with Farmin 0 as thickening agent.
[0060] Hereinafter are a number of examples, 1 to 55, of the present invention, together
with comparative examples 1A and 1B, in which the viscosity, in mPa s, of each was
determined using a Brookfield RVT viscometer using a spindle and speed as appropriate
at 25 C. Note that the thickening agent is asterixed in each case.
[0061] All of these examples (except Nos. 27, 46 and 51) were produced by bringing the acid
or acidic salt into solution, adding the thickening agent and mixing until dissolved,
and then adding the other ingredients with mixing until dissolved.
[0062] Examples 27, 46 and 51 were prepared by dispersing the acid or acid salt in water,
adding the thickening agent and mixing until solution occurred, followed by sodium
chloride (if required) until a satisfactory viscosity was achieved.
[0063] Note that all examples were prepared under normal laboratory conditions.
Example 1
[0064]

Comparative
Example 1A
[0065]

Example 1B
[0066]

Example 2
[0067]

Example 3
[0068]

Example 4
[0069]

Example 5
[0070]

Example 6
[0071]

Example 7
[0072]

Example 8
[0073]

Example 9
[0074]

Example 10
[0075]

Example 11
[0076]

Example 12
[0077]

Example 13
[0078]

Example 14
[0079]

Example 15
[0080]

Example 16
[0081]

Example 17
[0082]

Example 18
[0083]

Example 19
[0084]

Example 20
[0085]

Example 21
[0086]

Example 22
[0087]

Example 23
[0088]

Example 24
[0089]

Example 25
[0090]

Example 26
[0091]

Example 27
[0092]

Example 28
[0093]

Example 29
[0094]

Example 30
[0095]

Example 31
[0096]

Example 32
[0097]

Example 33
[0098]

Example 34
[0099]

Example 35
[0100]

Example 36
[0101]

Example 37
[0102]

Example 38
[0103]

Example 39
[0104]

Example 40
[0105]

Example 41
[0106]

Example 42
[0107]

Example 43
[0108]

Example 44
[0109]

Example 45
[0110]

Example 46
[0111]

Example 47
[0112]

Example 48
[0113]

Example 49
[0114]

Example 50
[0115]

Example 51
[0116]

Example 52
[0117]

Example 53
[0118]

Example 54
[0119]

Example 55
[0120]

[0121] It is to be noted that the viscosity of Example 1, when compared with the viscosity
of water (1 A) and 5% w/w citric acid (1 B), is substantially greater. A comparison
with an aqueous solution of the thickening agent in this case was not possible as
the thickening agent is water insoluble.
[0122] The examples 1 to 55 disclosed herein may be used for example as toilet bowl cleaners,
metal cleaners and brighteners and the like as well as applications such as gel batteries.
1. A thickened aqueous liquid toilet bowl cleansing composition having a pH of not
more than 6.5 and having a viscosity of not less than 30 mPa s at 25 C when measured
with a Brookfield RVT viscometer at 50 rpm using a No. 1 spindle, which composition
comprises at least one acid or acidic salt, optionally a strong ionic salt, and, as
the sole organic agent to thicken the composition and impart said viscosity to the
composition in an amount of from 0.1 to 10% w/w, at least one compound of the formula:

in which R contains 8 to 24 carbon atoms and is a substituted or unsubstituted alkyl,
aryl, alkaryl, aralkyl or alkenyl group, R
1 is hydrogen, a substituted or unsubstituted alkyl, aryl, alkaryl, aralkyl or alkenyl
group, R
2 is hydrogen, a substituted or unsubstituted alkyl, aryl, alkaryl, aralkyl or alkenyl
group, provided that if either R, R
1 or R
2 is an alkyl or alkenyl group derived from a fatty acid obtained from a natural oil
or fat or an equivalent synthetic fatty acid, or is an alkaryl group containing from
8 to 12 carbon atoms in the alkyl moiety, then the other substituents are not respectively
of the formulae: [A]
x - H and [A]y - H, where A is either ethoxy or propoxy and x, y are independently 1,
2 or 3, the thickening agent and the acid or acidic salt being together substantially
water soluble.
2. A composition as claimed in claim 1 wherein the thickening agent is water insoluble.
3. A composition as claimed in claim 1 or claim 2 wherein the group R is a substituted
or unsubstituted alkyl or alkenyl group.
4. A composition as claimed in claim 3 wherein R is derived from either a natural
or synthetic source of tallow, soya bean oil, oleic acid, palmitic or myristic acid.
5. A composition as in claim 3 wherein R is derived from either a natural or synthetic
source of linolenic, ricinoleic, linoleic or hexadecanoic acid.
6. A composition as claimed in any one of the preceding claims wherein the groups
R1 and R2 are independently a hydrogen atom, a lower unsubstituted alkyl group containing one
to four carbon atoms, preferably methyl, or a substituted alkyl group.
7. A composition as claimed in any one of the preceding claims wherein the thickening
agent is a mixture of compounds of the Formula I.
8. A composition as claimed in any one of the preceding claims wherein the acid is
phosphoric, sulphuric, boric, sulphamic, tartaric, citric, lactic, formic, acetic,
glycollic, pentetic, ethylenediaminetetraacetic, propionic, malic, adipic, maleic,
malonic, succinic, hydrofluoric, ascorbic or chloroacetic acid.
9. A composition as claimed in any one of the preceding claims wherein the acidic
salt is monosodium citrate, sodium hydrogen sulphate, sodium dihydrogen orthophosphate,
disodium ethylenediaminetetraacetate, aluminium potassium sulphate, aluminium acetate,
potassium hydrogen tartrate or aluminium sulphate.
10. A composition as claimed in any one of the preceding claims wherein the concentration
of thickening agent is in the range of from 0.1 to 10% w/w, preferably 0.4 to 5.0%
w/w.
11. A composition as claimed in any one of the preceding claims wherein the concentration
of acid or acidic salt is not less than 0.01 % w/w, preferably 0.1 to 30% w/w.
12. A composition claimed as in any one of the preceding claims additionally including
a perfume, dye, sequestering agent, surfactant or bactericide.
13. A composition as claimed in any one of the preceding claims wherein the strong
ionic salt is an alkali metal halide, an alkali metal sulphate, an ammonium halide,
ammonium sulphate or a long chain quaternary ammonium compound.
14. A composition as claimed in any one of the preceding claims further including
a compound effective in adjusting the upper and/or lower cloud point of the composition,
preferably a strong ionic salt, anionic surfactant, cationic surfactant, nonionic
surfactant, amphoteric surfactant, a solvent miscible with the composition, or a mixture
thereof.
15. A composition as claimed in claim 14 wherein the solvent is ethanol, isopropanol,
butoxyethanol or dipropylene glycol methylether.
16. A method of forming a composition as claimed in any one of the preceding claims
comprising dissolving in water (a) at least one acid or acidic salt, (b) a thickening
agent which is as defined in claim 1, and optionally (c) a strong ionic salt, the
thickening agent and the acid or acidic salts being together substantially water soluble,
in amounts sufficient to produce a viscosity of not less than 30 mPa s at 25° C when
measured with a Brookfield RVT viscometer at 50 rpm using a No. 1 spindle.
1. Composition liquide aqueuse épaissie pour le nettoyage de cuvettes de W.C, dont
le pH ne dépasse pas 6,5 et dont la viscosité n'est pas inférieure à 30 mPa
's à 25 C, mesurée avec un viscosimètre Brookflied RVT à 50 tr/min avec utilisation
d'une broche n° 1, cette composition comprenant au moins un acide ou un sel acide,
facultativement un sel ionique fort et, comme unique agent organique servant à épaissir
la composition et à conférer à cette dernière ladite viscosité, en une quantité de
0,1 à 10 % en poids/poids, au moins un composé de formule :

dans laquelle R contient 8 à 24 atomes de carbone et est un groupe alkyle, aryle,
alkaryle, aralkyle ou alcényle substitué ou non substitué, R
1 est l'hydrogène, un groupe alkyle, aryle, alkaryle, aralkyle ou alcényle substitué
ou non substitué, R
2 est l'hydrogène, un groupe alkyle, aryle, alkaryle, aralkyle ou alcényle substitué
ou non substitué, sous réserve que si R, R
1 ou R
2 est un groupe alkyle ou alcényle dérivé d'un acide gras tiré d'une huile ou d'une
graisse naturelle ou d'un acide gras synthétique équivalent, ou s'il s'agit d'un groupe
alkaryle contenant 8 à 12 atomes de carbone dans la portion alkyle, les autres substituants
ne répondent alors respectivement pas aux formules : [A]
x - H et [A]y - H, où A est un groupe éthoxy ou propoxy et x, y représentent indépendamment
les nombres 1, 2 ou 3, l'agent épaississant et l'acide ou le sel d'acide étant ensemble
pratiquement solubles dans l'eau.
2. Composition suivant la revendication 1, dans laquelle l'agent épaississant est
insoluble dans l'eau.
3. Composition suivant la revendication 1 ou la revendication 2, dans laquelle le
groupe R est un groupe alkyle ou un groupe alcényle substitué ou non substitué.
4. Composition suivant la revendication 3, dans laquelle R est dérivé d'une source
naturelle ou synthétique de suif, d'huile de graines de soja, d'acide oléique, d'acide
palmitique ou d'acide myristique.
5. Composition suivant la revendication 3, dans laquelle R est dérivé d'une source
naturelle ou synthétique d'acide linolénique, d'acide ricinoléique, d'acide linoléique
ou d'acide hexadécanoique.
6. Composition suivant l'une quelconque des revendications précédentes, dans laquelle
les groupes R1 et R2 représentent indépendamment un atome d'hydrogène, un groupe alkyle inférieur non
substitué contenant un à quatre atomes de carbone, de préférence le groupe méthyle,
ou un groupe alkyle substitué.
7. Composition suivant l'une quelconque des revendications précédentes, dans laquelle
l'agent épaississant est un mélange de composés de formule I.
8. Composition suivant l'une quelconque des revendications précédentes, dans laquelle
l'acide est l'acide phosphorique, l'acide sulfurique, l'acide borique, l'acide sulfamique,
l'acide tartrique, l'acide citrique, l'acide lactique, l'acide formique, l'acide acétique,
l'acide glycollique, l'acide pentétique, l'acide éthylè- nediaminetétraacétique, l'acide
propionique, l'acide malique, l'acide adipique, l'acide maléique, l'acide malonique,
l'acide succinique, l'acide fluorhydrique, l'acide ascorbique ou l'acide chloracétique.
9. Composition suivant l'une quelconque des revendications précédentes, dans laquelle
le sel acide est le citrate monosodique, l'hydrogénosulfate de sodium, le dihydrogéno-orthophosphate
de sodium, l'éthylè- nediaminetétraacétate disodique, le sulfate d'aluminium et de
potassium, l'acétate d'aluminium, l'hydro- génotartrate de potassium ou le sulfate
d'aluminium.
10. Composition suivant l'une quelconque des revendications précédentes, dans laquelle
la concentration de l'agent épaississant se situe dans la plage de 0,1 à 10 % en poids/poids,
de préférence de 0,4 à 5,0 % en poids/poids.
11. Composition suivant l'une quelconque des revendications précédentes, dans laquelle
la concentration en acide ou en sel acide n'est pas inférieure à 0,01 % en poids,
étant de préférence comprise dans la plage de 0,1 à 30 % en poids/poids.
12. Composition suivant l'une quelconque des revendications précédentes, comprenant
en outre un parfum, un colorant, un agent séquestrant, un surfactant ou un bactéricide.
13. Composition suivant l'une quelconque des revendications précédentes, dans laquelle
le sel ionique fort est un halogénure de métal alcalin, un sulfate de métal alcalin,
un halogénure d'ammonium, un sulfate d'ammonium ou un composé d'ammonium quaternaire
à longue chaîne.
14. Composition suivant l'une quelconque des revendications précédentes, comprenant
en outre un composé efficace pour ajuster le point de trouble supérieur et/ou inférieur
de la composition, de préférence un sel ionique fort, un surfactant ionique, un surfactant
cationique, un surfactant non ionique, un surfactant amphotère, un solvant miscible
à la composition, ou un mélange de ces composés.
15. Composition suivant la revendication 14, dans laquelle le solvant est l'éthanol,
l'isopropanol, le butoxyéthanol ou l'éther méthylique du dipropylèneglycol.
16. Procédé de préparation d'une composition suivant l'une quelconque des revendications
précédentes, qui consiste à dissoudre dans l'eau (a) au moins un acide ou un sel acide,
(b) un agent épaississant qui est tel que défini dans la revendication 1, et, à titre
facultatif, (c) un sel ionique fort, l'agent épaississant et l'acide ou les sels acides
étant ensemble pratiquement solubles dans l'eau, en des quantités suffisantes pour
produire une viscosité non inférieure à 30 mPa.s à 25`C lorsqu'elle est mesurée avec
un viscosimètre Brookfield RVT à 50 tr/min utilisant une broche n 1.
1. Verdickte, wäßrige, flüssige Toilettenschüssel-Reinigungszusammensetzung, die einen
pH von nicht mehr als 6,5 und eine Viskosität von nicht weniger als 30 mPa
's bei 25 C aufweist, wenn mit einem Brookfield RVT Viskosimeter bei 50 Upm unter Verwendung
einer Spindel Nr. 1 gemessen wird, wobei die Zusammensetzung mindestens eine Säure
oder ein saures Salz, gegebenenfalls ein stark ionisches Salz, und als das einzige
organische Mittel, um die Zusammensetzung zu verdicken und der Zusammensetzung die
Viskosität zu verleihen, in einer Menge von 0,1 bis 10% (Gew./Gew.) mindestens eine
Verbindung der Formel

enthält, worin R 8 bis 24 Kohlenstoffatome enthält und eine substituierte oder unsubstituierte
Alkyl-, Aryl-, Alkaryl-, Aralkyl- oder Alkenylgruppe ist, R
1 Wasserstoff, eine substituierte oder unsubstituierte Alkyl-, Aryl-, Alkaryl-, Aralkyl-
oder Alkenylgruppe ist, R
2 Wasserstoff, eine substituierte oder unsubstituierte Alkyl-, Aryl-, Alkaryl-, Aralkyl-
oder Alkenylgruppe ist, vorausgesetzt, daß wenn entweder R, R
1 oder R
2 eine Alkyl- oder Alkenylgruppe ist, welche von einer Fettsäure, die aus einem natürlichen
Öl oder Fett erhalten wird, oder einer äquivalenten synthetischen Fettsäure stammt,
oder eine Alkarylgruppe ist, die von 8 bis 12 Kohlenstoffatome in der Alkylkomponente
enthält, die anderen Substituenten dann jeweils nicht von den Formeln [A]
x-H und [A]y-H sind, worin A entweder Ethoxy oder Propoxy ist, und x,y unabhängig 1,
2 oder 3 sind, wobei das Verdickungsmittel und die Säure oder das saure Salz zusammen
im wesentlichen wasserlöslich sind.
2. Zusammensetzung nach Anspruch 1, worin das Verdickungsmittel wasserunlöslich ist.
3. Zusammensetzung nach Anspruch 1 oder 2, worin die Gruppe R eine substituierte oder
unsubstituierte Alkyl- oder Alkenylgruppe ist.
4. Zusammensetzung nach Anspruch 3, worin R entweder aus einer natürlichen oder synthetischen
Quelle von Talg, Sojabohnenöl, Ölsäure, Palmitin- oder Myristinsäure stammt.
5. Zusammensetzung nach Anspruch 3, worin R entweder aus einer natürlichen oder synthetischen
Quelle von Linolen-, Ricinol-, Linol- oder Hexadecansäure stammt.
6. Zusammensetzung nach einem der vorhergehenden Ansprüche, worin die Gruppen R1 und R2 unabhängig ein Wasserstoffatom, eine niedere unsubstituierte Alkylgruppe mit einem
bis vier Kohlenstoffatomen, vorzugsweise Methyl, oder eine substituierte Alkylgruppe
ist.
7. Zusammensetzung nach einem der vorhergehenden Ansprüche, worin das Verdickungsmittel
ein Gemisch von Verbindungen der Formel I ist.
8. Zusammensetzung nach einem der vorhergehenden Ansprüche, worin die Säure Phosphor-,
Schwefel-, Bor-, Sulfamid-, Wein-, Zitronen-, Milch-, Ameisen-, Essig-, Glycol-, Diethylentriaminpentaessig-(pentetic
acid), Ethylendiamintetraessig-, Propion-, Äpfel-, Adipin-, Malein-, Malon-, Bernstein-,
Fluorwasserstoff-, Ascorbin- oder Chloressigsäure ist.
9. Zusammensetzung nach einem der vorhergehenden Ansprüche, worin das saure Salz Mononatrium-Citrat,
NatriumHydrogensulfat, Natrium-Dihydrogenorthophosphat, Dinatrium-Ethylendiamintetraacetat,
Aluminiumkaliumsulfat, Aluminiumacetat, Kalium-Hydrogentartrat oder Aluminiumsulfat
ist.
10. Zusammensetzung nach einem der vorhergehenden Ansprüche, worin die Konzentration
des Verdikkungsmittels im Bereich von 0,1 bis 10% (Gew./Gew.), vorzugsweise 0,4 bis
5,0% (Gew./Gew.) ist.
11. Zusammensetzung nach einem der vorhergehenden Ansprüche, worin die Konzentration
von Säure oder saurem Salz nicht weniger als 0,01% (Gew./Gew.), vorzugsweise 0,1 bis
30% (Gew. /Gew.) ist.
12. Zusammensetzung nach einem der vorhergehenden Ansprüche, die zusätzlich ein Parfüm,
einen Farbstoff, ein Maskierungsmittel, ein oberflächenaktives Mittel oder ein Bakterizid
enthält.
13. Zusammensetzung nach einem der vorhergehenden Ansprüche, worin das stark ionische
Salz ein Alkalimetallhalogenid, ein Alkalimetallsulfat, ein Ammoniumhalogenid, Ammoniumsulfat
oder eine langkettige quaternäre Ammoniumverbindung ist.
14. Zusammensetzung nach einem der vorhergehenden Ansprüche, weiterhin beinhaltend
eine Verbindung, die wirksam beim Einstellen des oberen und/oder unteren Trübungspunkts
der Zusammensetzung ist, vorzugsweise ein stark ionisches Salz, ein anionisches oberflächenaktives
Mittel, ein kationisches oberflächenaktives Mittel, ein nichtionisches oberflächenaktives
Mittel, ein amphoteres oberflächenaktives Mittel, ein mit der Zusammensetzung mischbares
Lösungsmittel oder ein Gemisch davon.
15. Zusammensetzung nach Anspruch 14, worin das Lösungsmittel Ethanol, Isopropanol,
Butoxyethanol oder Dipropylen-Glycolmethylether ist.
16. Verfahren zur Herstellung einer Zusammensetzung nach einem der vorhergehenden
Ansprüche, umfassend das Lösen in Wasser von (a) mindestens einer Säure oder einem
sauren Salz, (b) einem Verdickungsmittel, das wie in Anspruch 1 definiert ist, und
gegebenenfalls (c) einem stark ionischen Salz, wobei das Verdickungsmittel und die
Säure oder sauren Salze zusammen in Wasser im wesentlichen löslich sind, in Mengen,
die ausreichen, um eine Viskosität von nicht weniger als 30 mPa's bei 25 °C zu erzeugen, wenn mit einem Brookfield RVT Viskosimeter bei 50 Upm unter
Verwendung einer Spindel Nr. 1 gemessen wird.