A01G13/21

Modular gardening systems
12329081 · 2025-06-17 · ·

A modular gardening system (MGS) for plant growing, the system comprising a garden bed for containing soil that is configured to grow at least one plant therein; an elevated rolling stand module supporting the garden bed; a bed cover system module disposed on top of the garden bed; and a mister irrigation module providing irrigation to the plant.

APPARATUS AND METHOD OF CREATING WETLANDS IN HOT ARID ENVIRONMENTS
20250194457 · 2025-06-19 · ·

A method of creating a wetland in a hot, arid, location includes identifying or establishing a channel of flowing water at the arid location, and installing therein a mat containing seeds, and/or seedlings, and a super absorbent polymer (SAP). Water from the channel is applied to hydrate the SAP, and both edible and dam-constructing vegetation is allowed to grow and mature from the seeds and/or seedlings. Beavers are then introduced into the arid location, which eat the edible vegetation and use the dam-constructing vegetation to construct at least one dam across the channel of flowing water, thereby forming a wetland that further encourages both the vegetation and the beavers to propagate. A perforated, transparent or translucent cover sheet can be placed on or suspended above the mat. A water barrier can be placed below the mat. The wetland vegetation cools and humidifies the environment by transpiration of water.

APPARATUS AND METHOD OF CREATING WETLANDS IN HOT ARID ENVIRONMENTS
20250194457 · 2025-06-19 · ·

A method of creating a wetland in a hot, arid, location includes identifying or establishing a channel of flowing water at the arid location, and installing therein a mat containing seeds, and/or seedlings, and a super absorbent polymer (SAP). Water from the channel is applied to hydrate the SAP, and both edible and dam-constructing vegetation is allowed to grow and mature from the seeds and/or seedlings. Beavers are then introduced into the arid location, which eat the edible vegetation and use the dam-constructing vegetation to construct at least one dam across the channel of flowing water, thereby forming a wetland that further encourages both the vegetation and the beavers to propagate. A perforated, transparent or translucent cover sheet can be placed on or suspended above the mat. A water barrier can be placed below the mat. The wetland vegetation cools and humidifies the environment by transpiration of water.

DEVICE FOR FORMING A CANOPY
20250194475 · 2025-06-19 · ·

The invention relates to a device for forming a canopy over a region in the outdoors, comprising a flat element and a support assembly with supports, wherein the support assembly can be anchored to a ground surface of the region, and wherein the flat element supported by the support assembly functions to form an areal protective canopy over the region, wherein a section of the flat element extends along a ridge region of the protective canopy. According to the invention, a solar cell module is provided, which is connected to the flat element, such that, with light irradiation on the solar cell module, light energy can be converted into electrical energy, wherein a quick-closure mechanism comprising zip-closure mechanism with a zip-closure unit are provided, in order to detachably arrange a solar cell module on the flat element using the zip closure mechanism.

DEVICE FOR FORMING A CANOPY
20250194475 · 2025-06-19 · ·

The invention relates to a device for forming a canopy over a region in the outdoors, comprising a flat element and a support assembly with supports, wherein the support assembly can be anchored to a ground surface of the region, and wherein the flat element supported by the support assembly functions to form an areal protective canopy over the region, wherein a section of the flat element extends along a ridge region of the protective canopy. According to the invention, a solar cell module is provided, which is connected to the flat element, such that, with light irradiation on the solar cell module, light energy can be converted into electrical energy, wherein a quick-closure mechanism comprising zip-closure mechanism with a zip-closure unit are provided, in order to detachably arrange a solar cell module on the flat element using the zip closure mechanism.

Wind-resistant adjustable shade shelter
12345064 · 2025-07-01 ·

A portable shade shelter has a plurality of canopies including at least a first canopy and a second canopy. The first canopy is disposed over the second canopy, and the first canopy is capable of being spaced apart from the second canopy in a vertical direction such that air is capable of flowing between the first canopy and the second canopy. Each of the first canopy and the second canopy includes a plurality of openings configured to permit air and light to pass through the respective first canopy and second canopy.

Apparatus and method of creating wetlands in hot arid environments
12349618 · 2025-07-08 · ·

A method of creating a wetland in a hot, arid, location includes identifying or establishing a channel of flowing water at the arid location, and installing therein a mat containing seeds, and/or seedlings, and a super absorbent polymer (SAP). Water from the channel is applied to hydrate the SAP, and both edible and dam-constructing vegetation is allowed to grow and mature from the seeds and/or seedlings. Beavers are then introduced into the arid location, which eat the edible vegetation and use the dam-constructing vegetation to construct at least one dam across the channel of flowing water, thereby forming a wetland that further encourages both the vegetation and the beavers to propagate. A perforated, transparent or translucent cover sheet can be placed on or suspended above the mat. A water barrier can be placed below the mat. The wetland vegetation cools and humidifies the environment by transpiration of water.

Apparatus and method of creating wetlands in hot arid environments
12349618 · 2025-07-08 · ·

A method of creating a wetland in a hot, arid, location includes identifying or establishing a channel of flowing water at the arid location, and installing therein a mat containing seeds, and/or seedlings, and a super absorbent polymer (SAP). Water from the channel is applied to hydrate the SAP, and both edible and dam-constructing vegetation is allowed to grow and mature from the seeds and/or seedlings. Beavers are then introduced into the arid location, which eat the edible vegetation and use the dam-constructing vegetation to construct at least one dam across the channel of flowing water, thereby forming a wetland that further encourages both the vegetation and the beavers to propagate. A perforated, transparent or translucent cover sheet can be placed on or suspended above the mat. A water barrier can be placed below the mat. The wetland vegetation cools and humidifies the environment by transpiration of water.

APPARATUS AND METHOD FOR GROWING VEGETATION IN HOT ARID COASTAL ENVIRONMENTS
20250261580 · 2025-08-21 · ·

An apparatus and method for growing vegetation in a hot, arid, coastal location includes installing, at or below grade, a mat containing seeds, and/or seedlings, and a super absorbent polymer (SAP), the mat being cooperative with a thermally conductive network in thermal communication with an evaporative panel that is cooled by seawater evaporation, thereby drawing heat away from the mat. A seawater reservoir can collect seawater draining from the cooling panel. A pumping system can recirculate the collected seawater to the cooling panel, thereby converting the seawater into brine, which can be periodically transferred to a drying tray for production of salt. A perforated, transparent or translucent cover sheet can be placed on or suspended above the mat. A water barrier can be placed below the mat. The cooling panel can be incorporated into a wall of a cooling greenhouse that surrounds and contains the mat.

APPARATUS AND METHOD FOR GROWING VEGETATION IN HOT ARID COASTAL ENVIRONMENTS
20250261580 · 2025-08-21 · ·

An apparatus and method for growing vegetation in a hot, arid, coastal location includes installing, at or below grade, a mat containing seeds, and/or seedlings, and a super absorbent polymer (SAP), the mat being cooperative with a thermally conductive network in thermal communication with an evaporative panel that is cooled by seawater evaporation, thereby drawing heat away from the mat. A seawater reservoir can collect seawater draining from the cooling panel. A pumping system can recirculate the collected seawater to the cooling panel, thereby converting the seawater into brine, which can be periodically transferred to a drying tray for production of salt. A perforated, transparent or translucent cover sheet can be placed on or suspended above the mat. A water barrier can be placed below the mat. The cooling panel can be incorporated into a wall of a cooling greenhouse that surrounds and contains the mat.