Enzymatic cleaner having high pH stability
The present invention is directed to a cleaning composition comprising: (a) an enzyme in an amount effective to promote cleaning; (b) viable microorganisms in an amount effective to degrade and promote the degradation of organic materials; (c) a surfactant; and (d) an aqueous carrier; said cleaning composition maintaining at least 95% enzymatic activity at a pH range of from about 5.5 to about 13.5.
1. A cleaning composition consisting essentially of:
(a) an enzyme in an amount effective to promote cleaning, said enzyme being selected from the group consisting of proteases, amylases, lipases, cellulases, and mixtures thereof;
(b) viable microorganisms in an amount effective to degrade and promote the degradation of organic materials wherein said viable microorganism includes at least one strain of Bacillus subtilis;
(c) a nonionic surfactant;
(d) 1 to 5% by weight sodium silicate;
(e) 1 to 7% by weight sodium hydroxide effective to achieve a pH of from 9.5 to about 13.5;
(f) 0–2% by weight of a fragrance; and
(g) the balance being water; wherein said cleaning composition is non-corrosive and non-irritating while maintaining at least 95% enzymatic activity at a pH range of from 9.5 to about 13.5.
2. The composition of claim 1 in which the microorganisms are present in a concentration of about 1×10 6 /ml to 1×10 9 /ml.
3. The composition of claim 1 in which the pH of the composition is maintained in the range of about 11.0 to 12.5.
4. The composition of claim 1 in which the microorganism further includes at least one organism from the group consisting of Pseudonmonas, Arthrobacter, Enterobacter, Citrobacter, and Corynebacter.