Plant protecting and regulating compositions – Plant growth regulating compositions – Plural active ingredients
Reexamination Certificate
2000-10-13
2002-07-09
Clardy, S. Mark (Department: 1616)
Plant protecting and regulating compositions
Plant growth regulating compositions
Plural active ingredients
C504S363000
Reexamination Certificate
active
06417140
ABSTRACT:
The present invention relates to suspension concentrates of herbicide blends wherein one herbicide in the blend has a high water solubility and one herbicide in the blend has very low water solubility.
Herbicides typically have a limited spectrum of activity, that is, a limited number of weeds that the herbicide controls. As a result, in order to obtain control of a mixed spectrum of weeds, a number of different herbicides are typically applied. This may be accomplished by applying different herbicides in a series of applications or, more often, by applying a mixture of herbicides in one application. Such mixtures are prepared by mixing the individual herbicides in a spray tank immediately prior to application or by combining the individual herbicides into a single formulation which is subsequently diluted in the spray tank prior to application.
The problem with mixing herbicides with significantly different physical/chemical properties is that they often are incompatible with each other. Such incompatibility may result in separation of the herbicides into one or more layers, crystallization of one or both of the herbicides to form an insoluble or non-suspensible mass in either a spray tank or, in the case of a formulation, the container. This problem is particularly acute when the formulation is water based rather than solvent based and one of the herbicides has a high solubility in water and one has a low solubility in water. It is even more acute when the low water soluble material has a small particle size. Water based formulations are preferred over solvent based formulations due to their reduced adverse environmental impact because of their lower content of volatile organic compounds.
Microemulsions or emulsions in water may work at low herbicide concentrations (e.g. less than 2% for the low solubility herbicide) but at higher concentrations crystal growth often occurs in the formulation and/or upon dilution with water for spraying.
I have discovered a unique combination of components which, when combined with an herbicide with water solubility less than one percent by weight and an herbicide with water solubility greater than 50 percent by weight at room temperature (ca. 25° C.), produce a stable suspension concentrate herbicide formulation. The stable suspension concentrate is a composition comprising:
a) a first herbicide;
b) a second herbicide;
c) a thickener comprising:
i) fumed silica; and
ii) gelling clay or polysaccharide gum;
d) one or more surfactants; and
e) water;
wherein:
1) the water solubility of the first herbicide is less than one percent, preferably less than 0.5 percent, more preferably less than 0.1 percent, most preferably less than 0.01 percent;
2) the water solubility of the second herbicide is greater than 50 percent, preferably greater than 70 percent, more preferably greater than 80 percent;
3) the particle size of the first herbicide is less than 25 microns (“&mgr;”) in size, preferably less than 10&mgr;, more preferably less than 5&mgr;, most preferably from 1 to 2&mgr;;
4) the viscosity of the composition is from 200 to 1500 centipoise; and
5) the composition is water dilutable.
For purposes of this invention, all percentages expressed herein are percent by weight, unless otherwise specified.
This composition overcomes the separation problems often encountered when mixing an aqueous suspension of a material with low water solubility and small particle size with an aqueous solution of a material with high water solubility, particularly when the aqueous solution has a high electrolyte concentration. The composition of the invention is a stable suspension concentrate formulation comprised of particles of the first herbicide which are less than 25&mgr;. Since the efficacy of pesticides is often related to the size of the pesticide particle, small particle size ensures that the biological activity of the first herbicide approaches that of a solvent-based emulsifiable concentrate of the herbicide. For this reason, there is a need to prepare pesticide formulations in which the pesticide has a small particle size. When water is used as the solvent there is an added benefit of eliminating organic solvents. Small particle size also ensures high suspensibility of the solid in the solution concentrate, typically greater than 90%. For purposes of this invention, particle size is calculated as the volume average particle size, determined either optically, with a scanning electron microscope, or using a commercial particle sizer, such as a Coulter LS™ particle sizer (Coulter Instruments).
The small particle size first herbicide may be prepared by milling larger particles using any one or more conventional milling techniques such as, for example, air milling, hammer milling, crushing (jaw, gyratory cone, roller, impact), impact milling (stationary plates), tumble milling with grinding media (balls, rods), roller milling (feeding through a small gap), pin milling, jet air milling (spiral, opposed, fluidized). For herbicides which melt at temperatures between 50° C. and 120° C. and are crystalline such as, for example, oxyfluorfen, a continuous melt emulsification-crystallization method is preferred. Preferably, the first herbicide is oxyfluorfen, fluoroglycofen ethyl, diuron, simizine, or azafenidin Most preferably, the first herbicide is oxyfluorfen. The first herbicide preferably comprises from 0.1 to 50 percent of the composition; more preferably 1 to 25 percent, even more preferably 1 to 5 percent, most preferably 1 to 3 percent.
The second herbicide has high water solubility. Preferably, the second herbicide is a water soluble salt such as, for example, salts of dicamba, acifluorfen, 2,4-dichlorophenoxyacetic acid, dalapon, dichlorprop-P, mecoprop, glufosinate, glyphosate, MCPB, fenoprop (silvex), trichloroacetic acid, sulfosate, or salts such as paraquat. Preferably the salt is a sodium, potassium, amino, monoalkylamino, or dialkylamino salt. For purposes of this invention “alkyl” means C
1
-C
4
straight or branched chain alkyl. More preferably the salt is a sodium or alkylamino salt. Preferably the second herbicide is a salt of glyphosate or glufosinate. Most preferably, the second herbicide is the isopropylamine salt of glyphosate. Preferably, the second herbicide comprises from 0.1 to 70 percent of the composition; more preferably from 5 to 60 percent; even more preferably from 25 to 60 percent; most preferably from 40 to 60 percent.
I have discovered that in order to ensure that the first herbicide does not separate from the suspension concentrate a thickener comprising the combination of fumed silica (amorphous silicon dioxide) and a gelling agent selected from gelling clay or a polysaccharide gum is required. Preferred gelling agents are bentonite clays. Preferably the fumed silica comprises from 0.1 to 3.5 percent of the composition; more preferably 0.5 to 2 percent; most preferably 0.8 to 1 percent. Preferably the gelling agent comprises from 0.1 to 3.5 percent of the composition; more preferably 0.5 to 2 percent; most preferably 0.8 to 1 percent. The ratio of fumed silica to gelling agent is from 1:12.5 to 12.5:1 by weight; preferably 1:5 to 5:1; more preferably 2:1 to 1:2; most preferably approximately 1:1. Since the first herbicide comprises small particles it may also act as a thickener. For this reason, as the amount of first herbicide in the composition increases, the amount of thickener may be decreased. The appropriate ratio of first herbicide to thickener in the composition is adjusted such that the viscosity of the composition is from 150 to 1500 centipoise at room temperature (approximately 25° C.) measured using a standard viscometer such as, for example, a Brookfield viscometer with a #2 or #3 spindle at 30 rpm. Preferably the viscosity of the composition is from 150 to 1000 centipoise; more preferably from 300 to 400 centipoise.
In addition to the thickener, the composition must contain a surfactant. The surfactant acts as a wetting agent to enhance the compatibility of the first herbicide with the second herbicide
Clardy S. Mark
Dow AgroSciences LLC
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