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Sorption/Diffusion Contributions to the Gas Permeation Properties of Bi-Soft Segment Polyurethane/Polycaprolactone Membranes for Membrane Blood Oxygenators

机译:膜血液氧合器双软链段聚氨酯/聚己内酯膜的吸附/扩散对气体渗透性能的影响

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摘要

Due to their high hemocompatibility and gas permeation capacity, bi-soft segment polyurethane/polycaprolactone (PU/PCL) polymers are promising materials for use in membrane blood oxygenators. In this work, both nonporous symmetric and integral asymmetric PU/PCL membranes were synthesized, and the permeation properties of the atmospheric gases N , O , and CO through these membranes were experimentally determined using a new custom-built gas permeation apparatus. Permeate pressure vs. time curves were obtained at 37.0 °C and gas feed pressures up to 5 bar. Fluxes, permeances, and permeability coefficients were determined from the steady-state part of the curves, and the diffusion and sorption coefficients were estimated from the analysis of the transient state using the time-lag method. Independent measurements of the sorption coefficients of the three gases were performed, under equilibrium conditions, in order to validate the new setup and procedure. This work shows that the gas sorption in the PU/PCL polymers is the dominant factor for the permeation properties of the atmospheric gases in these membranes.
机译:由于其高的血液相容性和气体渗透能力,双软链段聚氨酯/聚己内酯(PU / PCL)聚合物是用于膜式血液充氧器的有前途的材料。在这项工作中,合成了无孔对称和整体不对称PU / PCL膜,并使用新型定制的气体渗透装置通过实验确定了大气中N,O和CO的渗透特性。在37.0°C和最高5 bar的进气压力下获得了渗透压与时间的关系曲线。由曲线的稳态部分确定通量,磁导率和渗透率系数,并使用时滞方法通过分析瞬态来估算扩散系数和吸附系数。为了验证新的设置和程序,在平衡条件下对三种气体的吸附系数进行了独立的测量。这项工作表明,PU / PCL聚合物中的气体吸附是这些膜中大气气体渗透性能的主要因素。

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