CN114732023B - Insecticidal composition containing Oxazosulfyl and chlorantraniliprole and application thereof - Google Patents

Insecticidal composition containing Oxazosulfyl and chlorantraniliprole and application thereof Download PDF

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CN114732023B
CN114732023B CN202210578028.8A CN202210578028A CN114732023B CN 114732023 B CN114732023 B CN 114732023B CN 202210578028 A CN202210578028 A CN 202210578028A CN 114732023 B CN114732023 B CN 114732023B
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chlorantraniliprole
oxazosulfyl
mass ratio
active ingredients
synergistic
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CN114732023A (en
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陈金红
曹晓晓
吕晓曦
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ANHUI ZHONGBANG BIOLOGICAL ENGINEERING CO LTD
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ANHUI ZHONGBANG BIOLOGICAL ENGINEERING CO LTD
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    • 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
    • A01N43/00Biocides, pest repellants or attractants, or plant growth regulators containing heterocyclic compounds
    • A01N43/48Biocides, pest repellants or attractants, or plant growth regulators containing heterocyclic compounds having rings with two nitrogen atoms as the only ring hetero atoms
    • A01N43/561,2-Diazoles; Hydrogenated 1,2-diazoles
    • 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
    • A01N25/00Biocides, pest repellants or attractants, or plant growth regulators, characterised by their forms, or by their non-active ingredients or by their methods of application, e.g. seed treatment or sequential application; Substances for reducing the noxious effect of the active ingredients to organisms other than pests
    • A01N25/02Biocides, pest repellants or attractants, or plant growth regulators, characterised by their forms, or by their non-active ingredients or by their methods of application, e.g. seed treatment or sequential application; Substances for reducing the noxious effect of the active ingredients to organisms other than pests containing liquids as carriers, diluents or solvents
    • A01N25/04Dispersions, emulsions, suspoemulsions, suspension concentrates or gels
    • 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
    • A01N43/00Biocides, pest repellants or attractants, or plant growth regulators containing heterocyclic compounds
    • A01N43/72Biocides, pest repellants or attractants, or plant growth regulators containing heterocyclic compounds having rings with nitrogen atoms and oxygen or sulfur atoms as ring hetero atoms
    • A01N43/74Biocides, pest repellants or attractants, or plant growth regulators containing heterocyclic compounds having rings with nitrogen atoms and oxygen or sulfur atoms as ring hetero atoms five-membered rings with one nitrogen atom and either one oxygen atom or one sulfur atom in positions 1,3
    • A01N43/761,3-Oxazoles; Hydrogenated 1,3-oxazoles
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/30Against vector-borne diseases, e.g. mosquito-borne, fly-borne, tick-borne or waterborne diseases whose impact is exacerbated by climate change

Abstract

The invention provides an insecticidal composition containing Oxazosulfyl and chlorantraniliprole, wherein the active ingredients comprise Oxazosulfyl and chlorantraniliprole, and the mass ratio of Oxazosulfyl to chlorantraniliprole is (1); the composition has obvious synergistic effect and can be used for preventing and controlling crop pests.

Description

Insecticidal composition containing Oxazosulfyl and chlorantraniliprole and application thereof
Technical Field
The invention relates to the technical field of pesticides, in particular to an insecticidal composition containing Oxazosulfyl and chlorantraniliprole and application thereof.
Background
Oxazosulfyl is an insecticide developed by Sumitomo chemical Co., ltd., japan, and has the development code No. S-1587. The oxasulfenyl is also a first benzoxazole pesticide, the molecule of the oxasulfenyl contains a sulfonyl pyridine fragment, and the chemical structure is as follows:
Figure BDA0003662819150000011
oxazosulfyl has good control effect on lepidoptera, coleoptera and diptera rice pests and also has good control effect on part of mites.
Chlorantraniliprole, english name: chlorantraniliprole, belonging to the group of anthranilamide insecticides. The chemical structure is as follows:
Figure BDA0003662819150000012
the chlorantraniliprole pesticide is a broad-spectrum pesticide, is mainly used for preventing and controlling lepidoptera pests (having good control effect on noctuidae, stem borer family, moth-eating family, leaf roller moth family, pink moth family, plutella xylostella family and the like) of various crops, and also has better prevention effect on other pests. The mechanism of action is the combination of chlorantraniliprole and a ryanodine receptor, which causes the uncontrolled release and the loss of endogenous calcium ions of cells and leads the contraction function of muscle cells to be difficult to continue. The action modes are stomach toxicity and contact toxicity, and stomach toxicity is the main action mode. Can penetrate into plant body through the surface of stem and leaf, and can be absorbed by root and moved in xylem.
The synergistic compounding of the pesticide is an effective measure for expanding a control spectrum, improving the control effect and reducing the pesticide cost of farmers, and the applicant carries out deep research on the mixed preparation of Oxazosulfyl and chlorantraniliprole, and finds that the mixed preparation of the chlorantraniliprole and the emamectin benzoate has strong synergistic effect; can effectively slow down the generation of drug resistance of pests, reduce the dosage of active ingredients and lighten environmental pollution.
Disclosure of Invention
The invention aims to provide a synergistic insecticidal composition which can effectively slow down the generation of drug resistance of pests, reduce the dosage of active ingredients and reduce environmental pollution.
The specific technical scheme is as follows:
an insecticidal composition containing Oxazosulfyl and chlorantraniliprole is characterized in that active ingredients comprise Oxazosulfyl and chlorantraniliprole, and the mass ratio of Oxazosulfyl to chlorantraniliprole is 1. The preferable mass ratio of Oxazosulfyl to chlorantraniliprole is 1. The preferable mass ratio of Oxazosulfyl to chlorantraniliprole is 1. The preferable mass ratio of Oxazosulfyl to chlorantraniliprole is 1. The mass ratio of Oxazosulfyl to chlorantraniliprole is 1.
In some embodiments, the present invention provides an insecticidal formulation comprising the insecticidal combination of claim and an adjuvant.
In some embodiments, the formulation is in the form of emulsifiable concentrate, wettable powder, suspension, granules, water dispersible granules, microemulsion, aqueous emulsion, microcapsules.
The composition or preparation of the present invention contains, in addition to the active ingredients Oxazosulfyl and chlorantraniliprole, adjuvants generally used in agricultural chemicals, such as wetting agents, dispersants, emulsifiers, thickeners, disintegrants, antifreezes, antifoaming agents, solvents, preservatives, stabilizers, synergists, carriers, and the like, and can be added as appropriate according to the needs of the preparation, and may be changed depending on the circumstances, and is not particularly limited.
The composition comprises the following components in percentage by weight when prepared into wettable powder: 1-75% of active ingredient, 1-10% of dispersing agent, 1-10% of wetting agent and the balance of filler to 100%.
The active ingredients, the dispersant, the wetting agent and the filler are mixed, uniformly mixed in a mixing cylinder, crushed by a jet mill and uniformly mixed, and the wettable powder product of the composition can be prepared.
When the composition is prepared into water dispersible granules, the composition comprises the following components in percentage by weight: 1-75% of active ingredient, 1-10% of dispersing agent, 1-8% of wetting agent, 1-5% of disintegrating agent, 1-5% of binding agent and the balance of filler to 100%.
The active ingredients, the dispersing agent, the wetting agent, the disintegrating agent, the filler and the like are crushed by airflow to obtain the required particle size, and other auxiliary agents such as a binder and the like are added to obtain the granulating material. And (3) quantitatively feeding the materials into a fluidized bed granulation dryer, and granulating and drying to obtain the water dispersible granule product of the composition.
The composition is prepared into a suspending agent and comprises the following components in percentage by weight: 1-75% of active ingredient, 1-10% of dispersant, 1-10% of wetting agent, 0.1-3% of defoaming agent, 0.1-3% of thickening agent, 0.1-5% of antifreeze agent and deionized water for making up 100%.
The dispersant, the wetting agent, the defoaming agent, the thickening agent and the antifreeze in the formula materials are sheared and mixed uniformly at a high speed, the active ingredients are added, and the mixture is ball-milled in a ball mill for 2 to 3 hours to ensure that the particle size of particles is below 5 mu m, so that the suspending agent product of the composition is prepared.
The treatment of plants and plant parts with the compositions or preparations according to the invention comprising Oxazosulfyl and chlorantraniliprole can be carried out directly or by applying the compositions or preparations to their surroundings, habitat or storage area using customary treatment methods, for example by dipping, spraying, misting and seed treatment.
The present invention is primarily directed to crops such as corn, soybean, cotton, canola, rice, wheat, sugar beet, sugarcane, oat, rye, barley, millet, triticale, flax, vines, and various fruits and vegetables from various plant taxa, horticultural and forest crops; an ornamental plant.
In some embodiments, the invention provides the use of a pesticidal composition comprising Oxazosulfyl and chlorantraniliprole for controlling pests of crops and fruits and vegetables. Preferably, the insects are diamondback moths, armyworms, plant hoppers, leafhoppers, aphids, stem borers, thrips, cabbage caterpillars, prodenia lituras and the like.
The beneficial technical effects are as follows:
1. the compound has obvious synergistic effect, improves the control effect and prolongs the service life of the medicament; 2. the prevention and treatment spectrum is expanded; 3. the two active ingredients are compounded, so that the use amount of the pesticide is reduced, the cost is reduced, and the pollution to the environment is reduced.
Detailed Description
The present invention will be further explained with reference to specific embodiments.
EXAMPLE 1 determination of the indoor toxicity of Agents on Plutella xylostella
And (3) testing pests: cabbage diamondback moth. Collected in the field, and used for bioassay after indoor breeding for 4 generations by using fresh cabbage leaves. During the test, healthy 3-instar larvae with consistent sizes are selected as test insects.
The test method comprises the following steps: the leaf soaking method is adopted. On the basis of a pre-test, 7 medicaments with different concentration gradients are arranged. Beating fresh cabbage into leaf dishes by using a puncher with the diameter of 20mm, soaking the leaf dishes in test liquid medicine for 10s, taking out and drying the leaf dishes, putting the leaf dishes into culture dishes padded with moisturizing filter paper, putting 5 leaf dishes into each dish, naturally drying, selecting starved test insects for 4 hours into the culture dishes, and repeating the steps of treating for 4 times for 15 heads of each dish. After the treatment is finished, the container cover is covered, the container cover is placed in an artificial climate chamber for feeding, the death condition of the insect mouth is checked after 48 hours, and the death judgment standard of the tested insects is that the death is counted by the condition that the tip of the writing brush lightly contacts the tested insects and does not react. Calculating according to analysis software to obtain an LC50 value; and evaluating the drug combination effect. The combined action mode adopts a method which is proposed in 1960 by Sun Yunpei et al and calculates the combined toxicity of the mixture through the toxicity index, namely a co-toxicity coefficient (CTC) method.
The co-toxicity coefficient is calculated as follows:
actually measured virulence index (ATI) = (standard medicament LC 50/test medicament LC 50) × 100
Theoretical virulence index (TTI) = a medicament ATI x percentage of a in the mixture + B medicament ATI x percentage of B in the mixture
Co-toxicity coefficient (CTC) = (ATI/TTI mixed dose) × 100
When the CTC is less than or equal to 80, the composition shows antagonism, when the CTC is more than 80 and less than 120, the composition shows additive action, and when the CTC is more than or equal to 120, the composition shows synergistic action.
And (3) testing results: as can be seen from Table 1, the combination of Oxazosulfyl and chlorantraniliprole shows two different combined effects of addition and synergy for diamondback moth. When the mass ratio of Oxazosulfyl to chlorantraniliprole is 1. When the mass ratio of Oxazosulfyl to chlorantraniliprole is 1-15. Particularly, when the mass ratio of Oxazosulfyl to chlorantraniliprole is 5. When the composition shows synergism, the dosage of active ingredients can be effectively reduced, the generation of pesticide resistance is slowed down, and the environmental pollution is alleviated.
Table 1: combined action determination result of compound medicament on diamondback moth
Figure BDA0003662819150000051
/>
Figure BDA0003662819150000061
EXAMPLE 2 agent indoor toxicity assay for myxozoa
And (3) testing pests: sticking insects; collecting 5-6 instar armyworm larvae in a field, and feeding indoors until the armyworm larvae lay eggs. Hatched larvae of the F1 generation were reared to 3 instar larvae as test insects.
The test method comprises the following steps: the leaf soaking method is adopted. On the basis of the preliminary test, 7 agents with different concentration gradients are set. Soaking the corn leaves (without spraying any insecticide) in the liquid medicine to be tested for 10s, and then naturally airing the corn leaves on a culture dish. And (3) putting a proper amount of treated leaves into each culture dish, inoculating 10 uniform armyworm larvae of 3 years old, repeating for 4 times at each concentration, sealing with a sealing film, and putting into an incubator for feeding. After 72h of processing, the death condition of the test insects is checked, and an LC50 value is calculated according to analysis software according to the death standard that the larvae can not climb normally; and evaluating the drug combination effect. The combined action mode adopts a method which is proposed in 1960 by Sun Yunpei et al and calculates the combined toxicity of the mixture through a toxicity index, namely a co-toxicity coefficient (CTC) method.
The co-toxicity coefficient is calculated as follows:
actually measured virulence index (ATI) = (standard medicament LC 50/test medicament LC 50) × 100
Theoretical virulence index (TTI) = a medicament ATI x percentage of a in the mixture + B medicament ATI x percentage of B in the mixture
Cotoxicity coefficient (CTC) = (ATI/TTI) x 100
When the CTC is less than or equal to 80, the composition shows antagonism, when the CTC is more than 80 and less than 120, the composition shows additive action, and when the CTC is more than or equal to 120, the composition shows synergistic action.
And (3) testing results: as can be seen from Table 2, the combination of Oxazosulfyl and chlorantraniliprole showed two different combined effects of addition and synergism on armyworm. When the mass ratio of Oxazosulfyl to chlorantraniliprole is 1. When the mass ratio of Oxazosulfyl to chlorantraniliprole is 5. Particularly, when the mass ratio of Oxazosulfyl to chlorantraniliprole is 1. When the composition shows synergism, the dosage of active ingredients can be effectively reduced, the generation of pesticide resistance is slowed down, and the environmental pollution is reduced.
Table 1: determination result of combined effect of compound medicament on armyworm
Figure BDA0003662819150000071
Example 3 formulation example
20 percent of Oxa-chlorantraniliprole wettable powder, which comprises the following components in percentage by weight:
oxazosulfyl 10%, chlorantraniliprole 10%, sodium lignosulphonate 3%, nekal BX2%, white carbon black 2%, and kaolin for 100%.
18% oxa-chlorantraniliprole suspension concentrate comprising the following ingredients in weight percent:
15% of Oxazosulfyl, 3% of chlorantraniliprole, 4% of sodium dodecyl benzene sulfonate, 425% of Morwet D, 0.5% of an organic silicon defoamer, 1% of ethylene glycol, 2% of xanthan gum, 1% of magnesium aluminum silicate, 1.5% of sodium benzoate and deionized water for making up 100%.
30 percent of Oxa-chlorantraniliprole water dispersible granules, which comprise the following components in percentage by weight:
5% of Oxazosulfyl, 25% of chlorantraniliprole, 4894% of TERSPERSE, 3% of calcium lignosulfonate, 2% of ammonium sulfate, 1% of sodium carboxymethylcellulose and 100% of bentonite.
Example 4 field control of cabbage diamondback moth with the pharmaceutical formulation
Test objects: cabbage diamondback moth
The test method comprises the following steps: when the pesticide is applied, the cabbage is in a vigorous state, the generation amount of diamondback moths is large, and the cabbage is mainly provided with low-age larvae. A random block arrangement was used, with a cell area of 50m2, with 4 replicates per treatment. The population base number of insects is investigated before the medicine, and the control effect is investigated 14 days after the medicine. Randomly marking 5 points in each district, investigating 5 plants in each point, investigating the number of pests on leaves of each cabbage, counting the number of live pests, and calculating the reduction rate of insect population and the control effect.
And (3) testing results: as is clear from Table 3, 20% of the Oxa-chlorantraniliprole wettable powder prepared by the present invention, 18% of Oxa-chlorantraniliprole suspending agent and 30% of Oxa-chlorantraniliprole water dispersible granule the field effect against cabbage diamondback moth was 80% or more, particularly 90% or more, when the amount thereof was 2.5 g/mu, when the field amount of the active ingredient was 1.5 to 2.5 g/mu. The compound pesticide has excellent control effect on cabbage diamondback moths, and is safe for cabbage crops through field observation.
Table 3: the medicinal preparation has field control effect on cabbage diamondback moth
Figure BDA0003662819150000081
Figure BDA0003662819150000091
EXAMPLE 5 field control of corn armyworm with the pharmaceutical formulation
Test object(s): corn armyworm
The test method comprises the following steps: when the pesticide is applied, field test insects are in the full growth period during the test, and the low-age larvae are mainly used. A random block arrangement was used, with a cell area of 25m2, with 4 replicates per treatment. Sampling is carried out at 5 points in each cell, each point is 1m < 2 >, the population base number is investigated before the medicine is taken, and the control effect is investigated 7 days after the medicine is taken. Counting the number of live insects, calculating the reduction rate of insect population and preventing and treating effect.
And (3) testing results: as is apparent from Table 3, the 20% Oxa-chlorantraniliprole wettable powder prepared by the present invention, 18% Oxa-chlorantraniliprole suspending agent and 30% Oxa-chlorantraniliprole water dispersible granule when the field use amount of the active ingredients was 1.0 to 2.0 g/acre had an excellent control effect on corn armyworm of 80% or more, and was safe for corn crops in field observation.
Table 4: the medicinal preparation has field control effect on corn armyworm
Figure BDA0003662819150000092
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit the same.

Claims (4)

1. The synergistic application of the insecticide for preventing and controlling armyworms is characterized in that active ingredients comprise Oxazosulfyl and chlorantraniliprole, and the mass ratio of the Oxazosulfyl to the chlorantraniliprole is 1: 1-5: 1.
2. Synergistic use according to claim 1, characterized in that the insecticide comprises adjuvants.
3. The synergistic use according to claim 2, wherein the adjuvants are selected from one or more of wetting agents, dispersants, emulsifiers, thickeners, disintegrants, antifreeze agents, antifoaming agents, solvents, preservatives, stabilizers, synergists, carriers.
4. The synergistic use as claimed in claim 3, wherein the formulation is an emulsifiable concentrate, a wettable powder, a suspension, a granule, a water dispersible granule, a microemulsion, an aqueous emulsion or a microcapsule.
CN202210578028.8A 2022-05-26 2022-05-26 Insecticidal composition containing Oxazosulfyl and chlorantraniliprole and application thereof Active CN114732023B (en)

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Denomination of invention: A insecticidal composition containing Oxazosulfyl and Chlorfenamide and its application

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