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1)  Hydroxylation of phenol with hydrogen peroxide
苯酚过氧化氢羟化
2)  Hydroxylation with H 2O 2
过氧化氢羟化
3)  diazo-phenol
氢氧化重氮苯酚
4)  phenol hydroxylation
苯酚羟化
1.
Separation and analyzing of tar in phenol hydroxylation;
苯酚羟化反应中焦油的分离与分析
2.
The effects of the amount of catalyst, solvent, temperature on the activity for phenol hydroxylation were investigated.
考察了CuCdCeOX/ZSM 5催化苯酚羟化反应的活性 。
3.
Catalysis of the above mentioned HTLcs are investigated in the phenol hydroxylation,good results are obtained.
首次用于催化苯酚羟化反应,并获得了较好的结果,同时探讨了Cu/Al比例,反应温度,反应介质及介质的pH值对反应活性的影响。
5)  hydroxylation of phenol
苯酚羟化
1.
A series of superconductor type cuprates synthesized by citric acid complex method exhibited high catalytic activity in direct hydroxylation of phenol to diphenols.
通过探讨催化剂结构与活性的关系 ,发现含铜复合氧化物中的非化学计量氧和铜离子的平均价态与苯酚羟化活性和过氧化氢分解活性密切相关 。
6)  Cumene hydroperoxide
过氧化氢异丙苯
1.
The catalytic performance of molecular sieves was evaluated by epoxidation of cyclohexene with cumene hydroperoxide(CHP) as oxidant.
以过氧化氢异丙苯(CHP)为氧化剂,用环己烯的环氧化反应考察了Ti-HMS分子筛的催化性能。
2.
Cumene oxidation cumene hydroperoxide(CHP) over the ultrafine CuO powders was investigated under atmospheric pressure using air as the oxidant.
将超细CuO用于空气氧化异丙苯制过氧化氢异丙苯(CHP)的反应。
3.
Ti-MCM-41 molecular sieve was prepared by hydrothermal crystallization,and by addition of cumene hydroperoxide(CHP)to control hydrolysis rate of tetrabutyl titanate(TBOT).
用过氧化氢异丙苯(CHP)控制钛酸四丁酯(TBOT)的水解速率,用水热晶化法合成了Ti-MCM-41分子筛,并用X射线衍射和紫外漫反射光谱对其结构进行了表征,用X射线荧光光谱法测定了Ti-MCM-41分子筛中的钛含量,考察了晶化时间、晶化温度及n(CHP)∶n(TBOT)对Ti-MCM-41分子筛的结构和钛物种分布的影响,得出了较佳合成条件:晶化温度100℃、晶化时间3 d、n(CHP)∶n(TBOT)=8~12。
补充资料:脲、甲醛、磺化-2-甲基苯酚、磺化苯酚的缩合物钠盐
CAS:68441-84-9
分子式: (C7H8O·C6H6O·CH4N2O·CH2O·Na)x
中文名称: 脲、甲醛、磺化-2-甲基苯酚、磺化苯酚的缩合物钠盐

英文名称: Urea, polymer with formaldehyde, sulfonated 2-methylphenol and sulfonated phenol, sodium salt
urea, polymer with formaldehyde, sulfonated 2-methylphenol and sulfonated pheno
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