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1)  liquid phase method
液相法
1.
Preparation of nanometer ferric oxide from ferrous sulfate by liquid phase method;
硫酸亚铁液相法制纳米氧化铁的研究
2.
Author has introduced the industrialized production progress for producing dimethyl ether from synthetic gas by using the fixed bed one step method and by using the liquid phase method;discussed on realizing the feasibility for industrialization and marketability taking the dimethyl ether as the substituted fuel in the petroleum engineering.
从二甲醚的研究、生产、建设和应用等方面介绍了采用固定床一步法合成气制二甲醚和液相法生产二甲醚的工业化生产进程;论述了二甲醚作为石油工程的替代燃料实现产业化和市场化的可行性。
3.
Through adopting liquid phase method,designing original synthesis technology and reasonably regulating and controlling the microhabitat of particles of the functional materials,the optimization on material′s topography,size and performa.
采用液相法通过设计新颖的合成工艺并合理调控材料颗粒的微观生长环境,实现了对材料形貌、尺度和性能的优化,促进了材料的规模化生产。
2)  liquid-phase method
液相法
1.
Research on preparation of nano-copper powder by liquid-phase method;
液相法制备纳米铜粉的研究
2.
There are various preparation methods of aluminum foams and these methods can be falled into three broad classes: liquid-phase method, solid-state method and deposition meth.
泡沫铝的制备方法有很多,可分为液相法、固相法和沉积法三大类。
3.
ZnO microcrystals with a diversity of morphologies were successfully prepared with the addition of different surfactants by a simple low-temperature liquid-phase method.
采用简单的低温液相法,通过添加表面活性剂成功制备出不同形貌的氧化锌微晶。
3)  liquid phase
液相法
1.
The advantages and disadvantages of gas phase and liquid phase processes are compared, and some opinions on further researches on the preparation of nanosized TiO2 powders are also presented.
综述了纳米级TiO2粉体的制备方法,讨论了气相法和液相法合成纳米级TiO2粉体的优缺点及当前制备纳米级TiO2粉体的主要研究方向。
2.
To obtain nanometer materials with excellent magnetization,nanometer cobalt crystals are prepared by liquid phase preparation method.
为了获得磁性优异的纳米材料,采用液相法制备了纳米Co微晶,并对微晶产物进行了XRD、SEM、TEM、EDAX和BET表征。
4)  solution method
液相法
1.
Electrochemical properties of LiV_3O_8 prepared by solution method;
液相法制备的LiV_3O_8的电化学性能
2.
The research status of preparation of nickel nano-particles by solution method were analyzed in details, and some factors of solution method were discussed, such as concentration of reactant and reducer, temperature, surface active reagent and so on.
详细介绍了液相法制备纳米镍粉的研究进展,并对液相法制备纳米镍粉的一些影响因素进行了探讨,例如反应物和还原剂的浓度、温度、表面活性剂等。
3.
By using Cd(NO3)2·4H2O and NH3·H2O(25%~28%) as raw materials,Cd(OH)2 nanobelts were prepared under atmospheric pressure by the solution method without using any templates.
H2O(质量分数25%~28%)为原料,在无任何模板存在下采用常压液相法制备了Cd(OH)2纳米带,将Cd(OH)2纳米带在350℃下煅烧4 h得到形貌相似的CdO半导体纳米带材料。
5)  liquid method
液相法
1.
Preparation of nanometer Alumina powder by liquid method;
液相法纳米氧化铝粉的制备
2.
According to the state of reactant,the preparation methods was devided into solid method,liquid method and gas method,which can be further classified to solid-state chemical reaction method,microemulsion method,precipitat.
按照反应物的状态,将纳米硫化镉的制备方法分为固相法、液相法和气相法,进而分为室温固态化学反应法、微乳液法、沉淀法、水热法、前驱体法以及气相沉积法等不同的制备方法。
3.
In this paper, the present study and progress of liquid method in preparation of barium strontium titanate powders in recent years are summarized.
液相法是制备性能良好的钛酸锶钡粉体的有效方法。
6)  liquidliquid two phase method
两相液液法
1.
In the water/oil microemulsion system of cetyl trim ethylamine bromide+butanol/ cyclohexane/ water solution, the microemulsion area was measured and cerium oxide nanoparticles were prepared according to the principle by liquidliquid two phase method.
在十六烷基三甲基溴化铵+正丁醇/环己烷/水溶液组成的水/油型微乳液体系中,运用微乳液制备纳米粒子的原理,利用改进的两相液液法,测定了水/油微乳液的区域,并制备了纳米CeO2粉体。
补充资料:高分辨液相色谱法
分子式:
CAS号:

性质:又称高压液相色谱法(high pressure LC),高分辨液相色谱法(high resolution LC),高速液相色谱法(high speed LC),现代液相色谱法(modern LC)。以高压下的液体为流动相的液相柱色谱法。在经典的液相柱色谱法的基础上,采用了高压输液泵、高效固定相和高灵敏度的检测器。由高压输液泵、进样系统、色谱柱、温度控制系统、检测器、数据记录与处理系统、馏分收集器等设备组成。具有分析速度快、分离效率高、检出极限低、操作自动化和应用范围广的特点。对氨基酸、蛋白质、生物碱、核酸、甾体、维生素及其他合成药等进行分离分析。

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