我们从某个成分,比例的液相开始。
So you start here in the liquid phase, with some composition.
在两个中的每一个,液相和气相。
我们有一个液相,和气相的平衡。
We have an equilibrium between the liquid state and the gas phase.
那么我们看这儿,在液相。
这里是气相,这里是液相。
这是液相的摩尔分数。
在气相和液相都有。
相图中完全是液相的区域。
温度对高效液相色谱分离性能的影响。
这里我们有两个相,气相和液相,再加二。
So here we have two phases, the gas phase and the water phase, plus two.
这边是液相。
本文还提出了液相掺氮碳膜生长的化学机制。
And, schemes of the film growth in the liquid phase were suggested.
这是液相。
得到了催化精馏塔内的温度及液相组成分布。
The axial profile of temperature and concentration in the column is calculated.
本文运用液相烧结模型对实验结果进行了探讨。
The liquid phase sintering model was discussed to explain the experimental result.
方法:采用转篮法和高效液相色谱指纹图谱评价。
本文对虾青素的氧载体强化氧传递双液相发酵进行了研究。
Two-phase fermentation system with the addition of oxygen vector was applied to enhance oxygen transfer.
目的:建立小麦中杂色曲霉毒素的高效液相色谱检测方法。
A HPLC method has been developed to determine sterigmatocystin in wheat.
研究了液相色谱-质谱联用技术检测花生中的黄曲霉毒素。
论文采用了低温液相方法制备正尖晶石型锰的嵌锂氧化物正极材料。
The preparation of the positive electrode materials was done in the solution at low temperature.
前言:目的:应用高效液相色谱-质谱联用技术测定果汁中的展青霉素。
Objective: to determine patulin in fruit juice by high performance liquid chromatography mass spectrometry.
建立了饲料中齐帕特罗的液相色谱-质谱联用(LC-MS)检测方法。
In this study, a LC-MS method for zilpaterol in feed is established.
方法用高效液相色谱(hplc)法测定不同生长采收期青蒿素的含量。
MethodsHPLC method to measure the content of Artemisinin in different growth and harvest period.
塔板上气液两相的流动状况尤其是液相的流速分布对塔板效率有重要影响。
The liquid flow pattern, or velocity distribution, is an important factor in column tray design.
温度是影响液相色谱分析的重要因素,但是其作用却一直没有得到很好应用。
Temperature was an important factor to HPLC, but it has not been well studied.
目的介绍近年来液相色谱—质谱联用技术的研究进展及其在天然药物分析中的应用。
Objective Introduce the study advance of LC-MS technique and application to analysis of natural medicines.
液液两相流动中,分层流动是一种常见的流态。
Stratified flow is considered a basic flow in two-phase system.
该方法可在气液两相流的研究中获得应用。
This method can be used in research on air-liquid two-phase flow.
该方法可在气液两相流的研究中获得应用。
This method can be used in research on air-liquid two-phase flow.
应用推荐