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1)  formetanate hydrochloride
伐虫脒
1.
This paper described a new method for determination of formetanate hydrochloride residue in vegetable.
本文提出了一种用高效液相色谱分析蔬菜作物中伐虫脒盐酸盐农药残留量新方法。
2)  Carzol SP
伐虫脒盐酸盐
3)  acetamiprid
啶虫脒
1.
Effects of SDBS and CTAB on photolysis of acetamiprid;
阴-阳离子表面活性剂对啶虫脒在水溶液中光解的影响
2.
Determination of acetamiprid pesticide residues in cucumber by gas chromatography;
气相色谱法测定黄瓜中啶虫脒农药残留
3.
HPLC analysis of acetamiprid;
啶虫脒的高效液相色谱分析
4)  acetaniprid
啶虫脒
1.
Study on the Residue Behavior of Novel Pesticide Acetaniprid in Cucumber;
杀虫剂啶虫脒在黄瓜上的残留动态研究
2.
Study on stability of acetaniprid micro-emulsion;
3%啶虫脒微乳剂的稳定性研究
3.
Efficacy of 2% acetaniprid gel bait against Blattella germanica;
2%啶虫脒杀蟑胶饵对德国小蠊的灭效研究
5)  acetamiprid
乙虫脒
1.
The results of field traial and toxicity in the laboratory showed that acetamiprid was most toxic to wheat Aphis,It's LC50was 5.
经室内毒力测定和田间防治试验结果表明,乙虫脒对麦蚜具有较高的毒力,其LC50为58961mg/kg。
2.
The results showed that:1) Acetamiprid had excellent systemic toxicity against Scirpophaga incertulas and Chilo suppessalis, the mortality of Chilo suppessalis with 25 mg/L acetamiprid was 90%, and that of Scirpophaga incertulas with 100 mg/L acetamiprid was 92.
通过室内生物测定和田间试验 ,较系统地研究了乙虫脒对水稻螟虫的内吸、触杀和杀卵活性以及田间效果 ,同时评价了其对天敌的安全性。
6)  chlordimeform
杀虫脒
1.
In the present work, TLC was used as a rapid method for determination of chlordimeform in honey .
建立了测定峰蜜中杀虫脒的薄层色谱法,不需要大型仪器和特殊试剂,不受基体干扰,整个测定过程仅需3h,回收率在70%以上,能满足蜂蜜生产和加工现场检验工作需
2.
Three sensitive enzyme-linked immunosorbent assays(ELISAs) indirect competitive ELISA,direct competitive ELISA, and reverse direct competitive ELISA-with immobilized antibody were developed for the determination of chlordimeform residues in rice.
用抗杀虫脒单克隆抗体为试剂,建立了间接竞争法、直接竞争法和标记抗原的竞争法等3种测定大米中杀虫眯残留量的ELISA法,标准曲线上抑制率为50%时对应的杀虫眯浓度分别为1。
3.
The online enrichment of chlordimeform was carried out by capillary electro.
利用毛细管电泳电堆积技术实现了对杀虫脒的在线富集,建立了一种测定蜂蜜中残留杀虫脒的毛细管电泳检测新方法,对影响组分峰高的缓冲液pH值、磷酸盐浓度、甲醇浓度、分离电压、样品中甲醇浓度以及进样时间进行了优化。
补充资料:啶虫脒
分子式:C10H11ClN4
分子量:222.68
CAS号:160430-64-8

性质:外观为白色晶体,熔点为101.0-103.3℃,蒸汽压≤1×10 -6Pa(25℃)。25℃时在水中的溶解度4200ml/L,能溶于丙酮、甲醇、乙醇、二氯甲烷、氯仿、乙腈、四氢呋喃等。在PH=7的水中稳定,PH=9时,于45℃逐渐水解,在日光下稳定。

制备方法:暂无

用途:与吡虫啉属同一系列,但它的杀虫谱比吡虫啉更广,主要对黄瓜、苹果、柑桔、烟草上的蚜虫具有较好的防治效果。 由于啶虫脒作用机制独特,对有机磷、氨基甲酸酯,以及拟除虫菊酯类等农药品种产生抗药性的害虫具有较好效果。

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