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1)  ZJ0712 and propamocarb
苯醚菌酯·霜霉威
1.
Among a novel fungicide mixtures screened in vivo to downy mildew, the results showed the mixtures took high bioactivity when the proportion of ZJ0712 and propamocarb was 1:20.
苯醚菌酯·霜霉威复配新型杀菌剂,经室内生物活性测定结果表明:苯醚菌酯·霜霉威以质量比1:20混配时,该组合物对黄瓜霜霉病具有很高的杀菌活性。
2)  ZJ0712
苯醚菌酯
1.
Determination of sensitivity baseline of Sphaerotheca fuligine to ZJ0712 and assessment of Its laboratory resistant risk;
黄瓜白粉病菌对苯醚菌酯敏感基线的建立及室内抗药性风险评价
3)  propamocarb
霜霉威
1.
The sensitivities to propamocarb of the 38 strains of Phytophthora nicotianae var.
nic-otianae菌株,采用菌落生长速率法测定了这些菌株对霜霉威的敏感性。
2.
2% propamocarb aqueous solution against cucumber seedling damping-off was carried.
采用菌丝生长速率法测得霜霉威对引起黄瓜猝倒病的瓜果腐霉菌的EC50为35。
4)  ZJ0712
苯醚菌酯(ZJ0712)
1.
Induction and Characteristics of Fungicide ZJ0712-resistant Blumeria graminis Mutants
抗苯醚菌酯(ZJ0712)小麦白粉病菌突变体的诱导及其生物学特性
5)  Pseudoperonospora cubensis
霜霉病菌
1.
Several infection factors of Pseudoperonospora cubensis.;
黄瓜霜霉病菌侵染若干因子的研究
2.
The efficacy of 10% ZJ 0712 SC was evaluated in laboratory and fieldagainst Sphaerotheca fuliginea and Pseudoperonospora cubensis of cucumber.
47μg/mL,对霜霉病菌P seudoperonospora cubensis的EC50和EC90值分别为0。
6)  Plasmopara viticola
霜霉病菌
1.
The Relationship between Cell Wall Hydrolase Activity Induced by Plasmopara viticola and Resistance of Grapevine to Downy Mildew;
霜霉病菌对葡萄细胞壁水解酶的诱导作用与寄主抗病性的关系
2.
The relationships,which are among the different grapevine varieties resistance to downy mildew resulted from inoculation of Plasmopara viticola,the enzymatic activity of phenylalanine ammonia lyase(PAL),the content of chlorogenec acid,and the content of lignin,are studied using pot culture and inoculation system.
对不同抗病类型的葡萄品种受霜霉病菌(Plasmopara viticola)侵染后苯丙烷代谢途径的苯丙氨酸解氨酶(PAL)活性及绿原酸和木质素含量的变化与抗病性的关系进行了相关分析。
3.
The relationship between the activity of POD and its change of isoenzyme tables and the resistance to grapevine downy mildew with different disease-resistant types of grapevine varieties by Plasmopara viticola was studied through applying the method of pot culture inoculation.
采用盆栽接种的方法研究了不同抗病类型的葡萄品种感染霜霉病菌(Plasmopara viticola)后,过氧化物酶(POD)活性及同工酶酶谱的变化与葡萄抗霜霉病的关系。
补充资料:苯醚
分子式:C12H10O
分子量:170
CAS号:101-84-8

性质:无色结晶或液体。易燃。低毒。具有桉叶油气味。熔点28℃,沸点258℃,凝固点27℃,相对密度1.0863(20/4℃),折射率1.5780,闪点115℃,自烯点617.8℃。溶于乙醇、苯、乙醚、冰醋酸,不溶于水、无机酸溶液和碱溶液。

制备方法:由氯苯与苯酚在苛性碱溶液中,以铜为催化剂缩合而得。氢氧化钾、苯酚、氯苯按摩尔比配比1:1.4:1.06混合,加入铜粉,搅拌加热进行缩合反应。反应结束后,用酸处理,分出二苯醚油层,经减压蒸馏得到二苯醚成品。也可将氯苯和苯酚在氢氧化钠溶液中反应。二苯醚的另一工业来源是作为氯苯水解制苯酚时的副产品。用氢氧化钠进行氯苯水解的过程中,约有10%的氯苯转化成二苯醚,有些工艺这个比例可达20%。通过萃取精制即得二苯醚产品。

用途:主要用作有机高温载热体组分之一。由二苯醚和联苯按质量比73.5:26.5配制的混合物称导生A。使用温度范围:气相232-399℃,液相21-399℃,工作温度不大于400℃。由二苯醚与甲基联苯组成的混合物称导生LF,凝固点低,在-30℃仍可使用,是低温,低粘度载热体。二苯醚具有香叶和洋海棠的香气,也带有甜橙和洋水仙的香调,在香料行业称为结晶香叶油或人造香叶油。由于二苯醚对碱性较为稳定,多用于调配皂用香精,也常用香叶油的代用品,适于调制花香型分妆品、除臭剂等。该品作为有机合成中间体,用于香料工业、合成树脂和其他有机合成生产。

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