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Experimental study of a rotary valve multi-bed rapid cycle pressure swing adsorption process based medical oxygen concentrator

机译:旋转阀多层快速循环压力摆吸吸附过程的医用氧气浓缩器的实验研究

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摘要

Rapid cycle pressure swing adsorption (RCPSA) characterized by short cycle time permits adsorbents to be used more frequently and increases process productivity. A rotary valve multi-bed RCPSA process is proposed to improve the performance of miniature oxygen concentrator. The RCPSA air separation system is highly integrated by four adsorbent beds and a rotary valve. The effects of process parameters on the performance of the RCPSA system were conducted by experiments. Results showed that the system could produce 1 L min(-1) of similar to 92% O-2 with similar to 30% of oxygen recovery and similar to 78 kgGreek ano teleiaTPD(-1) of bed size factor (BSF) from compressed air at low adsorption and desorption pressure ratio (similar to 250:101 kPa). The minimum BSF with similar to 5 s optimal cycle time is a sharp decline with increasing of pressure ratio. However, a reversed trend between BSF and unit power at different pressure ratios is prominently emerged.
机译:快速循环压力摆动吸附(RCPSA)以短循环时间为特征,允许更频繁地使用吸附剂并提高过程生产率。 提出了一种旋转阀多床RCPSA工艺,提高微型氧气浓缩器的性能。 RCPSA空气分离系统由四个吸附床和旋转阀高度整合。 过程参数对RCPSA系统性能的影响是通过实验进行的。 结果表明,该系统可以产生1 LIM(-1)类似的92%O-2,其氧气回收率类似于30%,类似于压缩的78千克Ano远程普(BSF) 空气在低吸附和解吸压力比(类似于250:101 KPA)。 随着5秒最佳循环时间的最小BSF,随着压力比的增加,急剧下降。 然而,在不同压力比下的BSF和单位功率之间的逆转趋势突出出现。

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