Fipronil
- 网络氟虫腈;芬普尼
-
Applied studies of fipronil ( regent ) in the control of rice pest insects
锐劲特在水稻主要害虫总体防治中的应用研究
-
Effects of Deacarid , Flumorph-Mn-Zn and Fipronil on Respiration of Microbe and Safety Evaluation ;
研究了齐螨素、氟吗锰锌和锐劲特对土壤呼吸强度的影响,并对其进行了安全性评价。
-
This paper reports the activities of new heteronuclear insecticide FIPRONIL with the special mechanism on three kinds of health pests .
研究新型杂环杀虫剂FIPRONIL对蚊蝇蟑三种卫生害虫的活性,评价其在卫生害虫防治领域中应用的实际意义。
-
Research on Synthetic Methods of Fipronil with Catalytic-oxydation ;
研究并建立丁烯氟虫腈在大米中残留分析方法。
-
Fipronil SC is a high active broad-spectrum insecticide .
氟虫腈悬浮剂是一种高活性的广谱杀虫剂。
-
A method for the determination of fipronil in phytogenic food by using GC / ECD was developed .
研究了测定植物性食品中锐劲特残留的气相色谱方法。
-
Development of 5 % Fipronil + Cartap Floating and Effervescent Dispersible Granules
5%氟腈·杀螟丹水漂浮泡腾分散颗粒剂的研制
-
After being treated at the sublethal dosages , the mortality of tested insects increased with fipronil concentration and observation time .
亚致死剂量锐劲特处理小菜蛾试虫后,其死亡率随着剂量的升高、观察时间的延长而增加。
-
A method was developed for determination of fipronil residue in leguminous vegetables with solid-phase extraction ( SPE ) combined with gas chromatography .
建立氟虫腈在豆类蔬菜中的残留气相色谱分析方法。
-
A paddy field and fishpond simulation ecosystem was established to study the Fipronil pesticide environment behavior and its effects on crab and shrimp in the ecosystem .
通过建立稻田-鱼塘模拟生态系统,研究锐劲特农药在稻田-鱼塘模拟生态系统中的迁移、转化规律,及其对蟹、虾等水生生物的影响。
-
Results All the mice acutely poisoned by fipronil at varied doses showed some exciting symptoms in the central nervous system ( CNS ), including convulsion .
结果各剂量组小鼠均出现抽搐等中枢神经系统兴奋症状;
-
Objective To observe the effect of fipronil on contractile activity of the isolated gastric muscle strips in mice and the influence of paspertin on it .
目的:观察氟虫腈对小鼠离体胃平滑肌的作用及甲氧氯普胺对其的影响。
-
The results of host egg exposure showed that imidacloprid , triazophos , fipronil and chlorpyrifos were all badly detrimental to adult survival , parasitism capacity ( F0 ) and adult emergence ( F1 ) .
采用卵卡浸渍法测定药剂对稻螟赤眼蜂成蜂影响的结果表明,吡虫啉、三唑磷、氟虫腈、毒死蜱能显著影响F0代成蜂存活、寄生及F1代成蜂羽化。