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1.
Low-temperature Adsorption Drying Characteristics of Fruit-Vegetables and Testing Platform Scheme;
果蔬吸附式低温干燥特性及其测试平台方案
2.
Study on adsorption kinetics characteristic of a kind of new composite desiccant
新型复合吸附干燥剂的吸附动力学特性研究
3.
Application of low temperature drying technology of lignite on drying the slack coal of Laogongyingzi Coal Mine
利用褐煤低温干燥技术干燥老公营子矿末煤
4.
Considerable quantities of CO2 are adsorbed even by perfectly dry glass power.
完全干燥玻璃粉吸附大量的二氧化碳。
5.
Fluidization Characteristics of Yeast Spent Solution Adsorbed in Carrier
流化床吸附干燥酵母醪液的流化特性
6.
THE THERMODYNAMIC TREATMENT OF THE CRYO SORPTION PROCESS IN A CRYOPUMP
低温泵中低温吸附过程的热力学处理
7.
Key Technologies on Explosion Puffing of Fruits and Vegetables at Low-Temperature and High-Pressure;
果蔬低温高压膨化干燥关键技术研究
8.
In this paper the atmospheric absorbent fluidized freeze dryingis compared with vacuum freezedrying in many ways.
介绍了常压吸附流化冷冻干燥,并与真空冷冻干燥做了多方面比较。
9.
Analysis and Comparison and Exploration of Atmospheric Absorbent Fluidized Freeze Drying and Vacuum Freeze Drying of Solidfood;
固态食品常压吸附流化冷冻干燥与真空冷冻干燥分析比较及探索
10.
Langmuir adsorption isotherm
兰格缪尔吸附等温式
11.
Analysis and Study on Atmospheric Ad sorbent Fluidized Freeze Drying and Vacuum Freeze Drying of Solid Food;
常压吸附流化冷冻干燥技术的研究与探索
12.
Study on Drying Characteristic of Yeast Fermented Liquor in Absorption Fluidized Bed with Component Added
酵母醪液在双组分吸附流化床中干燥特性研究
13.
Parameters in the Drying Process of Spent Fermentation Solution in the Absorption Fluidized Bed with Component Added
双组分吸附流化床干燥酵母醪液的工艺参数
14.
Dynamic mechano-sorptive characteristics of larch timber during conventional drying process.
落叶松板材常规干燥过程的动态机械吸附特性
15.
Use of adsorption chiller to achieve energy saving of helium compressor of large-scale cryogenic system
使用吸附式制冷机实现大型低温系统氦压缩机节能的研究
16.
Study on Absorption Capacity of Coal Based on Low-temperature Nitrogen Absorption and High-pressure Adsorption
低温氮吸附法和高压吸附甲烷法研究煤的吸附能力
17.
A SHORT-CUT METHOD FOR THE CALCULATION OF ISOTHERMAL DRYING RATES OF NON-HYDROSCOPIC POROUS MATERIAL SLABS
非吸湿多孔物料板块等温干燥速度的简捷算法
18.
The melting sticking occurred when the melting point of materials is lower than the drying temperature.
物料熔点低于干燥温度时容易产生热熔性粘壁。