Dong Ting, Li Qiang, Nie Kai, Jiang Wei, Li Shouzhen, Hu Xinyi, Han Guangting
Key Laboratory of Bio-Fibers and Eco-Textiles, Qingdao University, #308 Ningxia Road, Qingdao 266071, P. R. China.
College of Textile, Qingdao University, #308, Ningxia Road, Qingdao 266071, P. R. China.
ACS Omega. 2020 Aug 21;5(34):21745-21752. doi: 10.1021/acsomega.0c02731. eCollection 2020 Sep 1.
Water pollution caused by oil spillages has aroused worldwide attention. Therefore, it is of great significance to develop low-cost, environmentally friendly materials to remove oil contaminants from water. Herein, a "green" superhydrophobic sponge made from marine algae was fabricated by one-step growth of silicone nanofilaments onto a AgNP-decorated alginate sponge via chemical vapor deposition of an azeotrope of (CH)SiCl and SiCl. The reaction of the azeotrope with the alginate sponge was termed "instant", as it took only a few minutes (5 min) at room temperature to achieve superhydrophobicity (152.0°). Such sponges resist high temperatures, UV irradiation, organic solvents, and mechanical abrasion without losing the superhydrophobicity. The sponges absorbed oil droplets within seconds (1.3-7.0 s) with 11.7-17.1 g/g of sorption capacities for oils of different viscous levels (0.56-1775.00 mPa·s). These sponges could retain 90% of the initial oil sorption capacities after 10 consecutive oil sorption/desorption cycles. Benefiting from the superhydrophobicity and superoleophilicity, the sponges also exhibited high efficiency in oil/water mixture separation. Once the oil/water mixture was injected into the sponge, oil drops were retained in inner pores while water was rejected and spouted from the surface. These excellent performances make the resultant sponge a competitive material for oil spill emergency remediation.
石油泄漏造成的水污染已引起全球关注。因此,开发低成本、环境友好的材料以去除水中的油污具有重要意义。在此,通过(CH)SiCl和SiCl的共沸物的化学气相沉积,将硅纳米丝一步生长在AgNP修饰的海藻酸钠海绵上,制备了一种由海藻制成的“绿色”超疏水海绵。共沸物与海藻酸钠海绵的反应被称为“即时”反应,因为在室温下只需几分钟(5分钟)就能实现超疏水性(152.0°)。这种海绵耐高温、耐紫外线照射、耐有机溶剂且耐机械磨损,不会失去超疏水性。海绵在几秒钟内(1.3 - 7.0秒)就能吸收油滴,对不同粘度水平(0.56 - 1775.00 mPa·s)的油的吸附容量为11.7 - 17.1 g/g。在连续10次油吸附/解吸循环后,这些海绵仍能保持初始油吸附容量的90%。得益于超疏水性和超亲油性,这些海绵在油/水混合物分离方面也表现出高效率。一旦将油/水混合物注入海绵中,油滴会留在内部孔隙中,而水则被排斥并从表面喷出。这些优异的性能使得所得海绵成为石油泄漏应急修复的有竞争力的材料。