All purpose liquid cleaning compositions

Cleaning compositions for solid surfaces – auxiliary compositions – Cleaning compositions or processes of preparing – For cleaning a specific substrate or removing a specific...

Reexamination Certificate

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C510S191000, C510S239000, C510S240000, C510S365000, C510S405000, C510S421000, C510S475000, C510S491000, C510S500000, C510S501000

Reexamination Certificate

active

06177394

ABSTRACT:

FIELD OF THE INVENTION
The present invention relates to an all purpose cleaning composition containing an additive which prevents the formation of a liquid crystal composition.
BACKGROUND OF THE INVENTION
This invention relates to an improved all-purpose liquid cleaning or microemulsion composition or a microemulsion composition designed in particular for cleaning hard surfaces and which is effective in removing grease soil and/or bath soil and in leaving unrinsed surfaces with a shiny appearance.
In recent years all-purpose liquid detergents have become widely accepted for cleaning hard surfaces, e.g., painted woodwork and panels, tiled walls, wash bowls, bathtubs, linoleum or tile floors, washable wall paper, etc. Such all-purpose liquids comprise clear and opaque aqueous mixtures of water-soluble synthetic organic detergents and water-soluble detergent builder salts. In order to achieve comparable cleaning efficiency with granular or powdered all-purpose cleaning compositions, use of water-soluble inorganic phosphate builder salts was favored in the prior art all-purpose liquids. For example, such early phosphate-containing compositions are described in U.S. Pat. Nos. 2,560,839; 3,234,138; 3,350,319; and British Patent No. 1,223,739.
In view of the environmentalist's efforts to reduce phosphate levels in ground water, improved all-purpose liquids containing reduced concentrations of inorganic phosphate builder salts or non-phosphate builder salts have appeared. A particularly useful self-opacified liquid of the latter type is described in U.S. Pat. No. 4,244,840.
However, these prior art all-purpose liquid detergents containing detergent builder salts or other equivalent tend to leave films, spots or streaks on cleaned unrinsed surfaces, particularly shiny surfaces. Thus, such liquids require thorough rinsing of the cleaned surfaces which is a time-consuming chore for the user.
In order to overcome the foregoing disadvantage of the prior art all-purpose liquid, U.S. Pat. No. 4,017,409 teaches that a mixture of paraffin sulfonate and a reduced concentration of inorganic phosphate builder salt should be employed. However, such compositions are not completely acceptable from an environmental point of view based upon the phosphate content. On the other hand, another alternative to achieving phosphate-free all-purpose liquids has been to use a major proportion of a mixture of anionic and nonionic detergents with minor amounts of glycol ether solvent and organic amine as shown in U.S. Pat. No. 3,935,130. Again, this approach has not been completely satisfactory and the high levels of organic detergents necessary to achieve cleaning cause foaming which, in turn, leads to the need for thorough rinsing which has been found to be undesirable to today's consumers.
SUMMARY OF THE INVENTION
The present invention provides an improved, all purpose clear, liquid cleaning composition having improved interfacial tension which improves cleaning hard surface and is suitable for cleaning hard surfaces such as plastic, vitreous and metal surfaces having a shiny finish, oil stained floors, automotive engines and other engines. More particularly, the improved cleaning compositions exhibit good grease soil removal properties due to the improved interfacial tensions, when used in undiluted (neat) or dilute form and leave the cleaned surfaces shiny without the need of or requiring only minimal additional rinsing or wiping. The latter characteristic is evidenced by little or no visible residues on the unrinsed cleaned surfaces and, accordingly, overcomes one of the disadvantages of prior art products. The instant compositions contain an additive which impedes the formation of a liquid crystal composition.
Surprisingly, these desirable results are accomplished even in the absence of polyphosphate or other inorganic or organic detergent builder salts and also in the complete absence or substantially complete absence of grease-removal solvent.
This invention generally provides a stable, all purpose, or microemulsion hard surface cleaning composition especially effective in the removal of oily and greasy oil. The all purpose liquid cleaning microemulsion composition includes, on a weight basis:
0.1% to 20% of a nonionic surfactant containing ethoxylate groups;
0 to 15%, more preferably 0.1% to 10% of a water-mixable glycol ether cosurfactant having either limited ability or substantially no ability to dissolve oily or greasy soil;
0 to 3 wt. % of water insoluble saturated or unsaturated organic compound having 4 to 30 carbon atoms, perfume or essential oil;
0 to 2.5%, more preferably 0.1% to 3% of a fatty acid;
0 to 3%, more preferably 0.1% to 2% of a polymeric thickener;
0.1% to 5% of an additive which suppresses liquid crystal formation; and
the balance being water, wherein the composition does not contain an amine oxide, alkyl phenol ethoxylate, choline chloride, polyethylene glycol, polyvinyl pyrrolidone, a fatty or partially esterified ethoxylated polyhydric alcohol, an anionic surfactant, magnesium sulfate, more than 5 wt. % of an alkane having from 10 to 18 carbon atoms or an aliphatic primary or secondary alcohol having from 10 to 18 carbon atoms.
DETAILED DESCRIPTION OF THE INVENTION
The present invention relates to a stable all purpose liquid cleaning microemulsion cleaning composition comprising approximately by weight: 0.1% to 20% of a nonionic surfactant containing ethoxylate groups, 0 to 15%, more preferably 0.1% to 10% of a glycol ether cosurfactant, 0 to 2.5%, more preferably 0.1% to 2% of a fatty acid, 0 to 3 wt. % of water insoluble saturated or unsaturated organic compound having 4 to 30 carbon atoms, perfume or essential oil, 0 to 3%, more preferably 0.1% to 2% of a polymeric thickener, 0.1% to 5% of an additive which suppresses liquid crystal formation and the balance being water, wherein the composition does not contain more than 0.30% of a perfume and does not contain an amine oxide, alkyl phenol ethoxylate, choline chloride, polyethylene glycol, polyvinyl pyrrolidone, a fully or partially esterified ethoxylated polyhydric alcohol, an anionic surfactant, magnesium sulfate, more than 5 wt. % of an alkane having from 10 to 18 carbon atoms or an aliphatic primary or secondary alcohol having from 10 to 18 carbon atoms.
The nonionic surfactant which constitutes the major ingredient in present liquid detergent is present in amounts of 0.1% to 20%, preferably 0.5% 17% by weight of the composition and provides superior performance in the removal of oily soil and mildness to human skin.
The water soluble nonionic surfactants utilized in this invention are commercially well known and include the primary aliphatic alcohol ethoxylates, secondary aliphatic alcohol ethoxylates, and ethylene-oxide-propylene oxide condensates on primary alkanols, such a Plurafacs (BASF) and condensates of ethylene oxide with sorbitan fatty acid esters such as the Tweens (ICI). The nonionic synthetic organic detergents generally are the condensation products of an organic aliphatic or alkyl aromatic hydrophobic compound and hydrophilic ethylene oxide groups. Practically any hydrophobic compound having a carboxy, hydroxy, amido, or amino group with a free hydrogen attached to the nitrogen can be condensed with ethylene oxide or with the polyhydration product thereof, polyethylene glycol, to form a water-soluble nonionic detergent. Further, the length of the polyethenoxy chain can be adjusted to achieve the desired balance between the hydrophobic and hydrophilic elements.
The nonionic detergent class includes the condensation products of a higher alcohol (e.g., an alkanol containing 8 to 18 carbon atoms in a straight or branched chain configuration) condensed with 5 to 30 moles of ethylene oxide, for example, lauryl or myristyl alcohol condensed with 16 moles of ethylene oxide (EO), tridecanol condensed with 6 to moles of EO, myristyl alcohol condensed with about 10 moles of EO per mole of myristyl alcohol, the condensation product of EO with a cut of coconut fatty alcohol containing a mixture of fatty alco

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