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1)  P204/ n-octyl alcohol reversed micelle
P204/正辛醇反胶束
1.
In this paper a new P204/ n-octyl alcohol reversed micelles was used to extracting GSH and the extraction principle was studied: There is electrostatic interaction bet.
本文制备新型P204/正辛醇反胶束体系;以试剂GSH为原材料,研究反胶束萃取GSH的机制:在pH小于pI条件下,GSH的氨基带正电荷,与阴离子表面活性剂P204和正辛醇组成反胶束中的负电荷氧形成静电相互作用,从而被萃取进入该反胶束。
2)  AOT-isooctane reversed micelle
AOT/异辛烷反胶束
1.
The process of matrine extraction with AOT-isooctane reversed micelle system has been systematically studied in this.
论文对AOT/异辛烷反胶束萃取苦参碱进行了研究,考察了包括pH、离子种类和浓度、反胶束W0、温度和时间因素对萃取的影响。
3)  octanol ['ɔktənɔl]
正辛醇
1.
Effects of adding octanol or isooctylal on absorption of ammonia in water or dilute sulfuric acid and its surface tension were investigated in a lab scale absorption tower.
采用旋流板式塔,考察了在吸收剂中添加正辛醇或异辛醇前后氨的气液传质性能。
2.
Bromooctane was synthesized from potassium bromide(by-product of synthesizing 2-hydroxy-4-octyloxybenzophenone) and n-octanol using concentrated sulfuric acid as a catalyst.
以生产2-羟基-4-正辛氧基二苯甲酮的副产物溴化钾和正辛醇为原料,浓硫酸为催化剂,合成了溴代正辛烷。
3.
Using n-octanol/water distribution coefficients(Kow) of 367 substituted benzene derivatives from literature,22 group values and 7 correction factors were calculated by regression with least square method.
利用367种取代苯类化合物已测定的正辛醇/水分配系数(Kow),通过最小二乘法回归优化得到22个基团值和7个校正因子。
4)  n-octanol
正辛醇
1.
Polymerization of isoprene with supported titanium catalyst modified by n-octanol;
正辛醇改性负载钛催化体系聚合异戊二烯
2.
The effect of aging condition on polymerization of butadiene with supported titanium catalyst modified by n-octanol;
陈化方式对正辛醇改性负载钛催化剂合成聚丁二烯的影响
3.
Coordination polymerization kinetics of butadiene with supported titanium catalyst modified by n-octanol;
正辛醇改性负载钛催化剂聚合丁二烯的动力学研究
5)  1-octanol
正辛醇
1.
Aerobic one-pot oxidation of 1-octanol to octanoic acid;
一步法催化氧化正辛醇生成正辛酸
2.
It was synthesized with 1-octanol as organic solvent from bisphenol-A,bromine and hydrogen peroxide by in-situ bromination-oxida- tion.
以正辛醇为溶剂,以双酚A、溴素、双氧水为原料,采用原位溴化-氧化法合成了四溴双酚A。
3.
Mesoporous iron oxide showed high catalytic activity in oxyethylation of 1-octanol.
将介孔氧化铁用于催化正辛醇乙氧基化反应,研究结果表明,升高反应温度和初始压力、增加催化剂用量,可加快环氧乙烷的反应速率,同时产物的相对分子质量分布较窄。
6)  octanol-water
正辛醇/水
1.
New method named GC-K3 group contribution method for the esxtimation of the octanol-water of oxygenous compounds is presented.
提出了估算含氧化合物的正辛醇/水分配系数的基团贡献法———GC-K3基团贡献法。
补充资料:正辛醇
CH3(CH6)2CH2OH    分子量130.22
    无色有刺激性芳香味的液体。熔点-17~-16℃。沸点194-195℃。密度0.827g/cm3(20℃)。折射率1.430。在水中溶解度为0.059g/l00ml水(25℃)。溶于醇、醚和氯仿。可燃,遇明火、高热、强氧化剂有发生火灾的危险。
    应用  塑料工业用于制造聚氯乙烯软制品的增塑剂、苯二甲酸二辛酯。化工生产中用作萃取剂。有机工业用于则取稳定剂、润滑剂、防冻陈刑、消泡剂等。香料工业用作合成香料的中间体。日化工业用于制造化妆品。分析化学中用作化学试剂。
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