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1)  thin film interline region
薄液膜蒸发过渡区
1.
The thin film interline region of an extended meniscus has a distinct influence in the micro-channel.
微通道内延展弯液面区中的薄液膜蒸发过渡区域对蒸发存在很大的影响,由于该区域中的液膜较薄,是蒸发率最高的区域。
2)  thin film evaporation
薄液膜蒸发
1.
Analytical prediction of radial dryout point for thin film evaporation in heat pipes with micro-groove evaporator;
热管微槽蒸发器薄液膜蒸发的径向干点预测分析
3)  Evaporating Thin Film
蒸发薄液膜
1.
Flow and heat transfer characteristics near the solid-liquid interface of an evaporating thin film in a microchannel was investigated using an augmented Young-Laplace model and the kinetic theory.
基于扩展Young-Laplace方程和动力学理论研究微通道中蒸发薄液膜区固液界面附近流动和传热特性,考虑压力特征、壁面滑移和温度跳跃建立物理模型。
4)  buffer silica film
过渡SiO2薄膜
5)  Thin-Film Evaporation
薄膜蒸发
1.
Separation technology of thin-film evaporation of tolylene diisocyanate monomer;
甲苯二异氰酸酯单体的薄膜蒸发分离工艺
2.
With the action of blades' wiping,thin-film evaporation method is characterized by short residence time,low evaporation temper- ature and ability to deal with high viscous pre-polymer,and suitable for monomer's separation.
因刮板刮动物料作用,薄膜蒸发法具有停留时间短、蒸发温度低及能处理高黏性预聚物物料等特点,是较好的单体分离方法。
3.
The free toluene diisocyanate(TDI) in the curing agent TDI-TMP(Trimethylol Propane) of polyurethane was separated in laboratory by means of high-vacuum two-stage thin-film evaporation.
在采用高真空两级薄膜蒸发分离甲苯二异氰酸酯(TDI)-三羟甲基丙烷(TMP)聚氨酯固化剂中游离TDI的实验研究基础上,进行了中试研究。
6)  thin-film Evaporator
薄膜蒸发
1.
In order to distil free TDI from the PU curing agent with thin-film Evaporator,a suitable curing agent should be a small molecular weight and reacted thoroughly.
提出了要想在薄膜蒸发器中分离出TDI,得到合格的聚氨酯固化剂产品,需要从合成固化剂入手,相对分子质量小、反应完全的聚氨酯固化剂更适合在薄膜蒸发器中进行分离,研究探讨了聚氨酯合成工艺。
2.
VE liposome was prepared by thin-film evaporator and high pressure homogenization method.
采用薄膜蒸发-高压均质法制备维生素E(VE)脂质体,研究了VE脂质体配方中不同成分的比例及水合介质对脂质体包封率的影响。
3.
Firstly, the working principle of the thin-film evaporator and the related auxiliary equipment were introduced.
本课题将薄膜蒸发工艺引入食用菌多糖的生产,重点研究薄膜蒸发成套的控制系统,这对于提高食用菌多糖生产的自动化水平有着重大的意义。
补充资料:膜蒸发
分子式:
CAS号:

性质:又称渗透蒸发。将膜分离和蒸发过程相结合的一个新的分离过程。超滤膜的一侧是被分离的溶液,超滤膜的另一侧是一个蒸发器。溶液的组分透过超滤膜后便被蒸发。由于这样的分离不但利用溶液各组分蒸发压的差别,还利用了各组分透过超滤膜渗透性的差别,故可以得到更有效的分离,而且可以节能。

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