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A review on nanofiltration membrane fabrication and modification using polyelectrolytes: Effective ways to develop membrane selective barriers and rejection capability

机译:纳滤膜的制备和使用聚电解质修饰的综述:开发膜选择性屏障和排斥能力的有效方法

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摘要

The performance of nanofiltration (NF) processes is mainly governed by factors such as the sieving effect (also known as size exclusion) and the Donnan effect (which depends on membrane surface charges). This has encouraged the development of new types of NF membranes using various kinds of polyelectrolytes as they have good pore-sealing effects and are able to improve the membrane surface charge density. Manipulation of the pH, supporting electrolyte concentration, type and concentration of polyelectrolyte solutions can significantly vary the characteristics of polyelectrolyte molecules thus improving their electrostatic interactions with the surrounding compounds. This is highly desired and useful when polyelectrolytes are to be incorporated in membrane surface modification as the charges formed can increase the membrane surface charge density, membrane surface coating stability and membrane selectivity. Most of the research discussed in this paper employed the special features of polyelectrolyte molecules to improve the performance of NF membranes in various applications. Various methods have been used to incorporate polyelectrolytes in order to improve NF membrane performance, such as static deposition, dynamic deposition, single layer coating, layer-by-layer (LbL) coating, and so forth. Some of the suitable devices or instruments used for polyelectrolyte-modified membranes are recommended and evaluated. In conclusion, polyelectrolytemodified membranes offer significant improvements, can be produced in a short period of time, require less energy during membrane modification or fabrication and incur lower production costs. Thus, a full understanding of the factors affecting polyelectrolyte-modified membranes is very much desired and worth further detailed investigation in the near future.
机译:纳滤(NF)工艺的性能主要受筛分效应(也称为尺寸排阻)和Donnan效应(取决于膜表面电荷)等因素控制。这鼓励了使用各种聚电解质开发新型NF膜的方法,因为它们具有良好的密封效果,并且能够提高膜表面电荷密度。调节pH值,支持电解质的浓度,聚电解质溶液的类型和浓度可以显着改变聚电解质分子的特性,从而改善其与周围化合物的静电相互作用。当将聚电解质掺入膜表面改性中时,这是高度期望的和有用的,因为形成的电荷可增加膜表面电荷密度,膜表面涂层稳定性和膜选择性。本文讨论的大多数研究都利用聚电解质分子的特殊功能来改善NF膜在各种应用中的性能。为了改善NF膜的性能,已经使用了各种方法来掺入聚电解质,例如静态沉积,动态沉积,单层涂覆,逐层(LbL)涂覆等。推荐并评估了一些用于聚电解质改性膜的合适设备或仪器。总之,聚电解质改性的膜具有显着的改进,可以在短时间内生产,在膜改性或制造过程中需要较少的能量,并降低了生产成本。因此,非常需要对影响聚电解质改性膜的因素有充分的了解,并且值得在不久的将来进行进一步的详细研究。

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