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Membrane contactors modelled for process intensification post combustion solvent regeneration

机译:用于工艺强化后燃烧溶剂再生的膜接触器

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Membrane gas-solvent contactors are potentially more efficient at undertaking solvent regeneration in carbon capture applications compared to traditional desorber columns. This potential is investigated here through modelling of two experimentally reported membrane contactors based on Teflon AF1600 and polydimethylsiloxane active layers, by a simple approximate model and a one-dimensional mass transfer model. The respective membrane contactors could be operated at temperatures below that corresponding to the vaporisation of the solvent, due to the separation of the solvent and gas phase by the membrane. This required a steam sweep operating under vacuum conditions. The calculated module length for the Teflon AF1600 membrane varied between 8.9-70.2m with decreasing regeneration temperature. This increase in required length was due to reductions in overall mass transfer coefficient and mass transfer driving force as temperature is lowered. It was determined that at 110 degrees C a PDMS contactor of length 1.1 m was required to regenerate the solvent, achievable with commercial modules. A comparison of the equipment volume footprint, known as process intensification, revealed that both the Teflon AF1600 and PDMS membranes required a lower volume than a standard packed column when operating at temperatures above 90 degrees C. Temperatures higher than 95 degrees C also designated the transition above which membrane contactors have a lower energy duty than the corresponding solvent column approach. This energy duty is a trade-off between the reduction in latent heat required to produce CO2 and regenerate the solvent at lower temperatures, countered by the work duty of the vacuum pump needed to operate the steam sweep at pressures below atmospheric. The investigation demonstrated that membrane contactors are a viable alternative technology for solvent regeneration.
机译:与传统解吸器柱相比,膜气体溶剂接触器在碳捕获应用中的溶剂再生可能更有效。这里通过基于Teflon AF1600和聚二甲基硅氧烷有源层的两种实验报告的膜接触器的建模研究了这种潜力,通过简单的近似模型和一维传质模型。由于膜的分离,相应的膜接触器可以在低于溶剂的蒸发的温度下操作。这需要在真空条件下操作蒸汽扫。 Teflon AF1600膜的计算模块长度在8.9-70.2米之间变化,再生温度降低。所需长度的这种增加是由于整体传质系数的减少,并且随着温度降低了传质驱动力。确定在110℃下,需要长度1.1μm的PDMS接触器来再生溶剂,可与商业模块实现。作为过程强化的设备体积足迹的比较显示,当在90摄氏度高于90℃的温度时,Teflon AF1600和PDMS膜都需要比标准填充柱更低的体积。高于95摄氏度的温度也指定过渡以上,膜接触器具有比相应的溶剂柱方法较低的能量占型。这种能量占该能量是在生产CO 2所需的潜热的降低之间的折衷和在较低温度下再生溶剂,通过在低于大气低于大气的压力下操作蒸汽扫描所需的真空泵的工作占空比。该研究表明,膜接触器是溶剂再生的可行替代技术。

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