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Porous Gelatin Membranes Obtained from Pickering Emulsions Stabilized with h-BNNS: Application for Polyelectrolyte-Enhanced Ultrafiltration

机译:由H-BNNS稳定的酸奶乳液获得的多孔明胶膜:用于聚电解质增强的超滤应用

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摘要

In recent years, numerous studies have been conducted to develop biopolymer-based membranes, highlighting the challenges to prepare porous structures with control porosity. In this paper an innovative method that relies on the generation of Pickering emulsions was developed to prepare porous membranes from gelatin for filtration purpose. Hexagonal boron nitride nanosheets (h-BNNS) were used to stabilize micro-droplets of castor oil in a continuous homogeneous gelatin solution. Two steps in the membrane preparation process strongly influenced the porous structure. Specifically, the duration of the drying time after emulsion casting and the duration of the cross-linking step affected membrane pore size, hydrophobicity, water swelling, and water permeability. By controlling these two steps, membranes could be designed with pore size between 0.39 and 1.60 μm and display pure water permeability between 150 and 506 L h m bar . These membranes have been tested for complexation–ultrafiltration experiments in which iron ions were removed from aqueous solutions with/without poly (acrylic acid) (PAA). Without PAA, the removal of free iron (II) ions was low (not more than 14%). The addition of PAA (200 ppm) allowed obtaining high removal rates (97%) at pH ≥ 5 with 3 bars of transmembrane pressure.
机译:近年来,已经进行了许多研究以开发基于生物聚合物的膜,突出了制备具有控制孔隙率的多孔结构的挑战。本文开发了一种依赖于产生皮克林乳液产生的创新方法,以制备来自明胶的多孔膜以进行过滤目的。六方硼氮化物纳米片(H-BNNS)用于稳定连续均匀明胶溶液中的蓖麻油微液滴。膜制备过程中的两个步骤强烈影响多孔结构。具体地,乳液浇铸后干燥时间的持续时间和交联步长的持续时间受影响膜孔径,疏水性,水溶胀和渗透性。通过控制这两个步骤,膜可以设计在0.39和1.60μm之间的孔径之间,并在150和506L H mμl之间显示纯净的水渗透性。已经测试了这些膜的络合超滤实验,其中将铁离子从用/不含聚(丙烯酸)(PAA)的水溶液中除去。没有Paa,除去游离铁(II)离子的除去(不超过14%)。添加PAA(200ppm)允许在pH≥5处获得高除去速率(97%),具有3巴的跨膜压力。

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