Xiong Qiancheng, Bai Qiuhong, Li Cong, Lei Huan, Liu Chaoyun, Shen Yehua, Uyama Hiroshi
Key Laboratory of Synthetic and Natural Functional Molecule Chemistry of Ministry of Education, College of Chemistry and Materials Science, Northwest University, Xi'an 710127, China.
College of Pharmaceutical Engineering, Shaanxi Fashion Engineering University, Xi'an 712046, China.
Polymers (Basel). 2018 Oct 5;10(10):1101. doi: 10.3390/polym10101101.
Ecological and environmental damage caused by oil spillage has attracted great attention. Used cigarette filters (CF) have also caused negative environmental consequences. Converting CF to economical materials is a feasible way to address these problems. In this study, we demonstrate a simple method for production of a highly hydrophobic absorbent from CF. CF was modified by using different volume ratios of octadecyltrichlorosilane and methyltrimethoxysilane. When the volume ratio was 3:2, the modified CF had the high water contact angle of 155°. It could selectively and completely absorb silicone oil from an oil-water mixture and showed a good absorption capacity of 38.3 /. The absorbed oil was readily and rapidly recovered by simple mechanical squeezing, and it could be reused immediately without any additional treatments. The as-obtained superhydrophobic modified CF retained an absorption capacity of 80% for pump oil and 82% for silicone oil after 10 cycles. The modified CF showed good elasticity in the test of repeated use. The present study provides novel design of a functional material for development of hydrophobic absorbents from used CF via a facile method toward oil spillage cleanup, as well as a new recycling method of CF to alleviate environmental impacts.
石油泄漏造成的生态和环境破坏已引起广泛关注。用过的香烟过滤嘴(CF)也造成了负面的环境影响。将CF转化为经济材料是解决这些问题的可行方法。在本研究中,我们展示了一种从CF制备高疏水性吸收剂的简单方法。通过使用不同体积比的十八烷基三氯硅烷和甲基三甲氧基硅烷对CF进行改性。当体积比为3:2时,改性CF具有155°的高水接触角。它可以从油水混合物中选择性地完全吸收硅油,显示出38.3 /的良好吸收能力。通过简单的机械挤压可以轻松快速地回收吸收的油,并且无需任何额外处理即可立即重复使用。所获得的超疏水改性CF在10次循环后对泵油的吸收能力保持80%,对硅油的吸收能力保持82%。改性CF在重复使用测试中表现出良好的弹性。本研究提供了一种功能材料的新颖设计,通过一种简便的方法从用过的CF开发疏水性吸收剂用于溢油清理,以及一种新的CF回收方法以减轻环境影响。