Tomon Tomas Ralph B, Omisol Christine Joy M, Aguinid Blessy Joy M, Sabulbero Karyl Xyrra L, Alguno Arnold C, Malaluan Roberto M, Lubguban Arnold A
Center for Sustainable Polymers, Mindanao State University - Iligan Institute of Technology, 9200, Iligan City, Philippines.
Department of Physics, Mindanao State University - Iligan Institute of Technology, 9200, Iligan City, Philippines.
Sci Rep. 2024 Jun 20;14(1):14223. doi: 10.1038/s41598-024-64178-2.
Absorption methods using polyurethane foams (PUFs) have recently gained popularity in treating oil spills. However, conventional petroleum-based PUFs lack selectivity and are commonly surface-modified using complicated processes that require toxic and harmful solvents to enhance their hydrophobicity and oil sorption capacities. In this paper, a novel naturally superoleophilic foam with inherent hydrophobic properties has been developed through the conventional one-shot foaming method with the integration of coconut oil-based polyol. This bio-based polyol was explicitly handpicked as it is chiefly saturated, highly abundant, and inexpensive. The foam is characterized by an oil sorption capacity range of 14.89-24.65 g g for different types of oil, equivalent to 578-871 times its weight. Its hydrophobic behavior is expressed through a water contact angle of ~ 139°. The foam also showcased excellent chemical stability and high recyclability without a significant loss in absorption capacity after 20 cycles. The incorporation of the coconut oil-based polyol is also shown to improve the morphological, mechanical, and thermal behavior of the foam. It can be inferred from these findings that this novel material holds great potential for revolutionizing sorbents, pioneering a more sustainable and eco-friendly functional material produced via a facile method.
使用聚氨酯泡沫(PUF)的吸收方法最近在处理石油泄漏方面受到了广泛关注。然而,传统的石油基PUF缺乏选择性,通常需要使用复杂的工艺进行表面改性,这些工艺需要有毒有害的溶剂来提高其疏水性和吸油能力。在本文中,通过传统的一次性发泡方法,结合椰子油基多元醇,开发了一种具有固有疏水特性的新型天然超亲油泡沫。这种生物基多元醇经过精心挑选,因为它主要是饱和的、含量丰富且价格低廉。该泡沫对不同类型油的吸油能力范围为14.89-24.65 g/g,相当于其重量的578-871倍。其疏水性能通过约139°的水接触角来体现。该泡沫还表现出优异的化学稳定性和高可回收性,在20次循环后吸油能力没有明显损失。加入椰子油基多元醇还改善了泡沫的形态、机械和热性能。从这些发现可以推断,这种新型材料在革新吸附剂方面具有巨大潜力,开创了一种通过简便方法生产的更具可持续性和生态友好性的功能材料。