Patent classifications
C05C11/00
ALKYL THIOPHOSPHORIC TRIAMIDE AND NEEM OIL SOLVENT SYSTEMS FOR USE IN AGRICULTURAL APPLICATIONS
An inhibitor composition contains a urease inhibitor (e.g., alkyl thiophosphoric triamide) and a nitrification inhibitor (e.g., a natural nitrification inhibitor such as neem oil and the like), solubilized in a liquid medium comprising at least one organic solvent and, optionally, at least one stabilizer, useful in making fertilizer compositions (e.g., urea prill coatings) and in methods of fertilizing target plants.
ALKYL THIOPHOSPHORIC TRIAMIDE AND NEEM OIL SOLVENT SYSTEMS FOR USE IN AGRICULTURAL APPLICATIONS
An inhibitor composition contains a urease inhibitor (e.g., alkyl thiophosphoric triamide) and a nitrification inhibitor (e.g., a natural nitrification inhibitor such as neem oil and the like), solubilized in a liquid medium comprising at least one organic solvent and, optionally, at least one stabilizer, useful in making fertilizer compositions (e.g., urea prill coatings) and in methods of fertilizing target plants.
METHOD AND ARRANGEMENT FOR WASTEWATER TREATMENT
The invention relates to a method and an arrangement for wastewater treatment, in which at least portions of the sewage sludge contained in the wastewater (0) are subjected to a hydrolysis (8). The hydrolysis (8) is carried out as a thermal hydrolysis. After the hydrolysis step (8), a drying process is (19) carried out. The drying process (19) is a process operating with positive pressure in the steam region. At least parts of the steam resulting from the drying process (19), which operates with positive pressure, are fed (20) to the portions of the sewage sludge in the thermal hydrolysis (8).
METHOD AND ARRANGEMENT FOR WASTEWATER TREATMENT
The invention relates to a method and an arrangement for wastewater treatment, in which at least portions of the sewage sludge contained in the wastewater (0) are subjected to a hydrolysis (8). The hydrolysis (8) is carried out as a thermal hydrolysis. After the hydrolysis step (8), a drying process is (19) carried out. The drying process (19) is a process operating with positive pressure in the steam region. At least parts of the steam resulting from the drying process (19), which operates with positive pressure, are fed (20) to the portions of the sewage sludge in the thermal hydrolysis (8).
NOVEL PLANT FUNCTIONAL ACTIVATED NANO VACC-FERTILICEUTICAL, AND METHODS OF PREPARATION, FORMULATION, DILUTION, AND USE THEREOF
The present invention provides compositions comprising chitooligosaccharides, methods for preparation and use thereof, including for example methods of stimulating the production of significant substances in plants. Functional Activated Nano Vacc-Fertiliceutical for Plant is used to stimulate significant substance production in plant (foliage plant, fruit tree, and flowering plant).
NOVEL PLANT FUNCTIONAL ACTIVATED NANO VACC-FERTILICEUTICAL, AND METHODS OF PREPARATION, FORMULATION, DILUTION, AND USE THEREOF
The present invention provides compositions comprising chitooligosaccharides, methods for preparation and use thereof, including for example methods of stimulating the production of significant substances in plants. Functional Activated Nano Vacc-Fertiliceutical for Plant is used to stimulate significant substance production in plant (foliage plant, fruit tree, and flowering plant).
Biofertilizer formulation from algae and related methods
A biofertilizer is disclosed that include specific formulations of algae biomass and a mycorrhizal fungus. This biofertilizer may be a useful way of utilizing algae biomass created for carbon sequestration purposes for a productive agricultural purpose. The combination of algae biomass and mycorrhizal fungus may provide advantageous effects to a crop, as the algae may be a nutrient source for both the crop itself and also for the mycorrhizal fungus that allows the fungus to grow and form a mycorrhizal relationship with the root system of the crop. The biofertilizer may be pelletized with rice hull filler and have a specific range of moisture content, so as to be compatible to agricultural fertilizer delivery equipment. Methods of manufacturing the pelletize biofertilizer are also provided.
Biofertilizer formulation from algae and related methods
A biofertilizer is disclosed that include specific formulations of algae biomass and a mycorrhizal fungus. This biofertilizer may be a useful way of utilizing algae biomass created for carbon sequestration purposes for a productive agricultural purpose. The combination of algae biomass and mycorrhizal fungus may provide advantageous effects to a crop, as the algae may be a nutrient source for both the crop itself and also for the mycorrhizal fungus that allows the fungus to grow and form a mycorrhizal relationship with the root system of the crop. The biofertilizer may be pelletized with rice hull filler and have a specific range of moisture content, so as to be compatible to agricultural fertilizer delivery equipment. Methods of manufacturing the pelletize biofertilizer are also provided.
Soluble fertilizer formulation and method for use thereof
A fertilizer including a growth enhancing component, in at least one example a co-polymer of fulvic acid and poly-metallic humates is present in the amount of from about 80% to about 90% by weight, based on a total weight of the fertilizer; a plurality of elements present in the amount of from about 3% to about 7% by weight, based on the total weight of the fertilizer; and one or more secondary nutrients, micronutrients, and biologically active heteromolecular trace-metal complexes present in the amount of from about 3% to about 10% by weight, based on the total weight of the fertilizer.
Soluble fertilizer formulation and method for use thereof
A fertilizer including a growth enhancing component, in at least one example a co-polymer of fulvic acid and poly-metallic humates is present in the amount of from about 80% to about 90% by weight, based on a total weight of the fertilizer; a plurality of elements present in the amount of from about 3% to about 7% by weight, based on the total weight of the fertilizer; and one or more secondary nutrients, micronutrients, and biologically active heteromolecular trace-metal complexes present in the amount of from about 3% to about 10% by weight, based on the total weight of the fertilizer.