CN103891723A - Bactericidal composition containing isopyrazam and picoxystrobin and application thereof - Google Patents

Bactericidal composition containing isopyrazam and picoxystrobin and application thereof Download PDF

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CN103891723A
CN103891723A CN201210589487.2A CN201210589487A CN103891723A CN 103891723 A CN103891723 A CN 103891723A CN 201210589487 A CN201210589487 A CN 201210589487A CN 103891723 A CN103891723 A CN 103891723A
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bacterium amine
pyrazoles naphthalene
naphthalene bacterium
bactericidal composition
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纪立新
耿荣伟
周波
欧阳立新
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FENGDENG PESTICIDE Co Ltd JIANGSU
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FENGDENG PESTICIDE Co Ltd JIANGSU
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Abstract

The invention discloses a bactericidal composition containing isopyrazam and picoxystrobin and application thereof. The bactericidal composition is composed of main effect components isopyrazam and picoxystrobin in a weight ratio of (1-60):(1-80). The bactericidal composition is used for preventing and treating diseases of cereal crops, vegetables and fruit trees, has higher synergic action, overcomes and postpones the drug resistance of pathogenic bacteria, has the advantages of high bactericidal speed, long duration period and lower application cost, and has obviously better preventing and treating effects than a single agent. The bactericidal composition can be used for preventing and treating fungus diseases on crops, especially can be used for preventing and treating such fungus diseases as rust disease, powdery mildew, leaf spot, brown spot, net blotch, leaf blotch, glume blight, leaf blight and the like, and has better effects than a single agent.

Description

A kind of bactericidal composition and application thereof containing pyrazoles naphthalene bacterium amine and ZEN 90160
Technical field:
The present invention relates to a kind of bactericidal composition and uses thereof, especially a kind of bactericidal composition and application thereof take pyrazoles naphthalene bacterium amine and ZEN 90160 as main active.
Background technology
Pyrazoles naphthalene bacterium amine (Isopyrazam), chemical name: 3-difluoromethyl-1-methyl-N-[1,2,3,4-tetrahydrochysene-9-(1-Methylethyl)-Isosorbide-5-Nitrae-methanonaphthalen-5-yl]-1H-pyrazole-4-carboxamide, molecular formula C 20h 23f 2n 3o, pyrazoles naphthalene bacterium amine (Isopyrazam) has following four kinds of isomer, the mixing that the present invention comprises any one or a few, chemical structural formula is as follows respectively:
Figure BDA00002683665300011
The exploitation of pyrazoles naphthalene Jun Anshiyou Syngenta Co.,Ltd, this bactericide has broad spectrum of activity, multiple diseases in various crop is all had to the outstanding performance of preventing and treating, efficient to triazole type and methoxy acrylic resistant strain germ, especially very efficient to Septoria (Septoria) fungi, as the preventive effect of wheat rust and barley rust rot is all better than to epoxiconazole.This bactericide is take protective effect as main, but in field trial, also demonstrates certain therapeutic action, and its lasting period is long, and dispenser still shows positive effect after 7 weeks, and the protection period is longer about 2 weeks than triazole bactericidal agent.The market orientation of pyrazoles naphthalene bacterium amine comprises the disease on fruit tree, vegetables and cereal.
ZEN 90160 (Picoxystrobin), the strobilurin fungicide of Syngenta Co.,Ltd's exploitation, chemical name: (E)-3-methoxyl group-2-{2-[6-(trifluoromethyl)-2-pyridine oxygen methyl] phenyl } methyl acrylate.Structural formula is as follows:
ZEN 90160 low toxicity, is mitochondrial respiratory inhibitor, is shifted and is suppressed mitochondrial breathing by electronics between cytochrome b and C1.The bacterial strain that control produces resistance to 14-demethylation enzyme inhibitor, benzamides, three carboxyl acylamides and benzimidazole is effective.Once ZEN 90160 is absorbed by blade, will in xylem, move, flow in transportation system with current; It also flows and in xylem, flows again along with absorbing from gas phase after people's blade in the gas phase of blade surface, has outstanding resistance of rainwater washing against.Just because of systemic activity and the fumigation activity of ZEN 90160, thereby after dispenser, active ingredient can effectively be reallocated and fully be transmitted, and therefore ZEN 90160 extremely has better therapeutic activity than commercial Fluoxastrobin and oxime bacterium.Suitable crop wheat class is as wheat, barley, oat and rye; Under recommended dose to crop safety, without poisoning.Be mainly used in preventing and treating foliage disease as leaf blight, leaf rust, glume blight, brown spot, powdery mildew etc., compared with existing strobilurin series bactericidal agent, wheat leaf blight, net blotch and moire disease had to stronger result for the treatment of.In addition, the volume increase of ZEN 90160 is also significantly better than other bactericide.But as respiration inhibitor, its mechanism of action is single, and resistance problem must draw attention ahead of time.
Methoxy acrylic bactericide is the class new type bactericide kind occurring in recent years, it is one of main pharmacy variety of preventing and treating in the market fungal disease, market share amount is very large, still action target is single for the active height of such medicament, this has also just caused the quick generation of germ resistance, such as such medicament of part is not equal to before in the control of powdery mildew, can not play due effect even if improve dosage, the composition research that therefore carries out such medicament and different mechanism medicaments is extremely urgent.
The difficulty of prevention and cure of phytopathogen is increasing at present, and on the one hand, along with the change of pattern of farming, the disease occurrence degree of melon and fruit, vegetables, cereal crop, generation quantity all increase, and are are objectively preventing and treating difficulty increasing; On the other hand, SM causes the resistance of pathogen to rise year by year under lasting medicament selection pressure, and the control efficiency of single dose is had a greatly reduced quality; The 3rd, the speed to introduce of new varieties of pesticides obviously declines at present, and lacks new action target medicament; The 4th, strict gradually due to environmental requirement, portioned product is limited to use, and causes medication selectivity to become less.In a word, how effectively plant disease being prevented and treated is the important topic that vast plant protection work person faces.
Summary of the invention:
The object of the invention is for above-mentioned technical problem provide a kind of applied widely, cost is low, the effective plant bactericidal composition containing pyrazoles naphthalene bacterium amine and ZEN 90160.
A further object of the invention is to provide this bactericidal composition and causes the application on fungal disease control sac fungi, basidiomycetes, imperfect fungus and Oomycete fungi, especially on the fungal diseases such as control rust, powdery mildew, leaf spot, brown spot, net blotch, moire disease, glume blight, leaf blight purposes.
The object of the invention is to realize by following measures:
A kind of bactericidal composition, it contains pyrazoles naphthalene bacterium amine and ZEN 90160, and wherein pyrazoles naphthalene bacterium amine and ZEN 90160 weight ratio are 1 ~ 60:1 ~ 80, and wherein in bactericidal composition, effective ingredient is present in composition with synergy effective dose.
Described bactericidal composition, wherein pyrazoles naphthalene bacterium amine and ZEN 90160 weight ratio are preferably 5 ~ 30:5 ~ 60, more preferably 5 ~ 25:5 ~ 40, particularly preferably 1:0.2 ~ 5.
In the present composition, the two percentage by weight that accounts for composition of pyrazoles naphthalene bacterium amine and ZEN 90160 is 2-85%.Be preferably 5-60%, further preferred 8-45%, particularly preferably 25-30%.
Described bactericidal composition, wherein pyrazoles naphthalene bacterium amine and ZEN 90160 and known auxiliary agent and excipient are re-dubbed any one formulation allowing on agricultural chemicals, the preferred missible oil of described formulation, suspending agent, wetting powder, aqueous emulsion, microemulsion and water dispersion granule.
These known auxiliary agents, excipients have emulsifier, wetting dispersing agent, suspending agent, defoamer, disintegrant, binding agent etc.
The aforementioned emulsifier can be applicable in insecticides adjuvant of the present invention comprises but is not limited to calcium dodecyl benzene sulfonate, the rare block compound of polyoxyethylene polyoxy third, castor oil polyoxyethylene ether, alkylphenol polyoxyethylene polyethenoxy ether, Ben-zylphenol Polyoxyethyl Ether, phenethyl phenol polyethenoxy ether, fatty alcohol-polyoxyethylene ether, phenethyl phenol polyethenoxy ether polyethenoxy ether, alkylphenol polyoxyethylene formaldehyde condensation products etc., and the phosphate of above-mentioned wherein part material and in and salt.Concrete kind is as serial in: agriculture breast 500# series, 600# series, 400# series, 1600# series, NP series, OP series, AEO series, By series, this dish series, tween etc.
The aforementioned wetting dispersing agent can be applicable in insecticides adjuvant of the present invention includes, but are not limited to one or more in sodium lignin sulfonate, calcium lignosulfonate, alkylnaphthalene sulfonate, alkylnaphthalene sulfonate formaldehyde condensation products, Abietyl quaternary ammonium salt, alkylphenol polyoxyethylene phosphate, saponin, the withered powder of tea, fatty alcohol polyoxyethylene ether sulfate, lauryl sodium sulfate, neopelex, polycarboxylic acid salt and high molecular comb shape compound etc.
It is aforementioned that to can be applicable to excipient of the present invention be one or more in water, solvent or filler.
Described solvent includes, but are not limited to one or more of toluene, dimethylbenzene, solvent naphtha series, mixed methylnaphthalene, turpentine oil, vegetable oil, methyl oleate, carrene, chloroform, methyl alcohol, ethanol, isopropyl alcohol, n-butanol, cyclohexanone, isophorone, pyrrolidones, tetrahydrofurfuryl alcohol, acetic acid dimethyl ester, acetophenone, ethyl acetate, DMF, dimethyl sulfoxide (DMSO) etc.
Described filler is selected from one or more of white carbon, kaolin, precipitated calcium carbonate, diatomite, corn starch, quartz sand, talcum powder, ammonium sulfate, sodium sulphate, sodium chloride, potassium chloride etc.
As required, also can add the functional aids such as antifreezing agent, thickener, stabilizing agent, defoamer
Described antifreezing agent is selected from one or more of ethylene glycol, propane diols, urea, diethylene glycol (DEG), glycerine etc.
Described thickener is selected from one or more of xanthans, polyvinyl alcohol, bentonite, CMC, aluminium-magnesium silicate.
Described bactericidal composition, its formulation is missible oil, suspending agent, suspension emulsion, wetting powder, aqueous emulsion, microemulsion and water dispersion granule.
The application of described bactericidal composition aspect control cereal crop disease.
Beneficial effect of the present invention:
1, the present invention's pyrazoles naphthalene bacterium amine used is novel pyrazole acid amides bactericide, and ZEN 90160 is wide spectrum methoxy acrylic bactericide, and mutually mixture can not produce low touching, can Synergistic, reduce dosage, and reduce costs.
2, the present composition scope of application increases, be applicable to prevent and treat the crop pest of Cereal, various melon and fruit, vegetables, particularly prevent and treat the crop pests such as paddy rice, wheat, barley, capsicum, banana, mango, pineapple, cucumber, tomato, as wheat rust, wheat powdery mildew, wheat moire disease, wheat net blotch, wheat brown spot, wheat leaf blight etc.
Bactericidal composition of the present invention has good control efficiency to sac fungi, basidiomycetes, imperfect fungus and Oomycete fungal disease; Reduce because Synergistic causes consumption, can unitary agent (pyrazoles naphthalene bacterium amine and ZEN 90160 are arbitrary) be developed immunity to drugs Antifungi.
Bactericidal composition of the present invention is prevented and treated the application on resistance fungi in preparation, especially all has significant effect in the application of control rust, powdery mildew, leaf spot, brown spot, net blotch, moire disease, glume blight, leaf blight.Above-mentioned bactericidal composition can produce higher synergistic function, and the consumption of the independent reactive compound of amount ratio of this mixture reduces greatly, and the activity of mixture is greater than the activity of independent component." % " of the present invention is mass percent.
Compared with prior art beneficial effect of the present invention: (1) is compared with single dose, said composition antagonism fungal disease has obvious synergistic function as fungal diseases such as rust, powdery mildew, leaf spot, brown spot, net blotch, moire disease, glume blight, leaf blights, overcome and delayed pesticide resistance, expanding prevention spectrum, has obviously improved control efficiency; (2) reduce control recruitment, drug cost; (3) alternative routine and the easily agricultural chemicals of generation resistance; (4), compared with single dose, produce and use cost reduction; (5) the drug-fast generation of Antifungi, its successful uses higher than its single dose.
Embodiment
Below in conjunction with embodiment, the invention will be further described, and in embodiment, the preparation method of formulation is conventional laboratory's formulation method.
Two kinds of reactive compounds can be processed into any one formulation of permission, and below with two kinds of preparations that active ingredient is processed into of specific embodiment explanation, but the preparation that these two kinds of active components can be processed is not limited only to following listed.
Embodiment 1:
By pyrazoles naphthalene bacterium amine 5g, ZEN 90160 25g, sodium lignin sulfonate dispersant 6g, dispersing agent NNO (sodium methylene bis-naphthalene sulfonate) 4g, white carbon 5g, kaolin adds to 100g mixture and carries out air-flow crushing, and making main active ingredient weight percentage is 30% wetting powder.
Embodiment 2:
By pyrazoles naphthalene bacterium amine 10g, ZEN 90160 20g, sodium lignin sulfonate dispersant 6g, dispersing agent NNO 4g, white carbon 5g, kaolin adds to 100g mixture and carries out air-flow crushing, and making main active ingredient weight percentage is 30% wetting powder.
Embodiment 3:
By pyrazoles naphthalene bacterium amine 15g, ZEN 90160 15g, sodium lignin sulfonate dispersant 6g, dispersing agent NNO 4g, white carbon 5g, kaolin adds to 100g mixture and carries out air-flow crushing, and making main active ingredient weight percentage is 30% wetting powder.
Embodiment 4:
Take pyrazoles naphthalene bacterium amine 20g, ZEN 90160 10g, sodium lignin sulfonate dispersant 6g, dispersing agent NNO 4g, white carbon 5g, kaolin adds to 100g mixture and carries out air-flow crushing, and making main active ingredient weight percentage is 30% wetting powder.
Embodiment 5:
Take pyrazoles naphthalene bacterium amine 25g, ZEN 90160 5g, sodium lignin sulfonate dispersant 6g, dispersing agent NNO 4g, white carbon 5g, kaolin adds to 100g mixture and carries out air-flow crushing, and making main active ingredient weight percentage is 30% wetting powder.
Embodiment 6:
Take 1g pyrazoles naphthalene bacterium amine, 5g ZEN 90160, phenethyl phenol polyethenoxy ether phosphate 3g, agriculture breast 33#2g, alkylphenol polyoxyethylene 1g, ethanol 13g, adds water to 100g.The method of above raw material being prepared routinely to aqueous emulsion drops into the mixing of mixing kettle high speed, and making main active ingredient weight percentage is 6% pyrazoles naphthalene bacterium amine-ZEN 90160 aqueous emulsion.
Embodiment 7:
Take 50g pyrazoles naphthalene bacterium amine, 20g ZEN 90160, sodium lignin sulfonate 8g, polycarboxylate salt dispersant 2g, lauryl sodium sulfate 1g, ammonium sulfate 5g, corn starch complement to 100g.The method that above raw material is prepared to water dispersion granule routinely first mixes, cross air-flow crushing afterwards, finally mediate granulation, and making main active ingredient weight percentage is 70% pyrazoles naphthalene bacterium amine-ZEN 90160 water dispersion granule.
Embodiment 8:
Take 2g pyrazoles naphthalene bacterium amine, 40g ZEN 90160, sodium lignin sulfonate 8g, polycarboxylate salt dispersant 2g, lauryl sodium sulfate 1g, ammonium sulfate 5g, corn starch complement to 100g.The method that above raw material is prepared to water dispersion granule routinely first mixes, cross air-flow crushing afterwards, finally mediate granulation, and making main active ingredient weight percentage is 42% pyrazoles naphthalene bacterium amine-ZEN 90160 water dispersion granule.
Embodiment 9:
Take 5g pyrazoles naphthalene bacterium amine, 20g ZEN 90160, calcium dodecyl benzene sulfonate 6g, phenethyl phenol polyethenoxy ether phosphate 3g, agriculture breast 33#2g, alkylphenol polyoxyethylene 1g, isopropyl alcohol 10g, adds water to 100g.The method that above raw material is prepared to microemulsion routinely drops in mixing kettle mixes, and making main active ingredient weight percentage is 25% pyrazoles naphthalene bacterium amine-ZEN 90160 microemulsion.
Embodiment 10:
Take 5g pyrazoles naphthalene bacterium amine, 0.5g ZEN 90160, calcium dodecyl benzene sulfonate 6g, phenethyl phenol polyethenoxy ether 7g, vegetable oil are to 100g.The method that above raw material is prepared to missible oil routinely drops in mixing kettle mixes, and making main active ingredient weight percentage is 5.5% pyrazoles naphthalene bacterium amine-ZEN 90160 missible oil.
Embodiment 11:
Take 5g pyrazoles naphthalene bacterium amine, 30g ZEN 90160, lignin 2g, polyoxyethylene poly-oxygen propylene aether 4g, xanthans 0.15g, ethylene glycol 5g, silica ethane 0.10g, aluminium-magnesium silicate 0.5g, water complements to 100g, and under the effect of sand mill, making main active ingredient weight percentage is 35% pyrazoles naphthalene bacterium amine-ZEN 90160 suspending agent.
Embodiment 12:
Take 10g pyrazoles naphthalene bacterium amine, 10g ZEN 90160, lignin 2g, polyoxyethylene poly-oxygen propylene aether 4g, xanthans 0.15g, ethylene glycol 5g, silica ethane 0.10g, aluminium-magnesium silicate 0.5g, water complements to 100g, and under the effect of sand mill, making main active ingredient weight percentage is 20% pyrazoles naphthalene bacterium amine-ZEN 90160 suspending agent.
Embodiment 13:
Take 30g pyrazoles naphthalene bacterium amine, 12g ZEN 90160, lignin 2g, polyoxyethylene poly-oxygen propylene aether 4g, xanthans 0.15g, ethylene glycol 5g, silica ethane 0.10g, aluminium-magnesium silicate 0.5g, water complements to 100g, and under the effect of sand mill, making main active ingredient weight percentage is 42% pyrazoles naphthalene bacterium amine-ZEN 90160 suspending agent.
Embodiment 14:
Take 2g pyrazoles naphthalene bacterium amine, 5g ZEN 90160, sodium lignin sulfonate 8g, lauryl sodium sulfate 2g, ammonium sulfate 5g, polyvinyl alcohol 5g, borax 2g, diatomite complements to 100g, and it is 7% pyrazoles naphthalene bacterium amine-ZEN 90160 water dispersion granule that above raw material is made to main active ingredient weight percentage by water dispersible granular agent method.
Embodiment 15:
Take 4g pyrazoles naphthalene bacterium amine, 13g ZEN 90160, sodium lignin sulfonate 8g, lauryl sodium sulfate 2g, ammonium sulfate 5g, polyvinyl alcohol 5g, borax 2g, diatomite complements to 100g, and it is 17% pyrazoles naphthalene bacterium amine-ZEN 90160 water dispersion granule that above raw material is made to main active ingredient weight percentage by water dispersible granular agent method.
Embodiment 16:
Take 5g pyrazoles naphthalene bacterium amine, 15g ZEN 90160, lignin 2g, polyoxyethylene poly-oxygen propylene aether 4g, xanthans 0.15g, ethylene glycol 5g, silica ethane 0.10g, aluminium-magnesium silicate 0.5g, water complements to 100g, and under the effect of sand mill, making main active ingredient weight percentage is 20% pyrazoles naphthalene bacterium amine-ZEN 90160 suspending agent.
Embodiment 17:
Indoor biometrics test:
Take wheat leaf blight (Septoria tritici Rob.etDesm.) as test strain, adopt mycelial growth rate method indoor, measure different medicaments to concentration EC in the inhibition of bacterial strain 50value, adopts the abundant co-toxicity coefficient computational methods of Sun Yun, calculates the co-toxicity coefficient (CTC) of mixture, determines the synergy of mixture, and computational methods are as follows:
1. (conventionally select EC take a certain single dose in mixture as standard medicament 50junior), calculate:
2. single dose toxicity index=standard medicament EC 50/ certain single dose EC in addition 50× 100
3. toxicity index × B single dose proportion in mixture of toxicity index × A single dose of theoretical toxicity index=A single dose proportion+B single dose in mixture.
4. the EC of actual measurement toxicity index=standard single dose 50the EC of value/mixture 50value × 100
5. co-toxicity coefficient CTC=actual measurement toxicity index/theoretical toxicity index × 100
Evaluate the value of mixture according to the numerical value of CTC, CTC is greater than at 120 o'clock and shows that mixture has synergetic, CTC is less than at 80 o'clock and shows that mixture has Antagonism, CTC shows that between 80-120 mixture has summation action, generally speaking, the CTC>120 of mixture is the basic demand of agriculture chemical compounding research and development.
Indoor biometrics result is as follows:
Table 1: the indoor biometrics result of the different proportionings of pyrazoles naphthalene bacterium amine+ZEN 90160 to wheat leaf blight
Medicament Virulence regression equation EC 50(mg/L) Co-toxicity coefficient
10% pyrazoles naphthalene bacterium amine EC Y=2.2353X+2.9426 8.3256 ---
24% ZEN 90160 EC Y=4.5652X+3.3229 2.3301 ---
Embodiment 1(1:5) Y=1.2911X+4.6432 1.8896 140.1
Embodiment 2(1:2) Y=2.1334X+4.5272 1.6657 184.1
Embodiment 3(1:1) Y=3.8963X+4.2021 1.6024 227.1
Embodiment 4(2:1) Y=3.2503X+3.5358 2.8214 158.8
Embodiment 5(5:1) Y=2.4402X+3.672 3.5011 166.4
Field control effectiveness test:
Indoor biometrics shows good Pesticidal composition, must carry out actual field medicine effect test, field medicine effect test is the important means that whether final evaluation Pesticidal composition has using value under the impact of field integrated environment, therefore the pesticide mixed preparation, making with embodiment on the basis of indoor biometrics has carried out the field medicine effect test of control wheat leaf blight.
1. test is processed: this test medicine consumption is established respectively three concentration for the treatment of according to the difference of each composition, and contrast medicament is respectively 24% ZEN 90160 EC and 10% pyrazoles naphthalene bacterium amine EC and the test of blank clear water.
2. the each community of test method area is 66.7m 2, repeat 3 times; Inspection drug effect method before dispenser after Investigation and Prevention is: in test treatment region, adopt accidental sampling, sampling 5 points,, check wheat leaf blight occurrence degree by 0.5 square metre every.
Table 2: the field control effectiveness test of the different proportionings of pyrazoles naphthalene bacterium amine+ZEN 90160 to wheat leaf blight:
Figure BDA00002683665300081
Result by indoor biometrics and field medicine effect test shows, pyrazoles naphthalene bacterium amine and ZEN 90160 composition have obvious synergistic function, the control efficiency of composition is good, and control efficiency is all better than single dose kind, in agricultural application, has good using value.

Claims (10)

1. a bactericidal composition, is characterized in that containing pyrazoles naphthalene bacterium amine and ZEN 90160, and wherein the weight ratio of pyrazoles naphthalene bacterium amine and ZEN 90160 is 1 ~ 60:1 ~ 80.
2. bactericidal composition according to claim 1, the weight ratio that it is characterized in that pyrazoles naphthalene bacterium amine and ZEN 90160 is 5 ~ 30:5 ~ 60.
3. bactericidal composition according to claim 2, is characterized in that described pyrazoles naphthalene bacterium amine and the weight ratio of ZEN 90160 are 5 ~ 25:5 ~ 40, preferably 1:0.2 ~ 5.
4. the bactericidal composition that contains pyrazoles naphthalene bacterium amine and ZEN 90160 according to claim 1, is characterized in that the two weight percentage that accounts for composition of pyrazoles naphthalene bacterium amine and ZEN 90160 is 2-85%.
5. the bactericidal composition that contains pyrazoles naphthalene bacterium amine and ZEN 90160 according to claim 4, is characterized in that the two weight percentage that accounts for composition of pyrazoles naphthalene bacterium amine and ZEN 90160 is 5-60%.
6. the bactericidal composition that contains pyrazoles naphthalene bacterium amine and ZEN 90160 according to claim 5, is characterized in that the two weight percentage that accounts for composition of pyrazoles naphthalene bacterium amine and ZEN 90160 is 8-45%, preferably 25-30%.
7. the Synergistic bactericidal composition containing pyrazoles naphthalene bacterium amine and ZEN 90160 according to claim 1, is characterized in that take pyrazoles naphthalene bacterium amine and ZEN 90160 as main active ingredient and insecticides adjuvant, excipients are mixed with any one formulation allowing on agricultural chemicals.
8. the compound biocide composite containing pyrazoles naphthalene bacterium amine and ZEN 90160 according to claim 7, is characterized in that described formulation is missible oil, suspending agent, aqueous emulsion, wetting powder, microemulsion or water dispersion granule.
9. the application of the compound biocide composite containing pyrazoles naphthalene bacterium amine and ZEN 90160 claimed in claim 1 on preparation control resistance plant fungal disease.
10. the compound biocide composite containing pyrazoles naphthalene bacterium amine and ZEN 90160 according to claim 9 is in the application of preparing on the fungal disease germ killing drugs such as control rust, powdery mildew, leaf spot, brown spot, net blotch, moire disease, glume blight, leaf blight.
CN201210589487.2A 2012-12-31 2012-12-31 Bactericidal composition containing isopyrazam and picoxystrobin and application thereof Pending CN103891723A (en)

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Cited By (3)

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Publication number Priority date Publication date Assignee Title
CN104430370A (en) * 2014-10-31 2015-03-25 北京燕化永乐生物科技股份有限公司 Fungicidal composition
CN104705304A (en) * 2013-12-11 2015-06-17 上海中冠生物科技有限公司 Compounded bactericide and preparation method thereof
CN109380236A (en) * 2017-08-07 2019-02-26 江苏龙灯化学有限公司 A kind of bactericidal composition

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CN102316736A (en) * 2009-02-13 2012-01-11 拜尔农作物科学股份公司 The succinate dehydrogenase inhibitor prolongs the purposes of fruits and vegetables shelf life
WO2012052544A1 (en) * 2010-10-21 2012-04-26 Syngenta Limited Agrochemical concentrates containing isopyrazam
CN102771502A (en) * 2012-07-30 2012-11-14 陕西上格之路生物科学有限公司 Sterilizing composition containing js399-19 and amide fungicide

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Publication number Priority date Publication date Assignee Title
CN101035432A (en) * 2004-10-08 2007-09-12 辛根塔参与股份公司 Fungicidal compositions
CN102316736A (en) * 2009-02-13 2012-01-11 拜尔农作物科学股份公司 The succinate dehydrogenase inhibitor prolongs the purposes of fruits and vegetables shelf life
WO2012052544A1 (en) * 2010-10-21 2012-04-26 Syngenta Limited Agrochemical concentrates containing isopyrazam
CN102771502A (en) * 2012-07-30 2012-11-14 陕西上格之路生物科学有限公司 Sterilizing composition containing js399-19 and amide fungicide

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104705304A (en) * 2013-12-11 2015-06-17 上海中冠生物科技有限公司 Compounded bactericide and preparation method thereof
CN104430370A (en) * 2014-10-31 2015-03-25 北京燕化永乐生物科技股份有限公司 Fungicidal composition
CN109380236A (en) * 2017-08-07 2019-02-26 江苏龙灯化学有限公司 A kind of bactericidal composition

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Application publication date: 20140702