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1)  overheating of adsorbent bed
吸附床过热
2)  adsorbent bed
吸附床
1.
The structural designs & researches ofthe new solid adsorbent bed;
新型固体吸附制冷吸附床的结构比较研究
2.
Analysis of the heat and mass transfer process and design of the structure of adsorbent bed in adsorption refrigeration system;
吸附制冷系统中吸附床的传热传质分析及结构设计
3.
To shorten the refrigeration cycle of the solar solid adsorption refrigeration system, a system of solar solid adsorb refrigeration was put forward and a model of single tube was founded aiming at the concrete adsorbent bed in this paper.
针对具体的吸附床,建立了吸附床内单元管传热传质的数学模型,并运用多孔介质传热传质的理论分析了吸附床内单元管的传热传质的计算方法,列出了控制方程组和初始、边界条件。
3)  Adsorption bed
吸附床
1.
Numerical simulation and heat transfer analysis of temperature field for adsorption bed of solar energy adsorption refrigeration air conditioner;
太阳能吸附制冷空调吸附床温度场数值模拟与传热分析
2.
Experimental study of heat transfer in natural gas adsorption bed during a desorption process;
天然气吸附床脱附过程的传热实验研究
3.
An experiment for heat transfer in a natural gas adsorption bed under adiabatic condition is made.
对天然气吸附床在绝热条件下进行了传热试验,试验测量了吸附床在吸附过程中的温度分布与变化,试验结果表明,吸附床的温度随充气量的增加不断升高,数值达75℃左右,而且温度分布极不均匀,相差达30℃。
4)  Single adsorbent bed
单吸附床
5)  adsorber [æd'sɔ:bə]
吸附床
1.
According to the characteristic attribute of adsorption refrigeration,the influence of the uniformity of temperature field on the adorption/desorption performance of adsorber was discussed by means of mathematics theory.
根据吸附制冷的特性,从理论上研究了吸附床温度场均匀性对吸附/脱附性能的影响;研究结果表明:温度场的均匀分布可提高吸附床的吸附/脱附性能,对今后吸附床的优化设计提供了理论依据。
2.
In this system two adsorbers are key devices, which are made of two shell and pipe exchangers.
在系统的实际运行中,吸附床起到了重要的作用。
3.
Analysis and calculation of the heat transfer in the adsorber is one of important fundamental tasks in the adsorption cooling study field.
吸附床内传热过程的分析和计算是吸附式制冷研究的重要基础内容之一。
6)  adsorption filtration
吸附过滤
1.
The adsorption filtration and bio-carrier mechanism of porous ceramics apply in sewage disposal were described.
综述了各类多孔陶瓷在污水净化处理中应用的现状,阐述了多孔陶瓷用作吸附过滤介质及生物载体材料的不同作用机理及特点,同时提出了多孔陶瓷在污水处理中的发展方向。
补充资料:固定床吸附塔
分子式:
CAS号:

性质: 即用于固定床树脂清液吸附的离子交换装置。用于铀矿浸出液离子交换过程的固定床吸附塔的塔体一般用普通碳钢衬耐蚀材料制成,内部管路和分布器多用塑料或不锈钢制作。塔高一般为3.65m,塔径为2.13m,树脂充填体积为5.7m3。塔内树脂床上部的自由空间体积一般与原型树脂床的体积相等。

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