多菌灵和苯菌灵,multibenomyl and benomyl
1)multibenomyl and benomyl多菌灵和苯菌灵
1.Some research results of sampling preprocessing field in multibenomyl and benomyl analysis at home and overseas are analyzed,and it provides reference for selection of optimum preprocessing method in practical environmental monitoring.本文主要是介绍目前国内外多菌灵和苯菌灵分析中在样品预处理领域的一些研究成果,为实际环境监测中选择最合适的预处理分析方法提供参考。
英文短句/例句

1.THE CURRENT SITUATION OF PREPROCESSING TECHNOLOGY RESEARCH IN MUL TIBENOMYL AND BENOMYL ANALYSIS多菌灵和苯菌灵分析中预处理技术研究现状
2.Determination of carbendazim,thiabendazole and benomyl residues in vegetables and fruits by HPLCHPLC法测定常见蔬菜水果中多菌灵、噻菌灵和苯菌灵残留量
3.Analysis Methods of Carbendazim and Thiabendazole Residue in Edible Fungus;食用菌中多菌灵和噻菌灵残留分析方法研究
4.Residue Dynamic of Carbendazol and Thiophanate-Methyl in Pleuotus Ostreatus多菌灵和甲基硫菌灵在平菇中残留动态研究
5.DETERMINATION OF THIABENDAZOLE AND BENOMYL MULTI-RESIDUES IN VEGETABLE BY SOLID-PHASE EXTRACTION AND HIGH PERFORMANCE LIQUID CHROMATOGRAPHY;固相萃取—液相色谱分析蔬菜中噻菌灵和苯菌灵残留量
6.Simultaneous Determination of Thiabendazole and Carbendazim in Concentrated Fruit Juices by SPE-HPLCSPE-HPLC法同时测定多种浓缩果汁中的噻菌灵和多菌灵
7.Analysis of Carbendazim Residue Dynamics and Final Residue in Peach桃中多菌灵残留动态和最终残留分析
8.Study on residue dynamics of carbendazim in Vanilla planifolia Andrew and soil多菌灵在香草兰和土壤中的残留动态
9.The Molecular Mechanism and PCR Detection of Sclerotinia Sclerotiorum Resistance to Carbendazim;油菜菌核病菌对多菌灵抗性的分子机制和分子检测
10.Study on the Analytical Method of Carbendazol and Thiophanate-methyl Residues in Pleuotus ostreatus平菇中多菌灵·甲基硫菌灵残留分析方法研究
11.Simultaneous Determination of Residual Amounts of Thiabendazole and Carbendazim in Edible Fungus by HPLC with Solid Phase Extraction固相萃取-高效液相色谱法同时测定食用菌中多菌灵和噻菌灵残留量
12.Characterization of the Two Benomyl-Resistant Mutants of Magnaporthe Grisea;两株抗苯菌灵稻瘟病菌突变体的若干特性
13.Characteristics of a Carbendazim Degrading Bacterium Strain & GFP Marking;多菌灵降解菌的降解特性及GFP标记
14.Studies on Carbendazim-resistance of Colletotrichum Gloeosporioides Penz on Mango;芒果炭疽病菌对多菌灵的抗药性研究
15.Determination of the sensitivity of Botryosphaeria berengriana to Carbendazim fungicide苹果轮纹病菌对多菌灵的敏感性测定
16.Analysis and Evaluation of Polysaccharides and Triterpenes Contents of Submerged Culturing Mycelium of Strains of Ganoderma Lucidum灵芝品种的菌丝体多糖和三萜含量分析评价
17.Influlences of carbendazim on acetylcholinesterase and hepato toxicity of immune system多菌灵对乙酰胆碱酯酶和免疫系统的毒性影响
18.Carbendazim Affects Testicular Development and Spermatogenic Function in Rats多菌灵对大鼠睾丸发育和生精功能影响的研究
相关短句/例句

Benomyl['ben?mil]苯菌灵
1.Determination of Carbendazim and Benomyl in Ambient Water by HPLC;固相萃取-高效液相色谱法测定环境水体中多菌灵和苯菌灵
2.Direct Determination of Benomyl in Wettable Powder Formulations by High Performance Liquid Chromatography;液相色谱法直接测定可湿性制剂苯菌灵
3.Preparation of benomyl 70% WDG;70%苯菌灵水分散粒剂的研制
3)Benlate['benleit]苯菌灵
4)Carbendazol多菌灵
1.Determination of Carbendazol,Imidacloprid and Thiophanate Methyl in Soil by High Performance Liquid Chromatography;高效液相色谱法同时测定土壤中多菌灵、吡虫啉和甲基托布津的残留
2.Simultaneous determination of 5-HMF,patulin,dimethoate and carbendazol in apple juice by RP-HPLC;RP-HPLC法同时检测苹果汁中5-HMF、展青霉素、乐果及多菌灵
3.Determination of Residual Carbendazol,Imidacloprid and Thiophanate Methyl in Fruits and Vegetables by HPLC;高效液相色谱法测定水果和蔬菜中残留的多菌灵、吡虫啉和甲基托布津
5)Carbendazim多菌灵
1.Determination of Carbendazim in Fruits Using Novel Activated Carbon Fiber Solid Phase Microextraction Coupled with Gas Chromatography;水果中多菌灵的衍生炭纤维固相微萃取气相色谱测定法
2.Analysis of 50% Carbendazim and Thiram WP by HPLC;50%多菌灵·福美双可湿性粉剂高效液相色谱分析
3.Rapid Determination of Carbendazim in Lentinulaedodes by Derivative Synchronous Fluorescence Spectrometry;导数同步荧光法快速检测香菇中的多菌灵
6)carbendazin多菌灵
1.Enhanced solubilization of carbendazin by sulfonated β -cyclodextrin;磺化环糊精对农药多菌灵的增溶的应用研究
2.Research on Optimum Mixing Proportion of Triadimefon and Carbendazin in Seedcoating;种衣剂中三唑酮与多菌灵混配最佳配比研究
3.By the mycelium growth rate methods,the toxicity of six fungicides such as 80% zineb wettable powder,80% mancozeb wettable powder,75% chlorothanil wettable powder,70%thiophanate-methyl,50% carbendazin wettable powder and 50% prochloraz-manganese chloride complex wettable powder were tested against Colletetrichum orbicalare.采用生长速率法测定80%代森锌可湿性粉剂zineb、80%代森锰锌可湿性粉剂、75%百菌清可湿性粉剂、70%甲基硫菌灵可湿性粉剂、50%多菌灵可湿性粉剂、50%咪鲜胺锰盐可湿性粉剂等6种杀菌剂对西瓜炭疽病菌(Colletetrichum orbicalare)的毒力,咪鲜胺锰盐和多菌灵的毒力最高,其EC50分别为0。
延伸阅读

苯菌灵分子式:C14H18N4O3分子量:290.18CAS号:17804-35-2性质:白色结晶固体,熔点前分解。不溶于水和油类,溶于氯仿、丙酮、二甲基甲酰胺。稍有苦味。制备方法:2-苯并咪唑氨基甲酸甲酯在惰性溶剂中与异氰酸正丁酯反应,在室温下搅拌至出现清澈溶液或仅有少量固体出现。用途:该品是高效、广谱、内吸性杀菌剂,具有保护、铲除和治疗作用,可用于喷洒、拌种和土壤处理。主要用于防治蔬菜、果树、油料作物病害。