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1)  ternary phase diagram
三元相图
1.
Improved Marquart algorithm in studying on ternary phase diagram of casting solution;
改进的Marquardt算法研究制膜液三元相图
2.
Calculation of Ternary Phase Diagram of Polyethersulfone Casting Solution;
聚醚砜铸膜液三元相图的计算
3.
Recovery of ammonium thiocyanate by ternary phase diagram theory from coking waste water;
运用三元相图理论回收煤焦化废水中的硫氰酸铵
2)  phase diagram
三元相图
3)  ternary phase diagrams
三元相图
1.
In order to develop a new solution crystallization process to separate the eutectics of musk ketone and musk xylene,the ternary phase diagrams of musk ketone,musk xylene and solvent were calculated.
为了开发低共熔组成酮麝香、二甲苯麝香混合物溶液结晶新过程,计算得到酮麝香、二甲苯麝香、溶剂三元相图
2.
According to the self-emulsification domains basing on the ternary phase diagrams and the mean diameter of three formulas,the optimum formula was screened initially.
方法考察了缬沙坦在不同油相和表面活性剂中的溶解度;通过绘制三元相图,依据自微乳区域及制剂自乳化后粒径的考察,筛选微乳处方。
3.
The ternary phase diagrams of HPC/water/glycerol as well as binodal line and spinodal line were simulated based on Flory-Huggins\'s polymer solution theory using water as solvent and glycerol as nonsolvent, using the method of Matlab computer process for the first time.
利用Flory-Huggins聚合物溶液理论以及Matlab计算机程序,首次计算模拟了HPC/水/甘油三元体系的双节线和旋节线,并绘制出HPC/水/甘油体系的三元相图
4)  Ternary phase diagram
拟三元相图
1.
The ternary phase diagram of four component was studied by titration.
用滴定法研究了新型阳离子表面活性剂(2-羟基-3-二甲基十四烷基铵基)丙基甲壳低聚糖(HDM-TAPC)、正丁醇、正己烷及水四组分体系的拟三元相图;利用电导法测定了HDMTAPC/正丁醇/10%正己烷/纯水四组分体系相图中微乳区的结构。
2.
The influence of acrylamide concentration in ternary phase diagram of Span 80-Tween 85/Isopar M/ acrylamide aqueous solution system has been investigated to optimize polyacrylamide technics by phase transfer emulsion polymerization.
其结果如下: (1)丙烯酰胺浓度对Span 80-Tween 85/Isopar M/丙烯酰胺-H_2O拟三元相图的影响:由于在高乳化剂含量的微乳液区域中,粒子表面覆盖的乳化剂分子数量较多,一方面,丙烯酰胺的助溶作用对微乳液区域的影响相对较小,而该作用则是不利于微乳液体系稳定的;另一方面,微乳液区的变化过程主要由丙烯酰胺助乳化作用决定,该作用有利于微乳液体系的稳定。
5)  quasi-ternary phase diagram
拟三元相图
1.
In this paper,different amounts of n-hexanol as a co-emulsifier and cyclohexane as oil respectively,were used to systematically investigate their effects on the microemulsion region in the quasi-ternary phase diagram of the.
用Triton X-100/正己醇/环己烷/盐溶液的四元反相微乳液体系制备了纳米四水羟基硝酸氧铋((Bi6O4(OH)4)(NO3)6(H2O)4),研究了不同比例Triton X-100、正己醇、环己烷对微乳液体系的影响,绘制了反相微乳液体系的拟三元相图,确定了室温下微乳液法制取纳米四水羟基硝酸氧铋的最佳条件,制备出了棒状和片状两种产物,利用TEM、IR、XRD、TG-DSC等手段对产物的结构和性能进行了表征。
2.
By uniform experiments and whole experiments,the quasi-ternary phase diagram of the systems was given,through which the optimal proportion of the system was ascertained.
通过均匀实验和全面实验,绘制出体系的拟三元相图,并由相图得出体系的最佳比例。
3.
AEO_9/butanol/octane/ethanol non-aqueous reverse microemulsion system was selected and quasi-ternary phase diagram of this system with different compositions and at different temperatures was presented respectively.
采用脂肪醇聚氧乙烯九醚(AEO9)/正丁醇/正辛烷/乙醇体系,研究体系的组成设计,绘制不同组分配比和不同温度时的体系拟三元相图,最佳组成的质量分数为AEO9∶正丁醇∶正辛烷=29。
6)  pseudoternary phase diagrams
伪三元相图
1.
The formulations of baicalin nanoemulsion cosmetic were optimized by protracting the pseudoternary phase diagrams,taking isopropyl myristate,olefin oil,vitamin E,cremophor EL40,ethanol and baicalin to prepare baicalin nanoemulsion.
通过绘制伪三元相图优选处方,以肉豆蔻酸异丙酯(IPM)、液体石蜡和维生素E油为油相,蓖麻油聚氧乙烯醚(EL-40)为表面活性剂,乙醇为助表面活性剂制备黄芩甙纳米乳,用透射电子显微镜(TEM)、Nicomp388/ZetaPALS激光粒度测定仪分别考察了其形态和粒径;通过恒温加速实验检验了其稳定性。
2.
Methods The formulations of Fructus Perrillae oil nanoemulsion were optimized by drawing the pseudoternary phase diagrams and investigating the form, viscosity, particle size distribution, stability, conductance, and refractiratio.
方法绘制伪三元相图优选处方,考察制剂的形态、黏度、电导率、折光率、乳滴粒径分布及稳定性。
3.
METHOD Pseudoternary phase diagrams were drawn to evaluate the microemulsion area, then process parameters such as high-shear rotation speed and temperature were optimized; the stability studies was conducted under long term storage conditions; the safety study was processed with ocular irritation test on rabbit.
方法采用伪三元相图法研究了合适的乳化剂-辅助乳化剂-油相形成的微乳区域,并进一步优化剪切速率和乳化温度等工艺参数;通过长期稳定性试验评价了微乳的稳定性,并通过家兔眼刺激性试验评价了环孢素A眼用微乳制剂的安全性。
补充资料:三元相图

ternaryphasediagram:由三个组元(三元)构成的系统(在金属学中是合金系)的相图。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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