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Demixing of aqueous polymer two-phase systems in low gravity

机译:低重力下水性聚合物两相系统的分离

摘要

When polymers such as dextran and poly(ethylene glycol) are mixed in aqueous solution biphasic systems often form. On Earth the emulsion formed by mixing the phases rapidly demixes because of phase density differences. Biological materials can be purified by selective partitioning between the phases. In the case of cells and other particulates the efficiency of these separations appears to be somewhat compromised by the demixing process. To modify this process and to evaluate the potential of two-phase partitioning in space, experiments on the effects of gravity on phase emulsion demixing were undertaken. The behavior of phase systems with essentially identical phase densities was studied at one-g and during low-g parabolic aircraft maneuvers. The results indicate the demixing can occur rather rapidly in space, although more slowly than on Earth. The demixing process was examined from a theoretical standpoint by applying the theory of Ostwald ripening. This theory predicts demizing rates many orders of magnitude lower than observed. Other possible demixing mechanisms are considered.
机译:当诸如右旋糖酐和聚乙二醇的聚合物在水溶液中混合时,常常形成两相体系。在地球上,由于相密度差异,混合各相形成的乳液会迅速分解。可以通过在各相之间选择性分配来纯化生物材料。对于电池和其他微粒,这些分离的效率似乎会受到混合过程的影响。为了修改此过程并评估空间中两相分配的潜力,进行了重力对相乳液分离的影响的实验。在1 g和低g抛物线飞行器操纵期间研究了具有基本相同的相密度的相系统的行为。结果表明,尽管比在地球上慢得多,但是在空间上可以很快地进行混合。通过应用奥斯特瓦尔德熟化理论从理论的角度检查了混合过程。该理论预测脱模率比观察到的要低许多数量级。考虑了其他可能的混合机制。

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