The mass transfer performances of CO2 absorbed into water or into NaOH aqueous were tested in two microporous polypropylene hollow fiber membrane modules.
在实验研究的基础上,对中空纤维膜组件壳程流体流动和传质过程进行了分析和模拟计算。
参考来源 - 疏水性多孔膜和膜组件气体吸收传质性能及其数学模型的研究·2,447,543篇论文数据,部分数据来源于NoteExpress
Critical flux region for two membrane modules was measured by using "flux step-wise" method, and then the operating characteristics at sub-critical flux were investigated.
利用“通量阶式递增法”测定了两种膜组件的临界通量,在此基础上考察了次临界通量下的运行特性。
It was pointed out that pervaporation will be used more widely in anhydrous ethanol production with the development of high performance membrane and the improvement of membrane modules.
指出了高性能膜的研制以及膜组件的改进将会使渗透汽化法在燃料乙醇生产中得到更加广泛的应用。
These functions will be used to choose operation pressure, concentration flow, membrane area, membrane modules, modules arrangement, cooling system, membrane fouling predication and cleaning system.
利用获得的数学关系式确定主要操作运行压力、浓缩液流量、膜面积、组件数目、膜组件排列方式、冷却循环系统设计、纳滤膜污染的预测与清洗系统设计。
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