Process for treating organic materials
The present invention provides a process for the treatment of sewage sludge with enzymes, which process comprises treating a sewage sludge resulting from the treatment of municipal or industrial waste water with a composition comprising a fermentation supernatant product from a Saccharomyces cerevisiae culture and a non-ionic surfactant, wherein said fermentation supernatant product is free of active enzymes, at conditions suitable for generating said active enzymes from said sewage sludge in situ.
1. A bio-catalytic composition comprising:
a fermentation supernatant from a yeast culture containing no active enzymes or bacteria, and
one or more nonionic surfactants,
wherein the bio-catalytic composition lacks any active enzymes or bacteria, and
wherein the bio-catalytic composition has a pH of about 3.5 to about 4.0.
2. The bio-catalytic composition according to claim 1 , wherein the yeast culture is a Saccharomyces cerevisiae culture.
3. The bio-catalytic composition according to claim 1 , wherein the one or more nonionic surfactants comprise a polyether nonionic surfactant, a polyhydroxyl nonionic surfactant, and/or a biosurfactant.
4. The bio-catalytic composition according to claim 3 , wherein the polyhydroxyl nonionic surfactant comprises a sucrose ester, an ethoxylated sucrose ester, a sorbital ester, an ethoxylated sorbital ester, an alkyl glucoside, an ethoxylated alkyl glucoside, a polyglycerol ester, or an ethoxylated polyglycerol ester.
5. The bio-catalytic composition according to claim 1 , wherein the one or more nonionic surfactants comprise an amine oxide, an ethoxylated alcohol, an ethoxylated aliphatic alcohol, an alkylamine, an ethoxylated alkylamine, an ethoxylated alkyl phenol, an alkyl polysaccharide, an ethoxylated alkyl polysaccharide, an ethoxylated fatty acid, an ethoxylated fatty alcohol, or an ethoxylated fatty amine, or a nonionic surfactant having the general formula of H(OCH 2 CH 2 ) x OC 6 H 4 R, (OCH 2 CH 2 ) x OR 1 , or H(OCH 2 CH 2 ) x OC(O)R 1 , wherein x represents the number of moles of ethylene oxide added to an alkyl phenol and/or a fatty alcohol or a fatty acid, R represents a long chain alkyl group, and, R 1 represents a long chain aliphatic group.
6. The bio-catalytic composition according to claim 5 , wherein the long chain alkyl group is a C 7 -C 10 normal-alkyl group and/or wherein the long chain aliphatic group is a C 12 -C 20 aliphatic group.
7. The bio-catalytic composition according to claim 1 , wherein the one or more nonionic surfactants is an ethoxylated nonyl phenol, an ethoxylated octyl phenol, an ethoxylated ceto-oleyl alcohol, an ethoxylated ceto-stearyl alcohol, an ethoxylated decyl alcohol, an ethoxylated dodecyl alcohol, an ethoxylated tridecyl alcohol, or an ethoxylated castor oil.
8. The bio-catalytic composition according to claim 1 , further comprising one or more anionic surfactants.
9. The bio-catalytic composition according to claim 1 , further comprising a preservative and/or a biocide.
10. The bio-catalytic composition according to claim 1 , comprising from about 5% to about 35% by weight of the enzyme-free fermentation supernatant.
11. The bio-catalytic composition according to claim 1 , comprising from about 0.5% to about 1.5% by weight of the enzyme-free fermentation supernatant.
12. The bio-catalytic composition according to claim 1 , comprising from about 1% to about 15% by weight of the one or more nonionic surfactants.
13. The bio-catalytic composition according to claim 1 , further comprising from about 2% to about 6% by weight of one or more anionic surfactants.
14. The bio-catalytic composition according to claim 1 , comprising:
0.5% to 1.5% by weight of the enzyme-free fermentation supernatant,
5% to 10% by weight of ethoxylated dodecyl alcohol or tridecyl ethoxylated alcohol,
2% to 6% by weight of an anionic surfactant, and
0.1% to 1.0% by weight of a biocide.