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Water transport properties of boron nitride nanosheets mixed matrix membranes for humic acid removal

机译:氮化硼纳米片混合基质膜对腐殖酸去除的输水特性

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摘要

Ultrafiltration grade polysulfone-based mixed matrix membranes (MMMs) incorporated with two-dimensional boron nitride nanosheet (BNNS) was prepared via phase inversion method. The amount of BN incorporated was varied and the influence on membrane morphology, contact angle, surface charge, as well as water permeability and humic acid rejection were investigated. Results revealed that the addition of BN to the membrane matrix resulted in profound increase in water permeability (almost tripled to that of neat PSf) and humic acid rejection due to the increase in pore size and surface negative charge. Beyond the morphological changes imparted by the inclusion of BNNS, we postulated that the presence of BNNS within the membrane matrix also contribute to the enhancement in flux and rejection based on surface-slip and selective interlayer transport. Despite the favourable augmentation of water transport and filtration performance, the MMMs suffered with fouling problem due to the entrapment of foulant within the enlarged pores and the membrane valleys. Its inherent adsorptive character could be a disadvantage when utilized as membrane filler.
机译:通过相转化法制备了与二维氮化硼纳米片(BNNS)结合的超滤级聚砜基混合基质膜(MMM)。 BN的掺入量各不相同,并研究了其对膜形态,接触角,表面电荷以及透水性和腐殖酸截留率的影响。结果表明,由于孔尺寸和表面负电荷的增加,向膜基质中添加BN导致透水性大大提高(几乎是纯PSf的三倍)和腐殖酸排斥。除了通过包含BNNS所赋予的形态变化外,我们推测在膜基质中BNNS的存在还有助于基于表面滑移和选择性层间转运而提高通量和截留率。尽管增加了水的输送和过滤性能,但是由于污垢被截留在扩大的孔和膜谷中,MMM仍然遇到结垢问题。当用作膜填料时,其固有的吸附特性可能是不利的。

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