敌敌畏,dichlorvos
1)dichlorvos[英][dai'kl?:v?s][美][da?'kl?r,vos, -v?s, -'klor-]敌敌畏
1.Isolation and Identification of a Bacterium DDB-1 Capable of Degrading Dichlorvos and Trichlorfon Simultaneously and Its Degrading Characteristics;敌敌畏、敌百虫高效降解菌株DDB-1的分离鉴定及降解特性研究
2.Acute toxicity of dichlorvos to earthworms;敌敌畏对蚯蚓的急性毒性试验
3.Comparison of sensitivity to Dichlorvos of Rhacophorus megacephalus tadpole at different developmental stages;不同发育阶段的斑腿树蛙蝌蚪对敌敌畏遗传毒性的敏感性(英文)
英文短句/例句

1.Dichlorvos emulsifiable concentratesGB2548-1993敌敌畏乳油
2.Prospective Study of Lethal Blood Concentraton of DDVP in Humans人体敌敌畏中毒的血液致死浓度探讨
3.Antagonism of penequinine hydrochloride (PCHE) on DDVP (dichlorvos) poisoning盐酸戊乙奎醚对抗敌敌畏的毒性作用
4.40% Rogon and 50% DDVP(1:1)1000-2000x;40%乐果乳剂加50%敌敌畏(1:1)1000~2000倍;
5.RESEARCH OF SLOW-RELEASING FUMIGATION OF DDVP IN SMALL-PACKAGERICE敌敌畏对小包装大米缓释熏蒸的研究
6.Comparision Or DDVP Production Costs Between Two Different Processes两种工艺路线生产敌敌畏的成本比较
7.Respiratory Function and Immunological Biochemical Changes in Workers Exposed to DDVP敌敌畏对外呼吸功能和生化免疫影响
8.In Utero Exposure to Dichlorvos Induces Apoptosis of Leydig Cells in Rats敌敌畏对大鼠睾丸Leydig细胞凋亡的影响
9.Effect of hemoperfusion on toxicokinetics of DDVP血液灌流对敌敌畏代谢动力学的影响
10.The results showed that 14%Imidacloprid+DDVP,4.5%Imidacloprid and 30% DDVP+omethoate were efficient,and 14%Imidacloprid+DDVP exhibits high efficiency.结果表明14%吡虫啉. 敌敌畏注干液剂、4.5%吡虫啉注干液剂和30%敌畏.
11.Observation of DDVP to Induction of Micronuclei and Nuclear anomalies in Erythrocytes of Loach敌敌畏诱发泥鳅红细胞微核及核异常的观察
12.Determination of DDVP in Water Samples with Flow Injection-Fluorometry Technique流动注射——荧光法测定水样中敌敌畏含量
13.Effect of puerarin on β-endorphin of DDVP poisoned rats葛根素对敌敌畏中毒大鼠β-内啡肽的影响
14.DDVP Detained In Stacks Suffocates Controlling Corn Borers敌敌畏垛内滞留熏蒸防治玉米螟研究报告
15.Rapid Determination of DDVP in Human Plasma by Gas Chromatography气相色谱法快速测定人血浆中敌敌畏浓度
16.Study on the Therapeutic Effects of Hemoperfusion for Acute Severe Dichlorvus Poisoning;血液灌流治疗急性重度敌敌畏中毒的疗效研究
17.AR Expression in Mice with Hypospadias Induced by Dichlorvos;AR在敌敌畏诱导小鼠尿道下裂中的表达
18.Microbial Diversity in the Phyllosphere of Rape and Degradation of Dichlorvos by the Microbes油菜叶际微生物多样性及其对敌敌畏的降解
相关短句/例句

DDVP[,di:,di:vi:'pi:]敌敌畏
1.DDVP Photocatalytic Degradation of TiO_2 Films Grownby Mid-Frequency Reactive Magnetron Sputtering;中频反应磁控溅射TiO_2薄膜对敌敌畏的光催化降解性能
2.Determination of DDVP by the Piezoelectric Sensor with Gas-sensitive LB Membrane;敌敌畏的LB气敏膜压电晶体传感器的测定
3.Determination of DDVP in Water Samples with Flow Injection—Fluorometry Technique;流动注射——荧光法测定水样中敌敌畏含量
3)dichlorovos敌敌畏
1.Determination of dichlorovos residue in rice by microwave-assisted extraction/HPLC;微波萃取-高效液相色谱法测定稻谷中敌敌畏的残留量
2.05% dichlorovos were made by 80% dichlorovos emulsion.16%氧化乐果溶液;用80%的敌敌畏乳油配制成质量浓度分别为0。
4)Dichlovos敌敌畏
1.Study of Effect of Ozone on Dichlovos and Deltamethrin;应用臭氧降解敌敌畏、溴氰菊酯的试验研究
2.It degraded dichlovos with glucose which acted as another carbon source through co-metabolism.从受过有机磷农药污染的污泥中分离到一株降解敌敌畏的真菌。
3.A kinetic spectrophotometric method for the determination of trace dichlovos based on its catalytic oxidation of benzidine with H_2O_2 in the presence of weak acidity buffer medium of citric acid and sodium citrate was investigated.应用本试验方法结合便携式分光光度计可以对农产品中的敌敌畏进行快速分析。
5)80% Dichlorvos80%敌敌畏
1.The prescription of synergetic pesticides with short residual toxicity period of 5 d is as following: the weight ratio of 80% Dichlorvos,50 % Phoxim,synergist and water is 1∶1∶1∶2 000.在残毒期为5 d的短残毒期配方中,80%敌敌畏、50%辛硫磷、增效剂和水的质量比为1∶1∶1∶2 000;残毒期为11 d长残毒期配方中40%的灭多威、50%的辛硫磷、增效剂和水的质量比为1∶1∶1∶2 000。
6)pesticides dichlorvos农药敌敌畏
1.The effects of different zeolite sizes and doping amounts(mass fraction) of rare earth oxide on the photocatalytic degradation of pesticides dichlorvos were investigated.通过XRD和IR方法对样品进行表征,研究了不同沸石粒径及不同稀土氧化物掺杂量(质量分数)对农药敌敌畏光催化降解性能的影响。
延伸阅读

敌敌畏  敌敌畏是50年代初由美国壳牌公司、瑞士汽巴公司和联邦德国法本拜耳公司以各自的技术开发生产的。生产方法有两种:    ①由敌百虫在溶剂中经碱解制得:         ②用甲醇与三氯化磷反应生成亚磷酸三甲酯,后者再与三氯乙醛进行珀考夫重排反应缩合制得:       3CH3OH+PCl3─→(CH3O)3P+3HCl     (CH3O)3P+Cl3CCHO─→(CH3O)2PO2CHCCl2+CH3Cl    敌敌畏具触杀、胃毒和熏蒸作用,能抑制害虫神经系统的胆碱酯酶使其致死,杀虫谱广,药效迅速,残留期短,通常加工成乳油、油剂和控制释放剂(见农药剂型)使用,主要用于防治卫生害虫。毒性较大,使用时注意防护。