A01G24/50

Geotextile-based structure for vegetative growth enhancement and erosion resistance

This application discloses a geotextile-based structure for soil stabilization, erosion control, and vegetation-growth enhancement that is made from a cage having a hollow interior lined with a geotextile fabric designed to retain fine materials, which cage is attached to a geotextile mat capable of supporting vegetation.

Geotextile-Based Structure for Vegetative Growth Enhancement and Erosion Resistance

This application discloses a geotextile-based structure for soil stabilization, erosion control, and vegetation-growth enhancement that is made from a cage having a hollow interior lined with a geotextile fabric designed to retain fine materials, which cage is attached to a geotextile mat capable of supporting vegetation.

Geotextile-Based Structure for Vegetative Growth Enhancement and Erosion Resistance

This application discloses a geotextile-based structure for soil stabilization, erosion control, and vegetation-growth enhancement that is made from a cage having a hollow interior lined with a geotextile fabric designed to retain fine materials, which cage is attached to a geotextile mat capable of supporting vegetation.

Flexible Hydroponics Container
20190045731 · 2019-02-14 ·

The present invention relates generally to the field of hydroponics and to apparatus and methods for the growing of plants in a water-based or soil-free environment. A flexible container (2) for growing plants hydroponically is provided, comprising one or more openings (1) for receiving plantlets (16) and/or seeds (15) and one or more openings (1, 5, 6, 7) for receiving a nutrient and/or water (5) and/or oxygen supply (6, 7), which openings may be the same or different to the openings of (i).

Flexible Hydroponics Container
20190045731 · 2019-02-14 ·

The present invention relates generally to the field of hydroponics and to apparatus and methods for the growing of plants in a water-based or soil-free environment. A flexible container (2) for growing plants hydroponically is provided, comprising one or more openings (1) for receiving plantlets (16) and/or seeds (15) and one or more openings (1, 5, 6, 7) for receiving a nutrient and/or water (5) and/or oxygen supply (6, 7), which openings may be the same or different to the openings of (i).

TREE-PLANTING STRUCTURE DEVICE
20190029188 · 2019-01-31 ·

A tree-planting structure device includes a securing net, an anchor, a plurality of stacking pouches and hooks. The securing net is formed in a size capable of covering a part of a guard, the ground, or a building outer wall and having an arrangement of a plurality of meshes. The anchor is coupled to the guard, the ground, or the building outer wall in order to fix a position of the securing net. The plurality of stacking pouches includes sacks coupled to the meshes for forming the securing net and respectively having plant growing soil contained therein. The stacking pouches are stacked while coming in contact with the securing net. The hooks include members for coupling the stacking pouches to the meshes of the securing net.

GROW MEDIA SYSTEMS, APPARATUSES, AND METHODS
20190029192 · 2019-01-31 ·

A grow media includes a layered grow media including a mechanical support structure layer and a wicking structure layer. The mechanical support structure layer and the wicking structure layer are coupled together in a vertical configuration.

GROW MEDIA SYSTEMS, APPARATUSES, AND METHODS
20190029192 · 2019-01-31 ·

A grow media includes a layered grow media including a mechanical support structure layer and a wicking structure layer. The mechanical support structure layer and the wicking structure layer are coupled together in a vertical configuration.

METHOD FOR MASS-PRODUCING PLANTS, MASS-PRODUCTION FACILITY, AND CULTURE BAG USED IN SAID METHOD AND FACILITY

A method for mass-producing plants includes a step of accommodating a liquid cultivation medium and a plant material into each of a plurality of culture bags that are configured so as to be capable of standing up without assistance by being opened up from a folded state, sealing openings of the culture bags, and arranging the sealed culture bags in a row in a predetermined cultivation space, and a step of cultivating the plant material within each of the plurality of culture bags with an interior of each of the plurality of culture bags arranged in a row in the cultivation space being maintained at an environment appropriate for cultivation of the plant material.

METHOD FOR MASS-PRODUCING PLANTS, MASS-PRODUCTION FACILITY, AND CULTURE BAG USED IN SAID METHOD AND FACILITY

A method for mass-producing plants includes a step of accommodating a liquid cultivation medium and a plant material into each of a plurality of culture bags that are configured so as to be capable of standing up without assistance by being opened up from a folded state, sealing openings of the culture bags, and arranging the sealed culture bags in a row in a predetermined cultivation space, and a step of cultivating the plant material within each of the plurality of culture bags with an interior of each of the plurality of culture bags arranged in a row in the cultivation space being maintained at an environment appropriate for cultivation of the plant material.