Patent classifications
B65F7/00
WASTE STORAGE DEVICE
A waste storage device is provided comprising a waste storage compartment for storing waste and a lid. The device further comprises a dispenser for dispensing an agent inside the waste storage device and an actuator arranged to activate the dispenser. A waste cartridge is also provided comprising a relatively rigid upper portion and a relatively flexible lower portion. The relatively flexible lower portion is arranged for storing waste items and the relatively rigid upper portion is arranged to be folded about an axis in a direction substantially towards the relatively flexible lower portion of the waste cartridge.
Waste containers with bag trapping structure
Waste container includes a base defining a waste-receiving compartment, and an insert supported on the base and adapted to engage a peripheral edge of a bag that extends into the compartment while maintaining an opening of the bag unobstructed. The insert has at least one bag-engagement edge and possibly up to four such edges. A movable closure component has a first engagement position in which the closure component engages with the insert to press the bag when present against the at least one bag-engagement edge of the insert, and a second non-engagement position in which the closure component is separated from the at least one bag-engagement edge of the insert. A lid is preferably attached to the base and movable between a first, closed position covering the opening of the bag and a second, open position in which it does not obstruct the opening of the bag.
Vacuum canister system and method
A system includes a vacuum canister combinable as a unit with a segregated trash bin. The vacuum canister is connected to a vacuum motor for drawing fines and particulates to the vacuum canister. The segregated trash bin retains refuse separate from the fines and particulates of the vacuum canister. The vacuum canister sealingly contains the fines and particulates from vacuuming. Debris larger than the vacuumed fines and particulates is depositable in the segregated trash bin separated from the fines and particulates.
Vacuum canister system and method
A system includes a vacuum canister combinable as a unit with a segregated trash bin. The vacuum canister is connected to a vacuum motor for drawing fines and particulates to the vacuum canister. The segregated trash bin retains refuse separate from the fines and particulates of the vacuum canister. The vacuum canister sealingly contains the fines and particulates from vacuuming. Debris larger than the vacuumed fines and particulates is depositable in the segregated trash bin separated from the fines and particulates.
Device for disinfecting of cleaning of a household rubbish container and the method for disinfecting or cleaning such a container
In at least one embodiment, a container includes an opening for the deposition of rubbish therein and a cleaning or disinfecting device configured to provide a cleaning or disinfecting fluid inside the container. The cleaning or disinfecting device includes a delivery device inside the container configured to deliver a dose of fluid after an inclination of the container and then returning the container to a normal position of use.
Device for disinfecting of cleaning of a household rubbish container and the method for disinfecting or cleaning such a container
In at least one embodiment, a container includes an opening for the deposition of rubbish therein and a cleaning or disinfecting device configured to provide a cleaning or disinfecting fluid inside the container. The cleaning or disinfecting device includes a delivery device inside the container configured to deliver a dose of fluid after an inclination of the container and then returning the container to a normal position of use.
SIDE-MOUNTED GARBAGE BIN CLEANING SYSTEM
A vehicle mounted garbage bin cleaning system including power takeoff includes a pair of arms configured for lifting a garbage bin, the arms rotatably coupled to a mount on a side of a vehicle, a hopper configured for accepting the garbage bin when the arms lift the garbage bin into the hopper, a spray rod extending upwards from the hopper and that sprays a water jet to clean an interior of the garbage bin, a spray rod extending upwards from the hopper and that sprays a water jet to clean an exterior of the garbage bin, and a power takeoff driven pressure washing system that uses a mechanical means to drive a pressure washer pump, and wherein the spray rods are fluidically coupled with the pressure washer pump.
CONTAINER WASHER LIFTER FOR REAR LOAD VEHICLE
A container washer lifter for a rear load vehicle is provided that includes a base having a cross member having first and second ends; and a commercial refuse collection container lifter connected to the cross member and comprising a cross bar assembly movable between an upright first position rearward of and below the cross member and an inverted second position above the cross member, with the cross bar assembly further comprising first and second trunnion bar lock assemblies that selectively retain a trunnion bar of a commercial refuse collection container. The lifter optionally also includes a residential refuse collection container lifter.
Flexible bag assembly
A flexible bag assembly having at least one layer of a flexible material that permits a UV light source to penetrate through to sterilize bacterial contents on an interior of the flexible bag assembly. Transmission of the UV light source is maximized through the flexible material and to enhance a kill rate of bacteria within the interior of the flexible bag assembly. A bio-assimilator may be integrated into a composition of the flexible bag assembly to facilitate biodegradation by anaerobic degradation leaving no microplastic remnants.
Flexible bag assembly
A flexible bag assembly having at least one layer of a flexible material that permits a UV light source to penetrate through to sterilize bacterial contents on an interior of the flexible bag assembly. Transmission of the UV light source is maximized through the flexible material and to enhance a kill rate of bacteria within the interior of the flexible bag assembly. A bio-assimilator may be integrated into a composition of the flexible bag assembly to facilitate biodegradation by anaerobic degradation leaving no microplastic remnants.