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1)  dynamic desorption
动态解吸
2)  dynamic adsorption and desorption
动态吸附解吸
1.
skin pigment(VSP) were determined in this study,and the technical parameters of the dynamic adsorption and desorption were optimized.
在以上优化动态吸附解吸工艺条件下,HP-20树脂对刺葡萄皮色素动态饱和吸附量达到39。
3)  static desorption
静态解吸
4)  desorption kinetic
解吸动力
5)  dynamic adsorption
动态吸附
1.
Study on the thermal adsorption and dynamic adsorption capacities of Pb and Cd onto the soils sampled from the sod layers in Xianghai wetland;
向海湿地土壤草根层对铅镉的静态和动态吸附能力的研究
2.
In SO2 dynamic adsorption test, the effect of adsorption temperature, SO2 concentration, and flow velocity on the desulfurization was studied.
本文以综合利用粉煤灰资源、深度开发高附加值产品为目标,采用热法制备粉煤灰吸附剂,并进行了本吸附剂对SO2的动态吸附实验,研究了吸附温度、SO2初始浓度、以及气流速量等条件对吸附性能的影响。
3.
The effect of little O2 to the dynamic adsorption of CO was studied too.
考察了CO与杂质CO2、CH4二元及三元气体混合物在NA型络合吸附剂上的动态吸附及分离提纯CO的过程,测定了不同混合物吸附时,纯CO置换吸附床层的置换率、产品CO纯度、杂质分压三者的关系。
6)  dynamic sorption
动态吸附
1.
Studies on polyimide membranes for pervaporation (Ⅰ) preparation and effect of membrane structure on dynamic sorption behavior in membrane;
聚酰亚胺渗透汽化膜的研究 (Ⅰ )膜的制备和结构对动态吸附特性的影响
2.
For the mass transfer of gas through a membrane, based on the concept of dynamic sorption and diffusion and the langmuir interfacial sorption theory, the difference between external sorption with directional mass transfer and that in equilibrium was studied, and the mass transfer of membrane was then divided into three individual processes which included the sorption, diffusion and adsorption.
本文针对气体透过薄膜的传质过程,基于动态吸附、扩散传递的概念,根据Langmuir界面动态吸附理论,研究了存在定向传递时表面吸附量与平衡吸附量的差异,从而将膜相传质分为吸附、内部扩散和脱附三个动态过程。
3.
The dynamic sorption experiments of CH_2Cl_2, CH_3OH, CH_3CH_2OH and H_2O in polyimide(PI) polymer membrane with different thickness were conducted.
推导出了整个扩散区的扩散方程和动态吸附初期的吸附方程 ,实验研究并分析了CH2 Cl2 、CH3OH、CH3CH2 OH和H2 O 4种渗透物小分子在不同厚度的聚酰亚胺高聚物膜内的动态吸附行为 ,并计算出了反常扩散指数dw。
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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