A01G24/22

TREATMENT METHOD FOR A RIVER SYSTEM IN A RESERVOIR AREA AND TREATMENT SYSTEM

A treatment method for a river system in a reservoir area, comprising: S1. determining whether a time from a current date to the rainy season is less than a preset duration; S2. moving a pressure sensor upward; S3. determining whether the pressure data meets corresponding conditions; S4. determining whether a duration of the pressure data is less than the preset duration; S5. determining whether an interval between the current time and the time for collecting pressure/nitrogen and phosphorus is greater than a preset number of days; S6. acquiring an image information of a river bottom, and sending it to neural network model for identification to obtain a depth of a sludge; S7. determining whether the depth of a sludge has reached a dredging depth, if so, starting a sludge pump to clean up; S8. collecting nitrogen and phosphorus concentration, and removing nitrogen and phosphorus when the concentration exceeds a standard.

TREATMENT METHOD FOR A RIVER SYSTEM IN A RESERVOIR AREA AND TREATMENT SYSTEM

A treatment method for a river system in a reservoir area, comprising: S1. determining whether a time from a current date to the rainy season is less than a preset duration; S2. moving a pressure sensor upward; S3. determining whether the pressure data meets corresponding conditions; S4. determining whether a duration of the pressure data is less than the preset duration; S5. determining whether an interval between the current time and the time for collecting pressure/nitrogen and phosphorus is greater than a preset number of days; S6. acquiring an image information of a river bottom, and sending it to neural network model for identification to obtain a depth of a sludge; S7. determining whether the depth of a sludge has reached a dredging depth, if so, starting a sludge pump to clean up; S8. collecting nitrogen and phosphorus concentration, and removing nitrogen and phosphorus when the concentration exceeds a standard.

PROCESSES AND SYSTEMS FOR INCREASING DRY MATTER IN HYDROPONICALLY GROWN CELLULOSIC MATERIALS
20230157229 · 2023-05-25 · ·

A system, method, and apparatus for increasing dry matter in plants is disclosed. A grower system for growing plants and crops provides an aerobic environment by controlling a plurality of environmental factors that decrease environmental stresses surrounding the plants or crops. The decrease in environmental stresses increases hydrolytic enzyme activity and releases additional hydrolytic enzymes. The hydrolytic enzymes breakdown a plurality of complex storage molecules of the plant or crop into simple storage molecules, increasing adenosine triphosphate production, given the plant more energy to increase dry matter.

PROCESSES AND SYSTEMS FOR INCREASING DRY MATTER IN HYDROPONICALLY GROWN CELLULOSIC MATERIALS
20230157229 · 2023-05-25 · ·

A system, method, and apparatus for increasing dry matter in plants is disclosed. A grower system for growing plants and crops provides an aerobic environment by controlling a plurality of environmental factors that decrease environmental stresses surrounding the plants or crops. The decrease in environmental stresses increases hydrolytic enzyme activity and releases additional hydrolytic enzymes. The hydrolytic enzymes breakdown a plurality of complex storage molecules of the plant or crop into simple storage molecules, increasing adenosine triphosphate production, given the plant more energy to increase dry matter.

Medium for tissue rapid propagation of blueberry stem segment and a method for tissue rapid propagation
20220330507 · 2022-10-20 ·

The invention discloses a medium combination for a rapid propagation medium for blueberry stein segment tissue, wherein the pre-culture medium takes the MS medium containing 2-(N-morpholine) ethanesulfonic acid as basic medium, comprising 0.1-0.5 mg/L IAA, 0.05-0.6 mg/L CPPU; the rapid culture medium takes the MS medium containing 2-(N-morpholine) ethanesulfonic acid as basic medium, comprising: 0.2-0.5 mg/L ZT; the seedling growth medium takes the MS medium containing 2-(N-morpholine) ethanesulfonic acid as basic medium, comprising: 0.1-2.0 mg/L 2-ip; and the rooting medium takes ½ MS medium as basis medium, comprising: 0.3-4.0 mg/L NAA. The invention further discloses a method of using the above medium combination to conduct rapid propagation of blueberry stein segment tissue, the propagation rate of this method is rapid.

Medium for tissue rapid propagation of blueberry stem segment and a method for tissue rapid propagation
20220330507 · 2022-10-20 ·

The invention discloses a medium combination for a rapid propagation medium for blueberry stein segment tissue, wherein the pre-culture medium takes the MS medium containing 2-(N-morpholine) ethanesulfonic acid as basic medium, comprising 0.1-0.5 mg/L IAA, 0.05-0.6 mg/L CPPU; the rapid culture medium takes the MS medium containing 2-(N-morpholine) ethanesulfonic acid as basic medium, comprising: 0.2-0.5 mg/L ZT; the seedling growth medium takes the MS medium containing 2-(N-morpholine) ethanesulfonic acid as basic medium, comprising: 0.1-2.0 mg/L 2-ip; and the rooting medium takes ½ MS medium as basis medium, comprising: 0.3-4.0 mg/L NAA. The invention further discloses a method of using the above medium combination to conduct rapid propagation of blueberry stein segment tissue, the propagation rate of this method is rapid.

Alcohol Soluble Biodegradable Compositions
20230200313 · 2023-06-29 ·

Compositions suitable for use as biodegradable coatings, comprising mixtures of naturally sourced waxes and naturally sourced crosslinkable agents. Compositions may be used to impart water resistance to a substrate, to control the release time of soil nutrients, to reduce environmental damage, and to protect seed or crop damage from high local concentrations of salts. Compositions are preferably prepared as aliphatic alcohol and thereafter may be disposed about an agronomically important substrate core or a fibrous substrate, at temperatures below about 90° C. to impart water resistance or extend the storage time.

Alcohol Soluble Biodegradable Compositions
20230200313 · 2023-06-29 ·

Compositions suitable for use as biodegradable coatings, comprising mixtures of naturally sourced waxes and naturally sourced crosslinkable agents. Compositions may be used to impart water resistance to a substrate, to control the release time of soil nutrients, to reduce environmental damage, and to protect seed or crop damage from high local concentrations of salts. Compositions are preferably prepared as aliphatic alcohol and thereafter may be disposed about an agronomically important substrate core or a fibrous substrate, at temperatures below about 90° C. to impart water resistance or extend the storage time.

VERTICAL HYDROPONIC TOWER ARRAY FIXTURE SYSTEM
20170332568 · 2017-11-23 · ·

A modular hydroponic tower array fixture system for the growth of organisms such as plants and fungi on arrays of hydroponic towers, allowing for the insertion and removal of individual towers from the array, is provided. Methods for the production of organisms such as plants and fungi using a modular hydroponic tower array fixture system are also provided herein.

AGRICULTURAL PROACTIVE AIR/SURFACE DECONTAMINATION SYSTEM AND DEVICES

A system for decontaminating/neutralizing breathable air and surfaces in an occupied enclosed space, i.e., agricultural greenhouse, includes mounting an atmospheric hydroxyl radical generator along an inside surface of the atmospheric hydroxyl radical generator having respective opposite air inlets and air outlets. The hydroxyl radical generator includes a polygonal housing supporting a plurality of spaced crystal-spliced UV optics, which are tubular, medical grade pure quartz optics to emit/irradiate ultraviolet in the nanometer wavelength/ultraviolet spectrum of between 100 and 400 nanometers for deactivating and neutralizing atmospheric chemicals and pathogens in breathable air and surfaces. The hydroxyl radicals contact the walls of the reaction chamber housing. The hydroxyl radicals become created and excited to react quickly with impurities including VOC, virus, bacteria and fungi, rendering them inactivated and neutral. The breathable air passes through the polygonal housing and is decontaminated and neutralized of impurities before entering the occupied enclosed space.