A01N47/10

PRODUCTION OF ENCAPSULATED NANOPARTICLES AT COMMERCIAL SCALE

The present invention relates to methods for producing particles of a biologically active material using dry milling processes as well as compositions comprising such materials, medicaments produced using said biologically active materials in particulate form and/or compositions, and to methods of treatment of an animal, including man, using a therapeutically effective amount of said biologically active materials administered by way of said medicaments.

SYNTHETIC POLYMER FILM WHOSE SURFACE HAS MICROBICIDAL ACTIVITY, MULTILAYER STRUCTURE HAVING SYNTHETIC POLYMER FILM, STERILIZATION METHOD WITH THE USE OF SURFACE OF SYNTHETIC POLYMER FILM, METHOD FOR REACTIVATING SURFACE OF SYNTHETIC POLYMER FILM, MOLD FOR PRODUCTION OF SYNTHETIC POLYMER FILM, AND MOLD MANUFACTURING METHOD

A synthetic polymer film (34A), (34B) having a surface which has a plurality of first raised portions (34Ap), (34Bp), wherein a two-dimensional size of the plurality of first raised portions (34Ap), (34Bp) is in a range of more than 20 nm and less than 500 nm when viewed in a normal direction of the synthetic polymer film (34A), (34B); and the surface has a microbicidal effect.

SYNTHETIC POLYMER FILM WHOSE SURFACE HAS MICROBICIDAL ACTIVITY, MULTILAYER STRUCTURE HAVING SYNTHETIC POLYMER FILM, STERILIZATION METHOD WITH THE USE OF SURFACE OF SYNTHETIC POLYMER FILM, METHOD FOR REACTIVATING SURFACE OF SYNTHETIC POLYMER FILM, MOLD FOR PRODUCTION OF SYNTHETIC POLYMER FILM, AND MOLD MANUFACTURING METHOD

A synthetic polymer film (34A), (34B) having a surface which has a plurality of first raised portions (34Ap), (34Bp), wherein a two-dimensional size of the plurality of first raised portions (34Ap), (34Bp) is in a range of more than 20 nm and less than 500 nm when viewed in a normal direction of the synthetic polymer film (34A), (34B); and the surface has a microbicidal effect.

Synthetic polymer film whose surface has microbicidal activity, multilayer structure having synthetic polymer film, sterilization method with the use of surface of synthetic polymer film, method for reactivating surface of synthetic polymer film, mold for production of synthetic polymer film, and mold manufacturing method

A synthetic polymer film (34A), (34B) having a surface which has a plurality of first raised portions (34Ap), (34Bp), wherein a two-dimensional size of the plurality of first raised portions (34Ap), (34Bp) is in a range of more than 20 nm and less than 500 nm when viewed in a normal direction of the synthetic polymer film (34A), (34B); and the surface has a microbicidal effect.

Synthetic polymer film whose surface has microbicidal activity, multilayer structure having synthetic polymer film, sterilization method with the use of surface of synthetic polymer film, method for reactivating surface of synthetic polymer film, mold for production of synthetic polymer film, and mold manufacturing method

A synthetic polymer film (34A), (34B) having a surface which has a plurality of first raised portions (34Ap), (34Bp), wherein a two-dimensional size of the plurality of first raised portions (34Ap), (34Bp) is in a range of more than 20 nm and less than 500 nm when viewed in a normal direction of the synthetic polymer film (34A), (34B); and the surface has a microbicidal effect.

Coating of Clay Micro-tubes on Surfaces of Hair and Natural Fibers
20190125637 · 2019-05-02 ·

A hair coloring mixture including a carrier liquid with alumino-silicate micro-tubes having a hair dye agent loaded into the lumen of the micro-tubes. The micro-tubes may be present in the carrier liquid in a concentration of between about 5 mg/ml and about 50 mg/ml, while the mixture will have a pH of between about 4 and about 7.

Coating of Clay Micro-tubes on Surfaces of Hair and Natural Fibers
20190125637 · 2019-05-02 ·

A hair coloring mixture including a carrier liquid with alumino-silicate micro-tubes having a hair dye agent loaded into the lumen of the micro-tubes. The micro-tubes may be present in the carrier liquid in a concentration of between about 5 mg/ml and about 50 mg/ml, while the mixture will have a pH of between about 4 and about 7.

PESTICIDE COMPOSITION COMPRISING A TETRAZOLYLOXIME DERIVATIVE AND A FUNGICIDE OR AN INSECTICIDE ACTIVE SUBSTANCE

The present invention relates to a pesticide composition intended for protecting plants, crops or seeds against fungal diseases or insect damages, and the corresponding methods of protection by application of the said composition. More precisely, the subject of the present invention is a pesticide composition based on a tetrazolyloxime derivative and a fungicide or an insecticide active substance or compound.

PESTICIDE COMPOSITION COMPRISING A TETRAZOLYLOXIME DERIVATIVE AND A FUNGICIDE OR AN INSECTICIDE ACTIVE SUBSTANCE

The present invention relates to a pesticide composition intended for protecting plants, crops or seeds against fungal diseases or insect damages, and the corresponding methods of protection by application of the said composition. More precisely, the subject of the present invention is a pesticide composition based on a tetrazolyloxime derivative and a fungicide or an insecticide active substance or compound.

CYANOBACTERIUM TREATED MONOCOT PLANT SEEDS AND RELATED METHODS
20190090410 · 2019-03-28 ·

Monocot seeds treated with various cyanobacterium compositions, methods of making the treated seeds, and methods of using the seeds to improve monocot plant growth, biomass, nitrogen uptake, nutrient uptake, lateral root growth, lateral root hair growth, vertical root growth, root branching and/or yield are provided.