Patent classifications
A01M1/10
Hermetia illucens frass production and use in plant nutrition and pest management
Apparatus and methods are provided for producing insecticidal black soldier fly (BSF; Hermetia illucens) frass, and using the frass for nutritional and insect pest control activity in soils and/or on foliage. The methods include processes for using BSF frass to reduce damage to crops caused by wireworms (i.e., click beetle larvae, in the Elateridae family) and/or other Coleopteran (i.e., beetle) insect pests. Also provided is an insect trap comprising BSF frass.
DOMESTIC INSECT TRAP
The present invention consists of a collapsible trap for insects, particularly male and female Aedes aegypti mosquitoes, the trap preferably being made of card and designed for use in a domestic or commercial environment. Specifically, the present invention discloses a foldable trap for insects, particularly male and female Aedes aegypti mosquitoes, the trap being formed by a hollow, prismatic main body which comprises an upper cover and a lower cover. The hollow, prismatic main body also comprises a translucent window in one of the sides, the internal surface of which translucent window is impregnated with an adhesive for insects. An attractive mosquito bait is located inside the hollow main body. The mosquitoes, attracted by the bait, enter the trap through at least one curved interior conduit which is located inside the hollow main body and has an entrance in the upper cover and an exit inside the trap.
DOMESTIC INSECT TRAP
The present invention consists of a collapsible trap for insects, particularly male and female Aedes aegypti mosquitoes, the trap preferably being made of card and designed for use in a domestic or commercial environment. Specifically, the present invention discloses a foldable trap for insects, particularly male and female Aedes aegypti mosquitoes, the trap being formed by a hollow, prismatic main body which comprises an upper cover and a lower cover. The hollow, prismatic main body also comprises a translucent window in one of the sides, the internal surface of which translucent window is impregnated with an adhesive for insects. An attractive mosquito bait is located inside the hollow main body. The mosquitoes, attracted by the bait, enter the trap through at least one curved interior conduit which is located inside the hollow main body and has an entrance in the upper cover and an exit inside the trap.
INSECT TRAP
In some implementations, an insect trap includes a plurality of individual cells, with each of the cells being configured to trap very few, and in some instances a single flying insect. Each cell defines a cavity and may be provided with an independently operable door to selectively close the cavity. One or more sensors may sense the presence of an insect to be trapped.
INSECT TRAP
In some implementations, an insect trap includes a plurality of individual cells, with each of the cells being configured to trap very few, and in some instances a single flying insect. Each cell defines a cavity and may be provided with an independently operable door to selectively close the cavity. One or more sensors may sense the presence of an insect to be trapped.
Bug Trap With Flexible Two-Piece Handle
An apparatus for catching bugs is provided which includes a catch box having an interior region and an elongated handle attached to the catch box. The elongated handle includes a flexible tube member and a flexible rod member disposed within the flexible tube member. The apparatus includes a trap adapted to move back and forth within the interior region of the catch box. The flexible tube member is attached to the catch box and the flexible rod member is attached to the trap. The flexible rod member is adapted to provide back and forth movement of the trap within the interior region of the catch box to thereby define a closed chamber in the interior of the box for trapping bugs.
Bug Trap With Flexible Two-Piece Handle
An apparatus for catching bugs is provided which includes a catch box having an interior region and an elongated handle attached to the catch box. The elongated handle includes a flexible tube member and a flexible rod member disposed within the flexible tube member. The apparatus includes a trap adapted to move back and forth within the interior region of the catch box. The flexible tube member is attached to the catch box and the flexible rod member is attached to the trap. The flexible rod member is adapted to provide back and forth movement of the trap within the interior region of the catch box to thereby define a closed chamber in the interior of the box for trapping bugs.
Insect Trap
An insect trap includes an exothermic body, and a layered body. The exothermic body is configured to include exothermic powder enclosed in an inner bag that is air permeable; the exothermic powder contains iron powder that releases heat when oxidized. The layered body is configured with layers of plate-like elements and includes gaps as a pathway of entry for an insect pest. A housing space to house the exothermic body is arranged inside the layered body. The layered body and the inner bag are made of a biodegradable raw material.
Insect Trap
An insect trap includes an exothermic body, and a layered body. The exothermic body is configured to include exothermic powder enclosed in an inner bag that is air permeable; the exothermic powder contains iron powder that releases heat when oxidized. The layered body is configured with layers of plate-like elements and includes gaps as a pathway of entry for an insect pest. A housing space to house the exothermic body is arranged inside the layered body. The layered body and the inner bag are made of a biodegradable raw material.
Pet Feeder with Replaceable Insect Trap
A pet feeder is provided to redirect pests such as insects and bugs attracted to the scent of exposed pet food, trap the redirected pests, and further prevent untrapped pests from contaminating any exposed pet food. The feeder may comprise a hollow holder configured to suspend a portion of a pet food receptacle in the hollow space. Such holder may comprise a plurality of apertures disposed thereon, and UV lights and attractive scents may be provided to redirect the pests from the pet food by attracting them into the hollow interior of the holder. Then, the pests may be trapped in the hollow interior by way of replaceable traps such as flypaper. Additionally, fans may be disposed on the holder and configured to define a forceful barrier that prevents any untrapped pests from contaminating pet food by the entering a space immediately above the pet feeder.