In combination, an aerobic microbial biomass and viability supporting container therefore. The aerobic microbial biomass is composed of microorganisms extracted from a tea composition and stored as a liquid or applied to a stabilizing medium for storage as a solid. The aerobic microbial biomass is s
In combination, an aerobic microbial biomass and viability supporting container therefore. The aerobic microbial biomass is composed of microorganisms extracted from a tea composition and stored as a liquid or applied to a stabilizing medium for storage as a solid. The aerobic microbial biomass is stored in a container which is characterized as being oxygen permeable to the extent of maintaining at least approximately 5.5 ppm oxygen in the aerobic microbial biomass wherein less than approximately 10% of the microorganisms are maintained in an active state and over a period of at least twelve months, a minimum of at least 50% of the extracted microorganisms are maintained as viable.
대표청구항▼
The invention claimed is: 1. A system for creating and maintaining an aerobic microbial biomass comprising said aerobic microbial biomass and a viability supporting container, wherein said aerobic microbial biomass comprises a liquid tea composition including microorganisms and a culturing medium f
The invention claimed is: 1. A system for creating and maintaining an aerobic microbial biomass comprising said aerobic microbial biomass and a viability supporting container, wherein said aerobic microbial biomass comprises a liquid tea composition including microorganisms and a culturing medium for said microorganisms stored in said container, wherein said container is characterized as being oxygen permeable to the extent of maintaining at least approximately 5.5 ppm oxygen in said aerobic microbial biomass, and wherein less than approximately 10% of said microorganisms are maintained in an active state and over a period of at least twelve months and a minimum of approximately 50% of said microorganisms are maintained as viable. 2. The combination of claim 1 wherein said culturing medium contains at least one member selected from the group consisting of worm castings, compost, humus and leaf mold. 3. The system of claim 2 wherein said culturing medium further comprises protozoa and nematodes. 4. The system of claim 1 wherein said biomass is characterized as having approximately at least 10 μg/ml active bacteria, 150 μg/ml total bacteria, 2 μg/ml active fungi, 2 μg/ml total fungi, 1000 flagellates, 1000 amoeboe, 20 ciliates and 2 nematodes. 5. The system of claim 1 further comprising a nutrient source for said microorganisms. 6. The system of claim 5 wherein said nutrient source comprises at least one member selected from the group consisting of oat, bran, dry molasses, aloe, guinoa, spelt, barley, wheat, soy, rice, alfalfa, milk powder, egg whites, kelp, humic acid, hydrolyzed fish, spirulina, algae, sugar, honey, and date powder. 7. The system of claim 1 wherein said viability supporting container comprises a member selected from the group consisting of cast nylon, nylon coex and low density polyethylene bags. 8. The system of claim 7 wherein said viability supporting containers are characterized as having a moisture vapor transmission rate of approximately 1.2 g/ml/100 in2/24 hrs. at 100° F. and 90% relative humidity. 9. The system of claim 7 wherein said viability supporting container comprises a low density polyethylene bag characterized as having a gas transmission rate of approximately 250 to 840 cc O2 and approximately 495-5000 cc CO2/ml/100 in2/24 hrs. measured at 73° F. and 0% relative humidity.
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