MOE Key Laboratory of Macromolecular Synthesis and Functionalization, and Key Laboratory of Adsorption and Separation Materials & Technologies of Zhejiang Province, Department of Polymer Science and Engineering , Zhejiang University , Hangzhou 310027 , China.
ACS Appl Mater Interfaces. 2018 Mar 21;10(11):9832-9840. doi: 10.1021/acsami.7b19700. Epub 2018 Mar 9.
Oil/water separation, especially for those surfactant-stabilized oil-in-water (O/W) emulsions, is required to protect our ecological environment from destruction. Janus membranes with a function of deemulsification appear as a kind of efficient materials for the separation of O/W emulsions because of a precise adjustment of the surface nature for the hydrophilic and hydrophobic layers. However, existing strategies of membrane preparation suffer from complicated multisteps, leading to uncontrolled thickness of the hydrophilic deemulsification layer. Herein, we present a facile and tunable method to prepare a series of Janus membranes consisting of negatively or positively charged carbon nanotubes (CNTs) and hydrophobic microfiltration membranes by vacuum filtration. The thickness of the hydrophilic CNT coating is thus well-controlled by engineering the amount of CNTs deposited on the substrate membrane. The prepared Janus membranes are effective for the separation of both heavy oil and light oil from O/W emulsions through deemulsification owing to the charge-screening effect. It is very interesting that those membranes displaying a combination of water contact angle and underwater oil contact angle both above 90° have a unique oil delivery behavior and thus high separation performance of oil from O/W emulsions. Such Janus membranes can retrieve 89% of oil in 40 min from the 1,2-dichloroethane/water emulsions with the droplet size of 19 μm. This easy-to-prepare and easy-to-tune strategy provides feasibilities for practical applications of Janus membranes to the deemulsification and separation of O/W emulsions.
油水分离,特别是对于那些表面活性剂稳定的水包油 (O/W) 乳液,是保护我们的生态环境免受破坏所必需的。具有破乳功能的 Janus 膜因其亲水层和疏水层表面性质的精确调节,成为 O/W 乳液分离的一种有效材料。然而,现有的膜制备策略存在复杂的多步骤问题,导致亲水破乳层的厚度不可控。在此,我们通过真空过滤法制备了一系列由带负电或带正电的碳纳米管 (CNT) 和疏水性微滤膜组成的 Janus 膜,提出了一种简单且可调的方法。通过控制沉积在基底膜上的 CNT 量,从而很好地控制亲水 CNT 涂层的厚度。所制备的 Janus 膜通过电荷屏蔽效应有效地分离 O/W 乳液中的重油和轻油。非常有趣的是,那些水接触角和水下油接触角均大于 90°的膜具有独特的输油行为,因此对 O/W 乳液的油具有高分离性能。这种 Janus 膜可以从 19μm 粒径的 1,2-二氯乙烷/水乳液中在 40 分钟内回收 89%的油。这种易于制备和易于调节的策略为 Janus 膜在 O/W 乳液的破乳和分离中的实际应用提供了可行性。