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小型变压吸附制氧技术试验研究
引用本文:卜令兵,刘应书,张德鑫,刘文海.小型变压吸附制氧技术试验研究[J].化学工业与工程,2007,24(1):60-64.
作者姓名:卜令兵  刘应书  张德鑫  刘文海
作者单位:北京科技大学机械工程学院气体分离工程研究所,北京,100083
摘    要:研究了分子筛种类、切换时间、均压步骤、高径比以及储气罐体积对小型变压吸附制氧效果的影响.实验表明,LiX分子筛的制氧效果最好,采用LiX分子筛可以减小制氧机的体积,并提高制氧机的性能;氧含量随着切换时间的增加先增加后减小,存在一个最佳切换时间,此切换时间要通过实验确定;均压步骤的引入可以很大程度上提高氧含量和回收率,起到很好的节能效果,其中吸附塔两端均压工艺的制氧效果最好.增加高径比有利于提高氧含量,但是高径比过大制氧效果会降低;增加储气罐的体积有利于提高氧含量.

关 键 词:变压吸附  制氧  均压  变压  吸附制氧  技术试验  研究  Oxygen  Study  工艺  吸附塔  节能效果  回收率  程度  实验确定  最佳  存在  氧含量  性能  制氧机  影响  体积  储气罐
文章编号:1004-9533(2007)01-0060-05
收稿时间:2006-01-23
修稿时间:2006年1月23日

Experimental Study on Small-Scale PSA Oxygen Generating
BU Ling-bing,LIU Ying-shu,ZHANG De-xin,LIU Wen-hai.Experimental Study on Small-Scale PSA Oxygen Generating[J].Chemical Industry and Engineering,2007,24(1):60-64.
Authors:BU Ling-bing  LIU Ying-shu  ZHANG De-xin  LIU Wen-hai
Affiliation:Institute of Gas Separation Engineering, School of Mechanical Engineering, University of Science and Technology Beijing, Beijing 100083, China
Abstract:The effects of some main factors,such as the species of molecular sieve,exchange time,pressure equalization process,ratio of height to diameter,the volume of tank on the process of small-scale pressure swing adsorption(PSA) oxygen generating are discussed experimentally.The experimental results show that different species of molecular sieve have different productivity and LiX is best;using LiX molecular sieve can decrease the volume of oxygen concentrator and improve the characteristics;with the increase of exchange time,the oxygen purity increases in the beginning and then decreases,the optimal exchange time is defined by experiment.The pressure equalization may improve the oxygen purity and recovery,the oxygen purity and recovery of the pressure equalization process in absorber's two-lets are the biggest.Increasing the ratio of height to diameter of the absorber can improve the oxygen purity,but it is not good if the ratio is too big.Increasing the volume of tank can also improve the oxygen purity.
Keywords:pressure swing adsorption(PSA)  oxygen generating  pressure equalization
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