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Carbon membranes for oxygen enriched air - Part II: Techno-economic analysis

机译:用于氧富含空气的碳膜 - 第二部分:技术经济分析

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Carbon membrane (CM) separation process for producing oxygen-enriched air (OEA) at a concentration of 50-78 mol% O-2 in a single stage process with no recycle stream has been investigated. This paper (Part II of a two-part study) considers techno-economic analysis for O-2 -selective carbon membranes to yield the lowest production cost of "equivalent" pure oxygen (EPO2 ) in a single stage separation process based on experimental and predictive membrane performance. Aspen Hysys (R) interfaced with ChemBrane (in-house developed model) was used to perform the simulations for air separation with CM. Three different approaches with respect to pressure were investigated; (1) feed compression, (2) vacuum on permeate side and (3) combination of (1) and (2). The simulation results and sensitivity analysis showed that with current performance (O-2 permeability: 10 Barrer (1 Barrer = 2.736E - 09m(3)(STP)m/(m(2) bar h)) and O-2/N-2 selectivity: 18), mechanical properties, and cost per m(2) of CM, it is economically most efficient to use the third approach "combination of feed compression and permeate vacuum" to produce EPO2. A stage cut of 10% was found to be as an average economical optimum when using vacuum pump (approach (2)) to produce OEA. However, the techno-economic analysis for the reported CM showed that a stage cut of 0.15-0.2 was the most cost-effective while using compression approach (1) or (3) to produce EPO2.
机译:已经研究了在单一阶段方法中以没有再循环物流的单阶段方法在50-78mol%O-2的浓缩空气(OEA)的碳膜(CM)分离方法。本文(两部分研究的第II部分)考虑了对O-2选择性碳膜的技术经济分析,以基于实验和基于实验性的单级分离过程产生“当量”纯氧(EPO2)的最低生产成本。预测膜性能。与Chembrane(内部开发的模型)接口的AspenHysys(R)用于使用CM的空气分离进行模拟。调查了三种不同的方法; (1)进料压缩,(2)渗透侧的真空和(3)(1)和(2)的组合。仿真结果和灵敏度分析表明,随着电流性能(O-2渗透率:10个禁止(1个禁止= 2.736E - 09M(3)(STP)M /(M(2)Bar H))和O-2 / N. -2选择性:18),机械性能和每米(2)的成本,在经济上最有效地使用第三种方法“进料压缩和渗透真空的组合”以产生EPO2。发现10%的阶段减少是使用真空泵(方法(2))产生OEA时的平均经济优化。然而,报告的CM的技术经济分析表明,0.15-0.2的阶段降低是使用压缩方法(1)或(3)产生EPO2的时最具成本效益的。

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