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FLUID-BASED GATING MECHANISM WITH TUNABLE MULTIPHASE SELECTIVITY AND ANTIFOULING BEHAVIOR

机译:具有可调多相选择性和抗扰行为的基于流体的门控机制

摘要

A gating mechanism that uses a capillary stabilized liquid as a reversible, reconfigurable gate that fills and seals pores in the closed state, and creates a non-fouling, liquid-lined pore in the open state is disclosed. Theoretical modeling and experiments demonstrate that for each transport substance, the gating threshold— the pressure needed to open the pores— can be rationally tuned over a wide pressure range. This enables realizing in one system differential response profiles for a variety of liquids and gases, even letting liquids flow through the pore while preventing gas from escaping. These capabilities allow dynamic modulation of gas- liquid sorting and to separate multi-phase mixtures, with the liquid lining ensuring sustained antifouling behavior. Because the liquid gating strategy enables efficient short-term and long- term operation and can be applied to a variety of pore structures and membrane materials, and to nano, micro as well as macroscale fluid systems, the gating systems is useful in a wide range of applications.
机译:公开了一种门控机构,该门控机构使用毛细管稳定的液体作为可逆的,可重构的浇口,该浇口在闭合状态下填充和密封孔,并在打开状态下形成不积垢的液体衬里孔。理论模型和实验表明,对于每种传输物质,门限阈值(打开孔所需的压力)都可以在很宽的压力范围内合理调整。这使得能够在一个系统中实现对各种液体和气体的差分响应曲线,甚至让液体流过孔,同时防止气体逸出。这些功能允许动态调节气液分选并分离多相混合物,液衬确保持续的防污性能。因为液体浇口策略可实现有效的短期和长期运行,并且可应用于各种孔结构和膜材料,以及纳米,微米以及大型流体系统,所以该浇口系统在广泛的范围内都非常有用的应用程序。

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