氟磺胺草醚

  • 网络Fomesafen
氟磺胺草醚氟磺胺草醚
  1. 微量2,4-D丁酯对氟磺胺草醚增效作用的研究

    The Primary Study on Synergy of 2,4-D butyl to Fomesafen

  2. 穴2雪底泥对氟磺胺草醚有较强的吸附能力,引入药剂3d内吸附量迅速上升至最高点(0.362mg·kg-1)后下降,5d内就达到吸附动态平衡;

    The sediment had a higher capacity to adsorb fomesafen . The adsorption would reach maximum value ( 0.362 mg · kg-1 ) within 3 days and equilibrium within 5 days after treatment .

  3. 盆栽试验研究了2,4-D丁酯、油菜素内酯对大豆的安全性和对氟磺胺草醚除草活性的影响。

    By pot trial we studied the influence of 2,4-D butyl and brassinolide to the safety of soybean and to efficacy of fomesafen .

  4. /hm~2时与氟磺胺草醚混用对大豆生长有抑制作用。

    / hm2 mixing with fomesafen can inhibit soybean growth .

  5. 氟磺胺草醚在花生和大豆田中的残留动态

    Residue Dynamics of Fomesafen in Peanut and Soybean Fields

  6. 氟磺胺草醚的毒性研究

    Study on the Toxicity of Fomesafen

  7. 氟磺胺草醚生产中废水的处理

    Treatment of fomesafen herbicide wastewater

  8. 一株降解氟磺胺草醚的黑曲霉菌特性

    Characteristics of Fungus Degeneration Fomesafen

  9. 结果表明:2,4&D丁酯与氟磺胺草醚、精稳杀得混用具有提高除草效果的作用;

    The results showed that : there was synergism to combination between 2,4-D butyl and fomesafen , fluazifop-p-butyl ;

  10. 评价了主要长残留性除草剂氯嘧磺隆、氯磺隆、莠去津、咪草烟、异草酮、氟磺胺草醚对后茬作物的安全间隔期。

    The safety period of the long residue herbicides was evaluated , including chlorimuron , chlorsulfuron , atrazine , imazethapyr , clomazone and fomesafen .

  11. 第一次农药流失发生在施药后第二天,其中随径流水流失的氟磺胺草醚含量是随土壤流失的4.8倍,且随着时间推移他们之间比率逐渐下降,最后水中则无残留存在;

    Occurring at day 2 after application , the first runoff of fomesafen by water was 4.8 times to that by sediment , the ratio gradually decreased .

  12. 氟磺胺草醚残留的时空分布变化以土壤表层0-2.5cm处最为明显,上部坡0-2.5cm土壤里的残留到实验结束时减少了约9倍;

    Temporal and spatial distribution of 14C-fomesafen residues in 0-2.5 cm soils appeared obviously different from the other deeper soil layer and 14C-fomesafen residues are less mobile vertically .

  13. 结果表明氟磺胺草醚急性毒性会影响大鼠生长发育,会造成肝肾生化功能的损害,能造成动物肝、肾、肺、及脾的病理损害。

    The results show that fomesafen acute toxicity affect rat growth , can cause liver and kidney damage biochemical functions , can cause liver , kidney , lung animals , and spleen pathological damage . 3 .

  14. 毒理学试验表明,根据我国农药急性毒性分级标准,合成的三氟羧草醚和氟磺胺草醚属于低毒物质。

    The toxicity of Acifluorfen and Fomesafen prepared were lowly poisonous matters according to pesticide classified standard of acute toxicity in our country .