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Low-pressure supersonic separator with finishing adsorption: Higher exergy efficiency in air pre-purification for cryogenic fractionation
被引:18
|作者:
Brigagao, George Victor
[1
]
Arinelli, Lara de Oliveira
[1
]
de Medeiros, Jose Luiz
[1
]
Araujo, Ofelia de Queiroz F.
[1
]
机构:
[1] Univ Fed Rio de Janeiro, Escola Quim, BR-21941909 Rio De Janeiro, RJ, Brazil
关键词:
Exergy analysis;
Air pre-purification;
Air dehydration;
Supersonic separator;
Multiphase sound speed;
Cryogenic air separation;
NATURAL-GAS;
UNIT;
CO2;
D O I:
10.1016/j.seppur.2020.116969
中图分类号:
TQ [化学工业];
学科分类号:
0817 ;
摘要:
Air fractionation in cryogenic plants demands a Pre-Purification Unit for air compression and removal of water, carbon dioxide and trace-species. The conventional Pre-Purification Unit - FULL-TSA - adopts temperatures-wing adsorption (TSA) with an activated-alumina bed for dehumidification followed by a molecular-sieve bed removing carbon dioxide and trace-species. A novel scheme - SS-TSA - prescribes a Supersonic Separator abating similar to 98.5% of moisture followed by a small single-bed molecular-sieve removing remaining impurities. SS-TSA-HI is a SS-TSA variant allocating compression heat for molecular-sieve regeneration. This work compares thermodynamic performances of FULL-TSA, SS-TSA and SS-TSA-HI via exergy analyses and discloses better utilization of resources. Exergy analyses are supported by HYSYS simulator running with unit-operation extensions for calculating the phase-equilibrium sound speed and simulating the supersonic separator. Since exergy rates depend on Reference Environmental Reservoirs, two Reference formalisms are employed at 1 atm and 25 degrees C. Reference#1 prescribes air with 60% relative humidity (the raw air feed), while Reference#2 adopts water-saturated air. It is shown that Reference#1 is appropriate for overall system analysis, while Reference#2 is better for sub-systems analysis as it dramatically lowers cooling-water exergy flows. SS-TSA has 61% less exergy losses than FULL-TSA in the purification step as the supersonic separator accomplishes bulk dehumidification drastically reducing steam and nitrogen for bed regeneration. Reference#1 exergy efficiencies of FULL-TSA, SS-TSA and SS-TSA-HI attained 57.9%, 60.0%, and 60.3%, respectively.
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页数:21
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