用于高性能油/水混合物和乳液分离的聚酰亚胺基超润湿性膜/材料:综述
Polyimide based super-wettable membranes/materials for high performance oil/water mixture and emulsion separation: A review.
作者信息
Baig Umair, Faizan M, Dastageer M A
机构信息
Interdisciplinary Research Center for Membranes & Water Security, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia; Center for Research Excellence in Desalination & Water Treatment, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia.
Department of Mechanical Engineering, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia.
出版信息
Adv Colloid Interface Sci. 2021 Nov;297:102525. doi: 10.1016/j.cis.2021.102525. Epub 2021 Sep 23.
This article reviews the application of highly heat and pressure resistant polyimide material for the development of membranes/materials that exhibit unique super-wettability, the characteristics pivotal for the efficient separation of oil-water mixture and emulsion. The polymerization of imide monomer in polyimide brings about the required porosity in the material, which in turn renders the crucial surface roughness, which is instrumental for establishing the desired super-wettability on the polyimide based membrane materials, in addition to the mechanical and thermal robustness. The membrane as the oil-water filtering medium can be either oil passing or water passing depends on the individual wettability of the membrane surface for oil and water, which in turn depend on the respective solid-liquid interfacial energy and the hierarchical surface roughness. Superhydrophobic/superoleophobic wetting characteristic of the surface repels water and allows oil to pass through the membrane medium, and the major disadvantage of this kind of oil/water separation is the rapid oil fouling of the membrane pores and the consequent less efficiency for oil water separation. On the other hand, the membrane surface engineered to have the Superhydrophilic/underwater superoleophobic wetting characteristics can be water passing, and the easy fouling of the membrane surface can be minimized. In the case of polyimide materials, there are lot of scopes to engineer the physical properties like surface energy and surface roughness of the membrane surface in order to obtain the required wettability. There have been many works focused on the application of different variants of polyimide materials for developing membrane for oil water separation. In this review, we present an itemized review of various works on polyimide materials based oil/water separation in terms of chemical, physical, structural and surface characteristics of the material.
本文综述了高耐热和耐压聚酰亚胺材料在开发具有独特超润湿性的膜/材料方面的应用,这种超润湿性是油水混合物和乳液高效分离的关键特性。聚酰亚胺中酰亚胺单体的聚合产生了材料所需的孔隙率,这反过来又形成了至关重要的表面粗糙度,这不仅有助于在聚酰亚胺基膜材料上建立所需的超润湿性,还赋予了材料机械和热稳定性。作为油水过滤介质的膜是透油还是透水取决于膜表面对油和水的各自润湿性,而这又取决于相应的固液界面能和分级表面粗糙度。表面的超疏水/超疏油润湿特性排斥水并允许油通过膜介质,这种油水分离的主要缺点是膜孔迅速被油污染,从而导致油水分离效率降低。另一方面,设计成具有超亲水/水下超疏油润湿特性的膜表面可以透水,并且可以将膜表面的易污染性降至最低。对于聚酰亚胺材料,有很大的空间来设计膜表面的物理性质,如表面能和表面粗糙度,以获得所需的润湿性。已经有许多工作专注于应用不同变体的聚酰亚胺材料来开发用于油水分离的膜。在这篇综述中,我们根据材料的化学、物理、结构和表面特性,对基于聚酰亚胺材料的油水分离的各种工作进行了逐项综述。