Patent classifications
C05G3/60
Microfibrillated cellulose as rheology modifier in high ionic strength agricultural formulations
Described herein, inter alia, is a concentrate including a high ionic strength liquid and a microfibrillated cellulose, and methods of making the same.
Strobilurin formulations
The present disclosure describes a formulation including a nanoparticle including a polymer-associated strobilurin compound with an average diameter of between about 1 nm and about 500 nm; wherein the polymer is a polyelectrolyte, and a dispersant or a wetting agent. The disclosure describes various formulations and formulating agents that can be included in the formulations. Additionally, the disclosures describes application to various plants and fungi as well as advantages of the disclosed formulations.
Strobilurin formulations
The present disclosure describes a formulation including a nanoparticle including a polymer-associated strobilurin compound with an average diameter of between about 1 nm and about 500 nm; wherein the polymer is a polyelectrolyte, and a dispersant or a wetting agent. The disclosure describes various formulations and formulating agents that can be included in the formulations. Additionally, the disclosures describes application to various plants and fungi as well as advantages of the disclosed formulations.
ARTHROBACTER PASCENS X-1 FOR PROMOTING GROWTH OF NODULES AND INCREASING ABUNDANCE OF PROBIOTIC MICROORGANISM POPULATIONS
An Arthrobacter pascens X-1 for promoting a growth of nodules and increasing an abundance of probiotic microorganism populations is disclosed. After the Arthrobacter pascens X-1 provided by the disclosure is applied, nutrient elements required by plants such as potassium, calcium and magnesium in rock powder are effectively released, rock erosion is accelerated to form soil, simultaneously effective nitrogen fixation of soybeans is promoted, nitrogen required for soybean growth is provided, symbiotic nitrogen fixation capability of rhizobium and host plants is obviously exerted, total weight of root nodules is promoted to be increased by 150.00%, content of hydrolyzed nitrogen is improved to be increased by 11.58%, and symbiotic nitrogen fixation capability is effectively exerted. At the same time, the relative abundance of Bradyrhizobium in the soil is increased from 0.21% to 52.47%.
Composition and related methods of manufacture and use
Described herein is a stable dry composition comprising a compound with herbicide activity located on a carrier compound and a compound with amphiphilic properties coating at least part or all of the compound with herbicide activity and carrier compound. Methods of manufacture and application of the dry composition are also described along with storage stable plant and herbicide compositions and methods of co-administration of combination plant and herbicide compositions.
Liquid clothianidin compositions and methods of their use
The present invention is directed to agricultural compositions containing clothianidin, at least one dispersant selected from the group consisting of sodium alkyl naphthalene sulfonate condensate, alkyl polyglycoside and a mixture thereof, an inorganic compound selected from the group consisting of attapulgite, magnesium aluminum silicate, silicon dioxide and aluminum oxide and glycerol. The present invention is further directed to compositions containing clothianidin, at least one dispersant selected from the group consisting of sodium alkyl naphthalene sulfonate condensate, alkyl polyglycoside and a mixture thereof, an inorganic compound selected from the group consisting of attapulgite, magnesium aluminum silicate, silicon dioxide and aluminum oxide, glycerol and at least one liquid fertilizer. The present invention is further directed to a method of protecting crop plants by mixing a composition containing clothianidin, at least one dispersant selected from the group consisting of sodium alkyl naphthalene sulfonate condensate, alkyl polyglycoside and a mixture thereof, an inorganic compound selected from the group consisting of attapulgite, magnesium aluminum silicate, silicon dioxide and aluminum oxide and glycerol with at least one liquid fertilizer and applying the mixture to the plant, an area where the plant is growing or an area where the plant is intended to grow.
Liquid clothianidin compositions and methods of their use
The present invention is directed to agricultural compositions containing clothianidin, at least one dispersant selected from the group consisting of sodium alkyl naphthalene sulfonate condensate, alkyl polyglycoside and a mixture thereof, an inorganic compound selected from the group consisting of attapulgite, magnesium aluminum silicate, silicon dioxide and aluminum oxide and glycerol. The present invention is further directed to compositions containing clothianidin, at least one dispersant selected from the group consisting of sodium alkyl naphthalene sulfonate condensate, alkyl polyglycoside and a mixture thereof, an inorganic compound selected from the group consisting of attapulgite, magnesium aluminum silicate, silicon dioxide and aluminum oxide, glycerol and at least one liquid fertilizer. The present invention is further directed to a method of protecting crop plants by mixing a composition containing clothianidin, at least one dispersant selected from the group consisting of sodium alkyl naphthalene sulfonate condensate, alkyl polyglycoside and a mixture thereof, an inorganic compound selected from the group consisting of attapulgite, magnesium aluminum silicate, silicon dioxide and aluminum oxide and glycerol with at least one liquid fertilizer and applying the mixture to the plant, an area where the plant is growing or an area where the plant is intended to grow.
Liquid clothianidin compositions and methods of their use
The present invention is directed to agricultural compositions containing clothianidin, at least one dispersant selected from the group consisting of sodium alkyl naphthalene sulfonate condensate, alkyl polyglycoside and a mixture thereof, an inorganic compound selected from the group consisting of attapulgite, magnesium aluminum silicate, silicon dioxide and aluminum oxide and glycerol. The present invention is further directed to compositions containing clothianidin, at least one dispersant selected from the group consisting of sodium alkyl naphthalene sulfonate condensate, alkyl polyglycoside and a mixture thereof, an inorganic compound selected from the group consisting of attapulgite, magnesium aluminum silicate, silicon dioxide and aluminum oxide, glycerol and at least one liquid fertilizer. The present invention is further directed to a method of protecting crop plants by mixing a composition containing clothianidin, at least one dispersant selected from the group consisting of sodium alkyl naphthalene sulfonate condensate, alkyl polyglycoside and a mixture thereof, an inorganic compound selected from the group consisting of attapulgite, magnesium aluminum silicate, silicon dioxide and aluminum oxide and glycerol with at least one liquid fertilizer and applying the mixture to the plant, an area where the plant is growing or an area where the plant is intended to grow.
SEED TREATMENT METHODS AND COMPOSITIONS FOR IMPROVING PLANT TRAITS AND YIELD
Described herein are methods and compositions for improving plant growth and other properties. The methods and compositions utilize bacteria and bacterial exudates incorporated into plant seeds for improvement of plant growth and other properties.
AGRICULTURE COMPOSITIONS AND APPLICATIONS UTILIZING MINERAL COMPOUNDS
Embodiments provide inorganic mineral chelated compositions, cobalt compounds and compositions, and treatment compositions, and methods of making and using them. Mineral chelated compositions and cobalt compounds have been shown to improve plant health, plant emergence, crop yield, and plant resistance to disease and drought. The compositions described herein can be applied directly to seeds, soil, or plants, or they can be incorporated with existing agricultural treatments and processes, reducing cost and time for farmers to implement the methods described herein. Accordingly, the compositions can be used as a seed treatment, or they can be broadcast on soil, tilled in soil, placed in-furrow, mixed with other fertilizers or chemicals, side-dressed in the field, used as foliar treatments, or combinations thereof. Such methods provide valuable micronutrients in a highly bioavailable form to plants and soil.