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Hollow Fiber Membrane Contactors for Post-Combustion CO2 Capture: A Scale-Up Study from Laboratory to Pilot Plant

机译:用于燃烧后二氧化碳捕集的中空纤维膜接触器:从实验室到试点工厂的大规模研究

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Membrane contactors have been proposed for decades as a way to achieve intensified mass transfer processes. Post-combustion CO2 capture by absorption into a chemical solvent is one of the currently most intensively investigated topics in this area. Numerous studies have already been reported, unfortunately almost systematically on small, laboratory scale, modules. Given the level of flue gas flow rates which have to be treated for carbon capture applications, a consistent scale-up methodology is obviously needed for a rigorous engineering design. In this study, the possibilities and limitations of scale-up strategies for membrane contactors have been explored and will be discussed. Experiments (CO2 absorption from a gas mixture in a 30%wt MEA aqueous solution) have been performed both on mini-modules and at pilot scale (10 m2 membrane contactor module) based on PTFE hollow fibers. The results have been modelled utilizing a resistance in series approach. The only adjustable parameter is in fitting the simulations to experimental data is the membrane mass transfer coefficient (km), which logically plays a key role. The difficulties and uncertainties associated with scaleup computations from lab scale to pilot scale modules, with a particular emphasis on the km value, are presented and critically discussed.
机译:膜接触器已经被提出了数十年,作为实现强化传质过程的一种方式。通过吸收到化学溶剂中来吸收燃烧后的二氧化碳是该领域目前研究最广泛的主题之一。已经报道了许多研究,不幸的是几乎是系统地在小型实验室规模的模块上进行的。鉴于在碳捕获应用中必须处理的烟气流速水平,严格的工程设计显然需要一致的放大方法。在这项研究中,已经探索并讨论了膜接触器放大策略的可能性和局限性。在微型组件和基于PTFE中空纤维的中试规模(10 m2膜接触器组件)上均进行了实验(从30%wt MEA水溶液中的气体混合物吸收二氧化碳)。使用串联电阻方法对结果建模。唯一可调整的参数是将模拟拟合为实验数据时,膜传质系数(km)在逻辑上起关键作用。介绍并严格讨论了从实验室规模到中试规模模块的规模计算相关的困难和不确定性。

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