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Hollow Fiber Membrane Contactors for CO2 Capture: Modeling and Up-Scaling to CO2 Capture for an 800 MWe Coal Power Station

机译:中空纤维膜接触器,用于CO2捕集:对800 MWe燃煤电厂的CO2捕集进行建模和扩展

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A techno-economic analysis was completed to compare the use of Hollow Fiber Membrane Modules (HFMM) with the more conventional structured packing columns as the absorber in amine-based CO2 capture systems for power plants. In order to simulate the operation of industrial scale HFMM systems, a two-dimensional model was developed and validated based on results of a laboratory scale HFMM. After successful experiments and validation of the model, a pilot scale HFMM was constructed and simulated with the same model. The results of the simulations, from both sizes of HFMM, were used to assess the feasibility of further up-scaling to a HFMM system to capture the CO2 from an 800 MWe power plant. The system requirements – membrane fiber length, total contact surface area, and module volume – were determined from simulations and used for an economic comparison with structured packing columns. Results showed that a significant cost reduction of at least 50% is required to make HFMM competitive with structured packing columns. Several factors for the design of industrial scale HFMM require further investigation, such as the optimal aspect ratio (module length/diameter), membrane lifetime, and casing material and shape, in addition to the need to reduce the overall cost. However, HFMM were also shown to have the advantages of having a higher contact surface area per unit volume and modular scale-up, key factors for applications requiring limited footprints or flexibility in configuration.
机译:完成了一项技术经济分析,以比较中空纤维膜组件(HFMM)与更常规的规整填料塔作为发电厂基于胺的CO2捕集系统的吸收塔。为了模拟工业规模HFMM系统的运行,基于实验室规模HFMM的结果,开发并验证了二维模型。经过成功的实验和模型验证后,构建了中试规模的HFMM并使用相同的模型进行了仿真。来自两种尺寸的HFMM的模拟结果均用于评估进一步升级至HFMM系统以捕获800 MWe电厂的CO2的可行性。系统要求-膜纤维长度,总接触表面积和组件体积-通过模拟确定,并用于与结构填料塔的经济比较。结果表明,要使HFMM与结构填料塔具有竞争力,就必须至少降低50%的成本。除降低总体成本外,还需要进一步研究工业规模HFMM的设计因素,例如最佳长宽比(模块长度/直径),膜寿命以及外壳材料和形状。但是,HFMM还显示出每单位体积具有更大的接触表面积和模块化放大的优点,这是要求占地面积有限或配置灵活的应用的关键因素。

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