Tu Wenhui, Luo Yiwen, Shen Junhao, Ran Xu, Yu Zhe, Wang Chaolun, Cai Chunhua, Bi Hengchang
In Situ Devices Center, School of Integrated Circuit, East China Normal University, Shanghai 200241, China.
Chongqing Key Laboratory of Precision Optics, Chongqing Institute of East China Normal University, Chongqing 401120, China.
Biomimetics (Basel). 2025 Apr 24;10(5):262. doi: 10.3390/biomimetics10050262.
With daily oil consumption approaching 100 million barrels, the global demand continues to generate significant quantities of oily wastewater during oil extraction, refining, and transportation, and the development of effective oil-water separation technologies has become crucial. However, membrane corrosion is a challenge under the harsh conditions involved. Here, we are inspired by the lotus leaf to create a corrosion-resistant and robust superhydrophobic membrane using a general spraying method. By using this spraying process to apply the Graphene@PDMS heptane dispersion onto the mesh substrate, we create a biomimetic corrosion-resistant and robust superhydrophobic stainless steel mesh (SSM). The modified SSM can still maintain superhydrophobic properties after soaking in a strong acidity solution (pH = 1), robust alkalinity solution (pH = 14), or NaCl solution (15 days), which demonstrates excellent chemical stability. Moreover, the modified SSM shows strong mechanical stability during ultrasonic treatment for 2 h. The superhydrophobic SSM can be used to separate various kinds of oils from water with high flux and separation efficiency. It shows a high flux of 27,400 L·m·h and high separation efficiency of 99.42% for soybean oil-water separation using 400-mesh SSM. The biomimetic modified SSM demonstrates great potential for oil-water separation under harsh conditions, which gives it promise as a candidate in practical applications of oil-water separation.
随着每日石油消费量接近1亿桶,全球需求在石油开采、精炼和运输过程中持续产生大量含油废水,因此开发有效的油水分离技术变得至关重要。然而,在相关的苛刻条件下,膜腐蚀是一项挑战。在此,我们受荷叶启发,采用通用喷涂法制备了一种耐腐蚀且坚固的超疏水膜。通过使用这种喷涂工艺将石墨烯@聚二甲基硅氧烷庚烷分散液涂覆在网状基底上,我们制备了一种仿生耐腐蚀且坚固的超疏水不锈钢网(SSM)。改性后的SSM在强酸性溶液(pH = 1)、强碱性溶液(pH = 14)或NaCl溶液中浸泡15天后仍能保持超疏水性能,这表明其具有优异的化学稳定性。此外,改性后的SSM在超声处理2小时期间表现出很强的机械稳定性。超疏水SSM可用于以高通量和分离效率从水中分离各种油类。对于使用400目SSM进行大豆油水分离,它显示出27400 L·m⁻²·h⁻¹的高通量和99.42%的高分离效率。这种仿生改性的SSM在苛刻条件下的油水分离中展现出巨大潜力,这使其有望成为油水分离实际应用中的候选材料。