Superhydrophobic sponge with nanoneedle-like surface for efficiently separating immiscible and emulsified oil-water mixtures

Yongfei Zhu , Yonggang Du , Yuxuan Li , Zhi Wang , Junming Su
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Abstract

To increase the collision probability between emulsified droplets and sponge surface for more efficient separation of emulsions, a durable superhydrophobic melamine sponge (MS) with nanoneedle-like surface was prepared through a simple and inexpensive route in this work. The fabrication processes included the formation of ZnO nanoneedles on MS surface via a hydrothermal method, followed by coating with polybenzoxazine based bisphenol A and dodecylamine (PB-D). As excepted, the resulting superhydrophobic sponge (PB-D/ZnO/MS) could effectively separate various surfactant-stabilized water-in-oil and oil-in-water emulsions, with a high permeation flux of up to 14,050 L m−2 h−1 and separation efficiency above 98.5 %, driven solely by gravity due to its nanoneedle-like surface. Moreover, PB-D/ZnO/MS also displayed outstanding absorption capacities for various oils and organic solvents (57.4–123.0 g/g) as well as prominent reusability, enduring 30 cycles of repeated absorption-squeezing without any evident decrease in water contact angle and absorption capacity (maintaining 90.9–96.6 % of initial value). In addition, the superhydrophobicity of PB-D/ZnO/MS remained almost unchanged after being immersed in strong acidic, alkaline and salty solutions for 48 h. Furthermore, PB-D/ZnO/MS not only showed outstanding flame retardancy but also remained rapid oil absorption rate under combustion conditions. Thus, the obtained superhydrophobic MS is a promising candidate for practical oil/water separation.

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具有纳米针状表面的超疏水海绵,可有效分离不混溶和乳化的油水混合物
为了提高乳化液滴与海绵表面的碰撞概率,更有效地分离乳液,本工作通过一种简单而廉价的方法制备了具有纳米针状表面的耐用超疏水三聚氰胺海绵(MS)。制备工艺包括通过水热法在MS表面形成ZnO纳米针,然后用聚苯并恶嗪基双酚a和十二胺(PB-D)涂覆。除此之外,所得到的超疏水海绵(PB-D/ZnO/MS)可以有效地分离各种表面活性剂稳定的油包水和水包油乳液,由于其纳米针状表面,其高渗透通量高达14050 L m−2 h−1,分离效率超过98.5%。此外,PB-D/ZnO/MS对各种油和有机溶剂也表现出优异的吸收能力(57.4–123.0 g/g)以及显著的可重复使用性,经受了30个循环的重复吸收挤压,水接触角和吸收能力没有明显下降(保持初始值的90.9–96.6%)。此外,PB-D/ZnO/MS在强酸性、碱性和含盐溶液中浸泡48小时后,其超疏水性几乎保持不变。此外,PB-D/ZnO/MS在燃烧条件下不仅表现出优异的阻燃性,而且保持了快速的吸油率。因此,所获得的超疏水MS是实用油/水分离的有前途的候选者。
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