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1)  Cyanox
杀螟腈
2)  cartap
杀螟丹
1.
Study on genotoxicity of pesticide cartap;
杀虫剂杀螟丹遗传毒性检测
2.
The Study on Degradation Dynamic of Cartap in Paddy and Soil and Water;
杀螟丹在水稻植株及稻田土壤、水中的残留降解动态研究
3.
Realized heritability of resistance to dimehypo and cartap in diamondback moth, Plutella xylostella;
小菜蛾对杀虫双和杀螟丹抗性的现实遗传力
3)  fenitrothion [,feni'trəuθiɔn]
杀螟硫磷
1.
Study on environmental estrogenic activity of fenitrothion in vitro and its mechanism;
杀螟硫磷体外环境雌激素活性及机制研究
2.
Studies on isolation identification of fenitrothion degradation bacteria FDS-1 and its degradation characteristics;
杀螟硫磷降解菌FDS-1的分离鉴定及其降解特性
3.
Microencapsulation of Fenitrothion;
杀螟硫磷微胶囊化的研究
4)  fenitrothion [,feni'trəuθiɔn]
杀螟松
1.
A combination of carbaryl & fenitrothion can expand insecticide spectrum and improve the effect against insects.
为扩大杀虫谱 ,西维因与杀螟松混配 (简称西杀合剂 ,以下同 ) 10 ppm药效即相当于防虫磷 30 ppm时的药效。
2.
)(Coleoptera:Curculionidae) and 4 strains of Cryptolestes ferrugineus (Stepens)(Coleoptera:Cucujidae) resistant to phosphine were tested for corss resistance to fenitrothion and to chloropicrin.
用 4个谷蠹、5个米象和 4个锈赤扁谷盗磷化氢抗性品系进行了磷化氢抗性品系害虫对杀螟松和氯化苦的交互抗性试验。
3.
Degradation characteristics of parathion,parathion methyl and fenitrothion by a enzyme,extracted from the isolated strain YF11,was determined.
从降解菌YF11中提取了降解酶并测定了该降解酶对对硫磷、甲基对硫磷和杀螟松的降解特性。
5)  Xinshamindan
新杀螟丹
1.
Objective To evaluate the molluscicidal effects, investigate the optimum dosage of Xinshamindan and provide scientific basis for its application in field.
目的 评价新杀螟丹的灭螺效果 ,探讨适宜的杀螺剂量 ,为现场应用提供科学依据。
6)  Sumithion
杀螟松
1.
The results showed that under the routine dose of pesticide in Japan, the toxicity of Imidacloprid and Buprofezin was lower than that of Sumithion for all the 4 developmental stage of T.
结果表明,在日本农药的常规使用剂量(1000×)下,吡虫啉和优乐得对稻螟赤眼蜂的4个虫态的毒性均较低,且对其当代种群的增长均无不良影响;而杀螟松对其毒性较高,且对当代种群的增长有显著的抑制作用。
补充资料:杀螟腈
分子式:C9H10NO3PS
分子量:243.21
CAS号:2636-26-2

性质:玻珀色液体。熔点14-15℃,沸点119-120℃(12Pa,分解),相对密度(25/4℃)1.260,折光率nD251.5413。易溶于甲醇、乙醇、丙酮、氯仿。30℃时水中溶解度为46ppm。

制备方法:由O,O-二甲基氯代硫逐磷酸酯与氰基酚反应得到。原药含量约93%,每吨产品消耗4-氰基苯酚530kg,无水碳酸钾620kg,O,O-二甲基硫逐磷酰氯720kg,其中4-氰基苯酚由对羟基苯甲酸与尿素、五硫化二磷于50-300℃反应制得。

用途:用于防治果树、蔬菜和观赏植物上的鳞翅目害虫,也可防治蟑螂、苍蝇和蚊子之类的卫生害虫。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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