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WO2003028468A2 - Herbicidal composition - Google Patents

Herbicidal composition Download PDF

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Publication number
WO2003028468A2
WO2003028468A2 PCT/EP2002/010832 EP0210832W WO03028468A2 WO 2003028468 A2 WO2003028468 A2 WO 2003028468A2 EP 0210832 W EP0210832 W EP 0210832W WO 03028468 A2 WO03028468 A2 WO 03028468A2
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WO
WIPO (PCT)
Prior art keywords
active ingredient
mixture
application
crops
sodium
Prior art date
Application number
PCT/EP2002/010832
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French (fr)
Other versions
WO2003028468A3 (en
Inventor
Andreas Zoschke
Georg Rüdiger Kotzian
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Syngenta Participations Ag
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Filing date
Publication date
Application filed by Syngenta Participations Ag filed Critical Syngenta Participations Ag
Priority to AU2002342766A priority Critical patent/AU2002342766A1/en
Publication of WO2003028468A2 publication Critical patent/WO2003028468A2/en
Publication of WO2003028468A3 publication Critical patent/WO2003028468A3/en

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Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01NPRESERVATION OF BODIES OF HUMANS OR ANIMALS OR PLANTS OR PARTS THEREOF; BIOCIDES, e.g. AS DISINFECTANTS, AS PESTICIDES OR AS HERBICIDES; PEST REPELLANTS OR ATTRACTANTS; PLANT GROWTH REGULATORS
    • A01N57/00Biocides, pest repellants or attractants, or plant growth regulators containing organic phosphorus compounds
    • A01N57/18Biocides, pest repellants or attractants, or plant growth regulators containing organic phosphorus compounds having phosphorus-to-carbon bonds
    • A01N57/20Biocides, pest repellants or attractants, or plant growth regulators containing organic phosphorus compounds having phosphorus-to-carbon bonds containing acyclic or cycloaliphatic radicals

Definitions

  • the present invention relates to a novel herbicidal synergistic composition
  • a novel herbicidal synergistic composition comprising a herbicidal active ingredient combination that is suitable for the selective control of weeds in crops of useful plants, for example in crops of maize, rape, sugar beet and potatoes.
  • the invention relates also to a method of controlling weeds in crops of useful plants and to the use of the novel composition for that purpose.
  • Tritosulfuron registered as No. 142469- 14-5 in CAS is known from EP-A-559 814 and WO 01/24633, wherein the herbicidal activity of that compound is described.
  • glufosinate with at least one active ingredient from the above list exhibits a synergistic action that is capable of controlling, both pre-emergence and post-emergence, the majority of weeds occurring especially in crops of useful plants without causing any appreciable damage to the useful plant.
  • a novel synergistic composition for selective weed control which, in addition to comprising customary inert formulation adjuvants, comprises as active ingredient a mixture of glufosinate and at least one compound selected from the group of compounds carbetamide, metazachlor, isoxaflutole, metamitron, flufenacet, dimefuron, quinmerac, dimethenamid, bentazone, picolinafen, pendimethalin, tritosulfuron, mesosulfuron, iodosulfuron-methyl-sodium and imazosulfuron.
  • the composition according to the invention can be used against a large number of agronomically important weeds, such as Stellaria, Agrostis, Digitaria, Avena, Setaria, Sinapis, Lolium, Solanum, Phaseolus, Echinochloa, Scirpus, Monochoria, Sagittaria, Bromus, Alopecurus, Sorghum halepense, Rottboellia, Cyperus, Abutilon, Sida, Xanthium, Amaranthus, Chenopodium, Ipomoea, Chrysanthemum, Galium, Viola and Veronica.
  • the composition according to the invention is suitable for all methods of application conventionally used in agriculture, e.g.
  • composition according to the invention is suitable especially for controlling weeds in crops of useful plants such as rape, sugar beet and maize and also for non- selective weed control.
  • “Crops of useful plants” are to be understood as including those which have been made tolerant to herbicides or classes of herbicides as a result of conventional methods of breeding or genetic engineering such as, for example, LibertyLink® maize, LibertyLink® sugar beet and LibertyLink® rape.
  • the composition according to the invention comprises the said active ingredients in any mixing ratio, but usually has an excess of one component over the other.
  • Preferred mixing ratios of the active ingredients are from 1 :10 to 10:1 , preferably from 5:1 to 1 :5 and especially 1 :1.
  • the rate of application may vary within wide limits and depends on the nature of the soil, the method of application (pre- or post-emergence; seed dressing; application to the seed furrow; no tillage application etc.), the crop plant, the weed to be controlled, the prevailing climatic conditions, and other factors governed by the method of application, the time of application and the target crop.
  • the active ingredient mixture according to the invention can generally be applied at a rate of from 0.02 to 2.5 kg of active ingredient mixture per ha.
  • the mixtures according to the invention may be employed in unmodified form, that is to say as obtained in synthesis.
  • the adjuvants conventionally used in formulation technology such as solvents, solid carriers or surfactants, for example into emulsifiable concentrates, directly sprayable or dilutable solutions, wettable powders, soluble powders, dusts, granules or microcapsules, as described in WO 97/34483, pages 9 to 13.
  • the methods of application such as spraying, atomising, dusting, wetting, scattering or pouring, are chosen in accordance with the intended objectives and the prevailing circumstances.
  • the formulations i.e.
  • the media, preparations or compositions comprising the mixtures according to the invention and also, as appropriate, one or more solid or liquid formulation adjuvants, are prepared in a manner known perse, e.g. by intimately mixing and/or grinding the active ingredients with the formulation adjuvants, e.g. solvents or solid carriers.
  • formulation adjuvants e.g. solvents or solid carriers.
  • surface-active compounds surfactants may also be used in the preparation of the formulations.
  • suitable surface-active compounds are non-ionic, cationic and/or anionic surfactants and surfactant mixtures having good emulsifying, dispersing and wetting properties.
  • suitable anionic, non-ionic and cationic surfactants are listed, for example, in WO 97/34485, pages 7 and 8.
  • Also suitable for the preparation of the herbicidal compositions according to the invention are the surfactants conventionally employed in formulation technology, which are described, inter alia, in "McCutcheon's Detergents and Emulsifiers Annual” MC Publishing Corp., Ridgewood New Jersey, 1981 , Stache, H., “Tensid-Taschenbuch", Carl Hanser Verlag, Kunststoff/Vienna, 1981 and M. and J. Ash, "Encyclopedia of Surfactants", Vol I— I ll, Chemical Publishing Co., New York, 1980-81.
  • the herbicidal formulations usually contain from 0.1 to 99 % by weight, especially from 0.1 to 95 % by weight, of active ingredient mixture, from 1 to 99.9 % by weight of a solid or liquid formulation adjuvant, and from 0 to 25 % by weight, especially from 0.1 to 25 % by weight, of a surfactant.
  • compositions may also comprise further ingredients, such as stabilisers, e.g. vegetable oils or epoxidised vegetable oils (epoxidised coconut oil, rapeseed oil or soybean oil), antifoams, e.g. silicone oil, preservatives, viscosity regulators, binders, tackifiers and also fertilisers or other active ingredients.
  • stabilisers e.g. vegetable oils or epoxidised vegetable oils (epoxidised coconut oil, rapeseed oil or soybean oil), antifoams, e.g. silicone oil, preservatives, viscosity regulators, binders, tackifiers and also fertilisers or other active ingredients.
  • Emulsifiable concentrates active ingredient mixture: 1 to 90 %, preferably 5 to 20 % surfactant: 1 to 30 %, preferably 10 to 20 % liquid carrier: 5 to 94 %, preferably 70 to 85 %
  • Dusts active ingredient mixture: 0.1 to 10 %, preferably 0.1 to 5 % solid carrier: 99.9 to 90 %, preferably 99.9 to 99 %
  • Suspension concentrates active ingredient mixture: 5 to 75 %, preferably 10 to 50 % water: 94 to 24 %, preferably 88 to 30 % surfactant: 1 to 40 %, preferably 2 to 30 %
  • Wettable powders active ingredient mixture: 0.5 to 90 %, preferably 1 to 80 % surfactant: 0.5 to 20 %, preferably 1 to 15 % solid carrier: 5 to 95 %, preferably 15 to 90 %
  • Granules active ingredient mixture: 0.1 to 30 %, preferably 0.1 to 15 % solid carrier: 99.5 to 70 %, preferably 97 to 85 %
  • Emulsifiable concentrates a) b) c) ) active ingredient mixture 5 % 10 % 25 % 50 % calcium dodecylbenzenesulfonate 6 % 8 % 6 % 8 % castor oil polyglycol ether 4 % _ 4 % 4 %
  • Emulsions of any desired concentration can be obtained from such concentrates by dilution with water.
  • N-methyl-2-pyrrolidone - - 30% 10% arom. hydrocarbon mixture 75 % 60 % g- 12
  • the solutions are suitable for use in the form of microdrops.
  • Wettable powders a) b) c) d) active ingredient mixture 5% 25% 50% 80% sodium lignosulfonate 4% - 3% - sodium lauryl sulfate 2% 3% - 4% sodium diisobutylnaphthalene- sulfonate - 6% 5% 6% octylphenol polyglycol ether - 1 % 2% -
  • the active ingredient is mixed thoroughly with the adjuvants and the mixture is thoroughly ground in a suitable mill, affording wettable powders which can be diluted with water to give suspensions of any desired concentration.
  • the finely ground active ingredient is uniformly applied, in a mixer, to the carrier moistened with polyethylene glycol.
  • Non-dusty coated granules are obtained in this manner.
  • the active ingredient is mixed and ground with the adjuvants, and the mixture is moistened with water.
  • the mixture is extruded and then dried in a stream of air.
  • Ready-to-use dusts are obtained by mixing the active ingredient with the carriers and grinding the mixture in a suitable mill.
  • Suspension concentrates a) b) c) d) active ingredient mixture 3% 10% 25% 50% ethylene glycol 5% 5% 5% nonylphenol polyglycol ether - 1 % 2% -
  • the finely ground active ingredient is intimately mixed with the adjuvants, giving a suspension concentrate from which suspensions of any desired concentration can be obtained by dilution with water.
  • test plants are sown in pots under greenhouse conditions.
  • a standard soil is used as cultivation substrate.
  • the herbicides are applied to the surface of the soil both alone and in admixture.
  • the rates of application are governed by the optimum concentrations determined under field or greenhouse conditions.
  • the mixtures used in this test exhibit good results.
  • test plants are raised to a post-application stage in pots under greenhouse conditions.
  • a standard soil is used as cultivation substrate.
  • the herbicides are applied to the test plants both alone and in admixture.
  • the rates of application are governed by the optimum concentrations determined under field or greenhouse conditions.
  • the mixtures used in this test exhibit good results.

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  • Life Sciences & Earth Sciences (AREA)
  • Agronomy & Crop Science (AREA)
  • Pest Control & Pesticides (AREA)
  • Plant Pathology (AREA)
  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Dentistry (AREA)
  • General Health & Medical Sciences (AREA)
  • Wood Science & Technology (AREA)
  • Zoology (AREA)
  • Environmental Sciences (AREA)
  • Agricultural Chemicals And Associated Chemicals (AREA)

Abstract

A herbicidal composition which, in addition to comprising customary inert formulation adjuvants, comprises as active ingredient a mixture of glufosinate and at least one compound selected from the group of compounds carbetamide, metazachlor, isoxaflutole, metamitron, flufenacet, dimefuron, quinmerac, dimethenamid, bentazone, picolinafen, pendimethalin, tritosulfuron, iodosulfuron-methyl-sodium and imazosulfuron.

Description

Herbicidal composition
The present invention relates to a novel herbicidal synergistic composition comprising a herbicidal active ingredient combination that is suitable for the selective control of weeds in crops of useful plants, for example in crops of maize, rape, sugar beet and potatoes.
The invention relates also to a method of controlling weeds in crops of useful plants and to the use of the novel composition for that purpose.
The compounds glufosinate, carbetamide, metazachlor, isoxaflutole, metamitron, flufenacet, dimefuron, quinmerac, dimethenamid, bentazone, picolinafen, pendimethalin, iodosulfuron- methyl-sodium and imazosulfuron exhibit herbicidal activity, as described, for example, in The Pesticide Manual, 12th Edition (BCPC), 2000. Tritosulfuron registered as No. 142469- 14-5 in CAS (Chemical Abstracts) is known from EP-A-559 814 and WO 01/24633, wherein the herbicidal activity of that compound is described. The compound 2-[[[[(4,6-dimethoxy-2- pyhmidinyl)amino]carbonyl]amino]sulfonyl]-4-[[(methylsulfonyl)amino]methyl]benzoic acid is known under the name mesosulfuron. Its herbicidal activity is described in EP-A-559 814 and WO 01/24633.
Surprisingly, it has now been found that a combination of variable amounts of glufosinate with at least one active ingredient from the above list exhibits a synergistic action that is capable of controlling, both pre-emergence and post-emergence, the majority of weeds occurring especially in crops of useful plants without causing any appreciable damage to the useful plant.
There is therefore proposed in accordance with the present invention a novel synergistic composition for selective weed control which, in addition to comprising customary inert formulation adjuvants, comprises as active ingredient a mixture of glufosinate and at least one compound selected from the group of compounds carbetamide, metazachlor, isoxaflutole, metamitron, flufenacet, dimefuron, quinmerac, dimethenamid, bentazone, picolinafen, pendimethalin, tritosulfuron, mesosulfuron, iodosulfuron-methyl-sodium and imazosulfuron. It is extremely surprising that combinations of those active ingredients exceed the additive action on the weeds to be controlled that is to be expected in principle and thus broaden the range of action of the two active ingredients especially in two respects: firstly, the rates of application of the individual compounds are reduced while a good level of action is maintained and, secondly, the composition according to the invention achieves a high level of weed control also in those cases where the individual substances, in the range of low rates of application, have become useless from the agronomic standpoint. The result is a considerable broadening of the spectrum of weeds and an additional increase in selectivity in respect of the crops of useful plants, as is necessary and desirable in the event of an unintentional overdose of active ingredient. The composition according to the invention, while retaining excellent control of weeds in useful plants, also allows greater flexibility in succeeding crops.
The composition according to the invention can be used against a large number of agronomically important weeds, such as Stellaria, Agrostis, Digitaria, Avena, Setaria, Sinapis, Lolium, Solanum, Phaseolus, Echinochloa, Scirpus, Monochoria, Sagittaria, Bromus, Alopecurus, Sorghum halepense, Rottboellia, Cyperus, Abutilon, Sida, Xanthium, Amaranthus, Chenopodium, Ipomoea, Chrysanthemum, Galium, Viola and Veronica. The composition according to the invention is suitable for all methods of application conventionally used in agriculture, e.g. pre-emergence application, post-emergence application and seed dressing. The composition according to the invention is suitable especially for controlling weeds in crops of useful plants such as rape, sugar beet and maize and also for non- selective weed control. "Crops of useful plants" are to be understood as including those which have been made tolerant to herbicides or classes of herbicides as a result of conventional methods of breeding or genetic engineering such as, for example, LibertyLink® maize, LibertyLink® sugar beet and LibertyLink® rape. The composition according to the invention comprises the said active ingredients in any mixing ratio, but usually has an excess of one component over the other. Preferred mixing ratios of the active ingredients are from 1 :10 to 10:1 , preferably from 5:1 to 1 :5 and especially 1 :1.
The rate of application may vary within wide limits and depends on the nature of the soil, the method of application (pre- or post-emergence; seed dressing; application to the seed furrow; no tillage application etc.), the crop plant, the weed to be controlled, the prevailing climatic conditions, and other factors governed by the method of application, the time of application and the target crop. The active ingredient mixture according to the invention can generally be applied at a rate of from 0.02 to 2.5 kg of active ingredient mixture per ha. The mixtures according to the invention may be employed in unmodified form, that is to say as obtained in synthesis. Preferably, however, they are formulated in customary manner, together with the adjuvants conventionally used in formulation technology, such as solvents, solid carriers or surfactants, for example into emulsifiable concentrates, directly sprayable or dilutable solutions, wettable powders, soluble powders, dusts, granules or microcapsules, as described in WO 97/34483, pages 9 to 13. As with the nature of the compositions, the methods of application, such as spraying, atomising, dusting, wetting, scattering or pouring, are chosen in accordance with the intended objectives and the prevailing circumstances. The formulations, i.e. the media, preparations or compositions comprising the mixtures according to the invention and also, as appropriate, one or more solid or liquid formulation adjuvants, are prepared in a manner known perse, e.g. by intimately mixing and/or grinding the active ingredients with the formulation adjuvants, e.g. solvents or solid carriers. In addition, surface-active compounds (surfactants) may also be used in the preparation of the formulations.
Examples of solvents and solid carriers are given, for example, in WO 97/34485, page 6. Depending on the nature of the active ingredients to be formulated, suitable surface-active compounds are non-ionic, cationic and/or anionic surfactants and surfactant mixtures having good emulsifying, dispersing and wetting properties. Examples of suitable anionic, non-ionic and cationic surfactants are listed, for example, in WO 97/34485, pages 7 and 8. Also suitable for the preparation of the herbicidal compositions according to the invention are the surfactants conventionally employed in formulation technology, which are described, inter alia, in "McCutcheon's Detergents and Emulsifiers Annual" MC Publishing Corp., Ridgewood New Jersey, 1981 , Stache, H., "Tensid-Taschenbuch", Carl Hanser Verlag, Munich/Vienna, 1981 and M. and J. Ash, "Encyclopedia of Surfactants", Vol I— I ll, Chemical Publishing Co., New York, 1980-81.
The herbicidal formulations usually contain from 0.1 to 99 % by weight, especially from 0.1 to 95 % by weight, of active ingredient mixture, from 1 to 99.9 % by weight of a solid or liquid formulation adjuvant, and from 0 to 25 % by weight, especially from 0.1 to 25 % by weight, of a surfactant.
Whereas commercial products are usually formulated as concentrates, the end user will normally employ dilute formulations. The compositions may also comprise further ingredients, such as stabilisers, e.g. vegetable oils or epoxidised vegetable oils (epoxidised coconut oil, rapeseed oil or soybean oil), antifoams, e.g. silicone oil, preservatives, viscosity regulators, binders, tackifiers and also fertilisers or other active ingredients. Preferred formulations have especially the following compositions: (% = percent by weight)
Emulsifiable concentrates: active ingredient mixture: 1 to 90 %, preferably 5 to 20 % surfactant: 1 to 30 %, preferably 10 to 20 % liquid carrier: 5 to 94 %, preferably 70 to 85 %
Dusts: active ingredient mixture: 0.1 to 10 %, preferably 0.1 to 5 % solid carrier: 99.9 to 90 %, preferably 99.9 to 99 %
Suspension concentrates: active ingredient mixture: 5 to 75 %, preferably 10 to 50 % water: 94 to 24 %, preferably 88 to 30 % surfactant: 1 to 40 %, preferably 2 to 30 %
Wettable powders: active ingredient mixture: 0.5 to 90 %, preferably 1 to 80 % surfactant: 0.5 to 20 %, preferably 1 to 15 % solid carrier: 5 to 95 %, preferably 15 to 90 %
Granules: active ingredient mixture: 0.1 to 30 %, preferably 0.1 to 15 % solid carrier: 99.5 to 70 %, preferably 97 to 85 %
The following Examples illustrate the invention further, but do not limit the invention.
F1. Emulsifiable concentrates a) b) c) ) active ingredient mixture 5 % 10 % 25 % 50 % calcium dodecylbenzenesulfonate 6 % 8 % 6 % 8 % castor oil polyglycol ether 4 % _ 4 % 4 %
(36 mol of ethylene oxide) octylphenol polyglycol ether 4 % 2 % (7-8 mol of ethylene oxide) cyclohexanone - - 10 % 20 % arom. hydrocarbon mixture 85% 78% 55% 16% g-C|2
Emulsions of any desired concentration can be obtained from such concentrates by dilution with water.
F2. Solutions a) b) c) d) active ingredient mixture 5% 10% 50% 90%
1 -methoxy-3-(3-methoxy- propoxy)-propane - 20% 20% - polyethylene glycol MW 400 20% 10% _ _
N-methyl-2-pyrrolidone - - 30% 10% arom. hydrocarbon mixture 75 % 60 % g- 12
The solutions are suitable for use in the form of microdrops.
F3. Wettable powders a) b) c) d) active ingredient mixture 5% 25% 50% 80% sodium lignosulfonate 4% - 3% - sodium lauryl sulfate 2% 3% - 4% sodium diisobutylnaphthalene- sulfonate - 6% 5% 6% octylphenol polyglycol ether - 1 % 2% -
(7-8 mol of ethylene oxide) highly dispersed silicic acid 1 % 3% 5% 10% kaolin 88% 62% 35% _
The active ingredient is mixed thoroughly with the adjuvants and the mixture is thoroughly ground in a suitable mill, affording wettable powders which can be diluted with water to give suspensions of any desired concentration.
F4. Coated granules a) b) c) active ingredient mixture 0.1 % 5% 15% highly dispersed silicic acid 0.9 % 2% 2% inorganic carrier 99.0 % 93% 83%
(diameter 0.1 - 1 mm) e.g. CaCO3 or SiO2 The active ingredient is dissolved in methylene chloride and applied to the carrier by spraying, and the solvent is then evaporated off in vacuo.
F5. Coated granules a) b) c) active ingredient mixture 0.1 % 5% 15% polyethylene glycol MW 200 1.0 % 2% 3% highly dispersed silicic acid 0.9 % 1 % 2% inorganic carrier 98.0 % 92% 80%
(diameter 0.1 - 1 mm) e.g. CaCO3 or SiO2
The finely ground active ingredient is uniformly applied, in a mixer, to the carrier moistened with polyethylene glycol. Non-dusty coated granules are obtained in this manner.
F6. Extruder granules a) b) c) d) active ingredient mixture 0.1 % 3% 5% 15% sodium lignosulfonate 1.5% 2% 3% 4% carboxymethylcellulose 1.4% 2% 2% 2% kaolin 97.0 % 93% 90% 79%
The active ingredient is mixed and ground with the adjuvants, and the mixture is moistened with water. The mixture is extruded and then dried in a stream of air.
F7. Dusts a) b) c) active ingredient mixture 0.1 % 1 % 5 % talcum 39.9% 49% 35% kaolin 60.0% 50% 60%
Ready-to-use dusts are obtained by mixing the active ingredient with the carriers and grinding the mixture in a suitable mill.
F8. Suspension concentrates a) b) c) d) active ingredient mixture 3% 10% 25% 50% ethylene glycol 5% 5% 5% 5% nonylphenol polyglycol ether - 1 % 2% -
(15 mol of ethylene oxide) sodium lignosulfonate 3% 3% 4% 5% carboxymethylcellulose 1 % 1 % 1 % 1 %
37 % aqueous formaldehyde 0.2 % 0.2 % 0.2 % 0.2 % solution silicone oil emulsion 0.8 % 0.8 % 0.8 % 0.8 % water 87 % 79 % 62 % 38 %
The finely ground active ingredient is intimately mixed with the adjuvants, giving a suspension concentrate from which suspensions of any desired concentration can be obtained by dilution with water.
It is often more practical for the active ingredients of the mixtures according to the invention to be formulated separately and to be brought together in the desired mixing ratio in the applicator in the form of a "tank mixture" in water shortly before application.
Biological Examples:
Example B1 : Pre-emergence test:
The test plants are sown in pots under greenhouse conditions. A standard soil is used as cultivation substrate. At a pre-emergence stage the herbicides are applied to the surface of the soil both alone and in admixture. The rates of application are governed by the optimum concentrations determined under field or greenhouse conditions. The tests are evaluated 2 to 4 weeks later (100% action = plant has completely died; 0% action = no phytotoxic action). The mixtures used in this test exhibit good results.
Example B2: Post-emergence test:
The test plants are raised to a post-application stage in pots under greenhouse conditions. A standard soil is used as cultivation substrate. At a post-emergence stage the herbicides are applied to the test plants both alone and in admixture. The rates of application are governed by the optimum concentrations determined under field or greenhouse conditions. The tests are evaluated 2 to 4 weeks later (100% action = plant has completely died; 0% action = no phytotoxic action). The mixtures used in this test exhibit good results.

Claims

What is claimed is:
1. A herbicidal synergistic composition which, in addition to comprising customary inert formulation adjuvants, comprises as active ingredient a mixture of glufosinate and at least one compound selected from the group of compounds carbetamide, metazachlor, isoxaflutole, metamitron, flufenacet, dimefuron, quinmerac, dimethenamid, bentazone, picolinafen, pendimethalin, tritosulfuron, mesosulfuron, iodosulfuron-methyl-sodium and imazosulfuron.
2. A method of controlling undesired plant growth in crops of useful plants, which comprises allowing a herbicidally effective amount of a composition according to claim 1 to act on the crop plant or the locus thereof.
3. A method according to claim 2, wherein the crop plant is maize, rape, sugar beet or potatoes.
PCT/EP2002/010832 2001-09-28 2002-09-26 Herbicidal composition WO2003028468A2 (en)

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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2009141367A2 (en) * 2008-05-21 2009-11-26 Basf Se Herbicidal composition comprising glyphosate, glufosinate or their salts
CN104222109A (en) * 2014-09-26 2014-12-24 青岛瀚生生物科技股份有限公司 Weeding composition containing isoxaflutole and flufenacet
CN105935061A (en) * 2016-06-22 2016-09-14 南京华洲药业有限公司 Herbicidal composition containing glufosinate-ammonium and mesosulfuron-methyl and applications thereof
CN105935059A (en) * 2016-06-22 2016-09-14 南京华洲药业有限公司 Herbicidal composition containing glufosinate-ammonium and flufenacet and applications thereof
US20200359629A1 (en) * 2017-08-09 2020-11-19 Basf Se Herbicidal mixtures comprising L-glufosinate or its salt and at least one bleacher herbicide
US20210022345A1 (en) * 2017-08-09 2021-01-28 Basf Se Herbicidal mixtures comprising l-glufosinate and their use in cotton cultures
US12137689B2 (en) 2017-08-09 2024-11-12 Basf Se Herbicidal mixtures comprising L-glufosinate and their use in soybean cultures
US12144351B2 (en) 2017-08-09 2024-11-19 Basf Se Herbicidal mixtures comprising L-glufosinate and their use in corn cultures

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WO2000008939A1 (en) * 1998-08-13 2000-02-24 Aventis Cropscience Gmbh Herbicides for tolerant or resistant sugar beet cultures

Patent Citations (1)

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Publication number Priority date Publication date Assignee Title
WO2000008939A1 (en) * 1998-08-13 2000-02-24 Aventis Cropscience Gmbh Herbicides for tolerant or resistant sugar beet cultures

Cited By (24)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9629366B2 (en) 2008-05-21 2017-04-25 Basf Se Herbicidal composition comprising glyphosate, glufosinate or their salts
WO2009141367A3 (en) * 2008-05-21 2010-09-23 Basf Se Herbicidal composition comprising glyphosate, glufosinate or their salts
CN102036563A (en) * 2008-05-21 2011-04-27 巴斯夫欧洲公司 Herbicidal composition comprising glyphosate, glufosinate or their salts
JP2011520939A (en) * 2008-05-21 2011-07-21 ビーエーエスエフ ソシエタス・ヨーロピア Herbicidal composition containing glyphosate, glufosinate or a salt thereof
EA019458B1 (en) * 2008-05-21 2014-03-31 Басф Се Herbicidal composition comprising glyphosate, glufosinate or their salts
CN102036563B (en) * 2008-05-21 2014-11-05 巴斯夫欧洲公司 Herbicidal composition comprising glyphosate, glufosinate or their salts
US11206830B2 (en) 2008-05-21 2021-12-28 Basf Se Herbicidal composition comprising glufosinate or a salt thereof and pyroxasulfone
US9999223B2 (en) 2008-05-21 2018-06-19 Basf Se Herbicidal composition comprising glyphosate, glufosinate or their salts
US12059004B2 (en) 2008-05-21 2024-08-13 Basf Se Herbicidal composition comprising glufosinate or salt thereof and pyroxasulfone
WO2009141367A2 (en) * 2008-05-21 2009-11-26 Basf Se Herbicidal composition comprising glyphosate, glufosinate or their salts
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CN105935061A (en) * 2016-06-22 2016-09-14 南京华洲药业有限公司 Herbicidal composition containing glufosinate-ammonium and mesosulfuron-methyl and applications thereof
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US20200359629A1 (en) * 2017-08-09 2020-11-19 Basf Se Herbicidal mixtures comprising L-glufosinate or its salt and at least one bleacher herbicide
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US12137690B2 (en) 2017-08-09 2024-11-12 Basf Se Herbicidal mixtures comprising L-glufosinate and their use in cotton cultures
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US12262716B2 (en) 2017-08-09 2025-04-01 Basf Se Herbicidal mixtures comprising L-glufosinate and their use in soybean cultures

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