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Hybrid Air Separation Processes for Production of Oxygen and Nitrogen

机译:生产氧气和氮气的混合空气分离工艺

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摘要

Novel hybrid air separation processes for oxygen production are developed that use an unusual adsorption unit, Cycling-Zone Pressure-Swing Adsorption (CZPSA) [also known as feed purge pressure swing adsorption], to increase the oxygen concentration of the feed to the cryogenic distillation plant. Four cases are studied: 1. CZPSA before the main air compressor increases oxygen concentrations to 23.5% or less. 2. CZPSA after the main air compressor increases oxygen concentrations to significantly higher values. 3. CZPSA in between the stages of the main air compressor increases oxygen concentration to intermediate values. 4. CZPSA before the main air compressor to increase oxygen concentrations to 23.5% or less plus CZPSA after the main air compressor to increase oxygen concentrations to higher values. All cases can be applied either to new designs, or for retrofitting and debottlenecking existing plants. The reason for a 23.5% limit on oxygen in cases 1 and 4 is that above this concentration more expensive materials of construction are required. Although 23.5% is a low concentration, it represents a more than 11% reduction in gas flow rate. This reduction in flow rate results in reduced power requirements for compression, and reduced sizes of the downstream equipment.
机译:开发了用于氧气生产的新型混合空气分离工艺,该工艺使用了一种不寻常的吸附装置,即循环区变压吸附(CZPSA)[也称为进料吹扫变压吸附],以提高低温蒸馏进料中的氧气浓度厂。研究了四种情况:1.在主空气压缩机将氧气浓度增加到23.5%或更低之前的CZPSA。 2.主空气压缩机后的CZPSA将氧气浓度增加到明显更高的值。 3.主空气压缩机各级之间的CZPSA将氧气浓度增加到中间值。 4.在主空气压缩机前将CZPSA的氧气浓度增加到23.5%或以下,再在主空气压缩机后将CZPSA的氧气浓度增加到更高的值。所有情况都可以应用于新设计,也可以应用于现有工厂的改造和消除瓶颈。在情况1和4中将氧气限制在23.5%的原因是,在此浓度以上需要更昂贵的建筑材料。尽管23.5%的浓度很低,但代表气体流量减少了11%以上。流速的这种降低导致压缩所需的功率减少,并且下游设备的尺寸减小。

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  • 来源
    《Separation Science and Technology》 |2010年第9期|p.1171-1185|共15页
  • 作者

    Phillip C. Wankat;

  • 作者单位

    School of Chemical Engineering, Purdue University, Forney Hall of Chemical Engineering, West Lafayette, IN, USA;

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  • 正文语种 eng
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