diniconazole
- n.烯唑醇
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Study on Applied Technology of Diniconazole Ultramicro Powdered Seed Coating Chemical of Maize
烯唑醇超微粉体玉米种衣剂应用技术研究
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The Influence of Diniconazole Seed Dressing to Wheat Seed Emergence and Seedling Growth
烯唑醇种衣剂对小麦出苗及生长的影响研究
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Effect of Diniconazole on Controlling of Head Blight of Wheat
速保利防治小麦赤霉病效果研究
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The Technological Improvement of Diniconazole in the First Abbreviation Reaction
特谱唑第一步缩合反应的工艺改进
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The result indicates that the virulence of diniconazole is higher that other three pesticides .
试验结果表明,烯唑醇的毒力高于其他三种原药。
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Studies of Chiral Discrimination of Diniconazole by Molecular Mechanics
三唑烯醇手性识别的分子力学研究
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The Residue Dissipation Dynamics of Diniconazole in Soil and Wheat and Its Microbial Degradation
烯唑醇在土壤、小麦中的残留消解动态及其微生物降解研究
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Diniconazole Is a highly active , low toxic fungicide with broad spectrum on controlling disease .
烯唑醇是一种高效、低毒、广谱杀菌剂,并具有良好的植物生长调节活性。
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A Study on the Dissipation and Residue of Diniconazole in Pears and Soils
烯唑醇在梨及土壤中的残留研究
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Experiment on the Control of Rice Damping-off by Diniconazole in Non-flooded Rice Seedling Bed
烯唑醇防治水稻肥床旱育秧苗立枯病的效果
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Barley seeds were coated by 5 % Diniconazole ultramicro powder .
采用5%烯唑醇超微粉体种衣剂处理大麦种子,研究该种衣剂对大麦主要病害的防治效果及对大麦生长发育的影响。
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According to the single dose screening principle , Diniconazole and Imazalil were chosen to screen compound proportion .
根据单剂筛选的原则,选择了烯唑醇和抑霉唑进行复配比例筛选。
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It has a remarkable effect to control take-all disease of wheat using diniconazole ( s-3308L ) .
特谱唑防治小麦全蚀病有明显效果。
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The results showed that germination percentage and germinating energy had increasing trend by 5 % diniconazole micro powdered seed coating chemical .
试验结果表明,5%烯唑醇微粉种衣剂对玉米的发芽率、发芽势有提高的趋势。
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Studies on the Microemulsion of 5 % Diniconazole
5%烯唑醇微乳剂的研制
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Effects of systemic fungicide diniconazole on the development of stripe rust and powdery mildew on their host wheat
内吸杀菌剂烯唑醇对小麦条锈菌和白粉菌发育影响的研究
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Diniconazole is a new systemic triazole fungicide .
速保利是一种新型三唑类内吸性杀菌剂。
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The results showed that the seeds were coated by 1:200-300 diniconazole ultramicro powdered chemical can control maize head smut effectively .
试验结果表明,用烯唑醇微粉种衣剂1∶200~300包衣,可有效防治玉米丝黑穗病。
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Spectra for ocean swell Field test showed germination of that peanut seed treated with diniconazole was suppressed and emergence was delayed .
研究表明,用特谱唑拌种能抑制花生种子的萌发,推迟出苗;
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Effect of Super Micro-powder Seed Coating Agent of 5 % Diniconazole on the Prevention and Cure of Head Smut of corn
5%烯唑醇微粉种衣剂防治玉米丝黑穗病效果初报
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Control Effect of 9 % Corn Seed Coating of Chlorpyrifos & Diniconazole on Hypogenous Pests and Maize Head Smut
9%毒死蜱·烯唑醇悬浮种衣剂对玉米地下害虫、丝黑穗病的防治效果
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The results showed that carbendazim was the most effective one . Imazalil and diniconazole were inferior to carbendazim .
结果表明:多菌灵的抑菌效果最好,其次是抑霉唑和烯唑醇,三唑酮的抑制效果最差。
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At the dosage of 20 g a. i. / 100 kg corn seed , diniconazole was economically effective and safe to corn plant .
应用烯唑醇不同剂量拌种试验结果,以20克拌玉米种100公斤比较适宜,既有效又经济,且对玉米安全。
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In contrast , inhibition of ABA catabolism by diniconazole significantly arrested seed germination , suggesting that the regulation of ABA catabolism plays a major role .
相比,烯唑醇处理抑制ABA的分解显著抑制了种子萌发,这表明ABA的分解代谢的调节起了主要作用。
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By using alkalamides as the catalyst , diniconazole has been synthesized by the reaction of triazolyl-trimethylacetone and2,4-dichlorobenzaldehyde .
以有机碱为催化剂,通过三唑三甲基丙酮与2,4-二氯苯甲醛的反应,合成了具有生物活性的外消旋体化合物烯唑醇。
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The result of screening is that the proportion of Diniconazole and Imazalil is 4:1 , and this co-toxicity coefficient is the highest , and exhibits an additive effect . 2 .
本试验筛选的结果为烯唑醇与抑霉唑比例为4:1时,共毒系数最高,表现为相加作用。
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Dissolved the samples by methanol , with diethyl phthalate as internal standard , the content of diniconazole is separated and determined by means of Liquid Chromatography under high pressure on the ODS column and ultraviolet detector .
烯唑醇含量分析试样用甲醇溶解,以邻苯二甲酸二乙酯为内标物,在ODS柱和紫外检测器上对试样中的烯唑醇进行高压液相色谱分离和测定。
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The prevention from maize head smut was 47.0 % ~ 60.3 % , the increasing yield was 38.6 % ~ 58.7 % under the vaccinate condition using diniconazole micro powdered seed coating chemical for wrapping .
用烯唑醇微粉种衣剂包衣,在接种条件下防治玉米丝黑穗病效果在51.2%~60.3%,增产率38.6%~58.7%。
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The mixture of chlorothalonil and diniconazole in 6:4 and the mixture of procymidone and chlorothalonil in 2:8 are synergistic interaction combinations to Bipolaris maydis .
速克灵与烯唑醇对玉米小斑菌未发现增效组合,百菌清与烯唑醇6:4、速克灵与百菌清2:8的混配组合为玉米小斑菌的增效组合。
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The results showed that six bacteria all were aerobiosis . The degradation efficiency to diniconazole of 1 # 、 3 # 、 4 # 、 6 # could reach above 30 % and 1 # was predominant bacterium .
实验结果表明,这六种菌都是好氧菌种,对烯唑醇降解率大于30%的有1、3、4、6,其中1为优势菌种。