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1)  microwave desorption
微波解吸
1.
Study on the treatment of toluene-contained gas using active carbon adsorption-microwave desorption technology;
活性炭吸附-微波解吸处理含甲苯废气的研究
2)  Microwave acid digestion-atomic absorption spectrometry
微波酸消解-原子吸收法
3)  microwave desorption-azeotropic distillation
微波共沸精馏解吸
1.
The microwave desorption-azeotropic distillation was used to recover ethanol in waste water from ethanol industry under vacuum condition.
提出了微波共沸精馏解吸概念,针对酒精工业中产生的淡酒液用活性炭吸附-真空微波共沸精馏解吸方法回收其中可利用的乙醇。
4)  microwave absorption
微波吸收
1.
Microwave absorption properties analysis of the layered Bi-based cuperates using equivalent circuit theory;
铋系层状铜氧化物微波吸收性能的等效电路理论分析
2.
Preparation and microwave absorption properties of Sr_(0.7)La_(0.15)Ce_(0.15)Fe_(11.7)Zn_(0.3)O_(19)/PAn composite powders
Sr_(0.7)La_(0.15)Ce_(0.15)Fe_(11.7)Zn_(0.3)O_(19)/PAn复合材料的制备及微波吸收性能
3.
Preparation of nano Fe/SiO_2 core-shell composite particles from copper/iron ore cinder and their microwave absorption properties
铜铁尾矿制酸烧渣制备纳米Fe/SiO_2核壳复合粒子的微波吸收性能
5)  microwave absorbing
微波吸收
1.
The applications,research and development of composite macromolecule and inorganic material such as ceramic,glass,graphite microspheres coated with metal as new composite functional material in microwave absorbing,magnetic shielding,electronic component and conducting fillings are presented.
着重介绍了以高分子和无机材料如陶瓷、玻璃、石墨为基体的金属包覆型复合材料微球作为一种新兴复合功能材料在微波吸收和电磁屏蔽、电子元件、导电填料方面的应用和研究进展。
2.
The microwave electromagnetic parameters are measured, and the microwave Absorbing properties were studied.
采用多元醇还原工艺和自组装技术,通过在微米级 Fe粉表面包覆纳米 Co粒子,制备了一种具有核壳结构的复合磁性微球,表征了它们的相组成结构,测试了它们的微波电磁参数,研究了它们的微波吸收性能。
3.
The microwave absorbing of the sample increases gradually at 8 GHz,with the maximum attenuation of-3.
对产生介电损耗和微波吸收的机理进行了讨论。
6)  radar absorbing particles
吸波微粒
1.
Scattering and absorption characteristics of radar absorbing particles;
吸波微粒的散射和吸收特性
补充资料:氨解吸
分子式:
CAS号:

性质:又称氨汽提或氨解吸。铵离子与氨在废水中的平衡关系如下式: NH3+H2O←→NH4++OH-当废水pH值>7时,铵离子转化为氨,这样在有流动空气存在条件下,就可通过搅动废水使其中氨作为气体被去除。通常,氨气提系在利用鼓风机输送空气的解吸塔中进行。此法可去除氨-铵离子60%~95%,但在寒冷季节气温低时处理效率甚低。

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