Study on pressurization with raffinate in a rapid vacuum pressure swing adsorption process for producing oxygen
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摘要: 測試了微型制氧吸附劑的平衡吸附特性,在此基礎上選出適合快速真空變壓吸附制氧的吸附劑.針對傳統的單塔兩步快速變壓吸附制氧含量低問題,提出了提高產品氣氧含量的單塔快速變壓吸附制氧的排放氣和原料氣組合充壓流程,并對該流程進行實驗研究.結果表明:在單塔快速真空變壓吸附制氧過程中,采用排放氣和原料氣組合充壓流程可以有效提高產品氣氧含量.充壓前排放氣的壓力和氧含量是影響產品氣氧含量的關鍵參數,采取合適的排放氣壓力和較高氧含量的排放氣可獲得更高的產品氣氧含量.在吸附和解吸壓力分別為240 k Pa和60 k Pa時,采用排放氣和原料氣組合充壓的快速真空變壓吸附流程可獲得氧體積分數90%的產品氣,其產氧率為325.08 L·h-1·kg-1.Abstract: The equilibrium adsorption characteristics of nitrogen adsorbents were tested and a suitable nitrogen adsorbent was selected for producing oxygen by rapid vacuum pressure swing adsorption. Due to low oxygen concentration in the product obtained by traditional rapid pressure swing adsorption,an improved pressurization step with raffinate was developed and experimentally studied in a rapid vacuum pressure swing adsorption system for producing oxygen. The results show that combined pressurization with raffinate and feed gas can effectively improve the oxygen concentration in the product during the rapid vacuum pressure swing adsorption process. The pressure and oxygen concentration of raffinate for pressurizing are key parameters to influence the oxygen concentration in the product,and a higher concentration oxygen product can be obtained by taking an appropriate pressure and a higher oxygen concentration of raffinate. The 90% oxygen can be generated by combined pressurization with raffinate and feed gas during the rapid vacuum pressure swing adsorption process with an adsorption pressure of 240 k Pa and a desorption pressure of 60 k Pa,and the adsorbent productivity is 325. 08 L·h-1·kg-1.
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Key words:
- oxygen generation /
- rapid pressure swing adsorption /
- pressurization /
- adsorbents
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