Chen Zhenfeng, Wang Bo, Qi Jiahuan, Liu Tianhui, Feng Yuqing, Liu Chuntai, Shen Changyu
College of Materials Science and Engineering, National Engineering Research Center for Advanced Polymer Processing Technology, Key Laboratory of Materials Processing and Mold of Ministry of Education, Zhengzhou University, Zhengzhou, Henan 450001, China.
College of Materials Science and Engineering, National Engineering Research Center for Advanced Polymer Processing Technology, Key Laboratory of Materials Processing and Mold of Ministry of Education, Zhengzhou University, Zhengzhou, Henan 450001, China.
Carbohydr Polym. 2024 Jul 15;336:122140. doi: 10.1016/j.carbpol.2024.122140. Epub 2024 Apr 10.
Developing novel absorbent materials targeting high-efficiency, low-energy-consumption, and environmental-friendly oil spill cleanup is still a global issue. Porous absorbents endowed with self-heating function are an attractive option because of that they are able to in-situ heat crude oil and dramatically reduce oil viscosity for efficient remediation. Herein, we facilely prepared an eco-friendly multifunctional bacterial cellulose/MXene aerogel (P-SBC/MXene aerogel) for rapid oil recovery. Thanks to excellent full solar spectrum absorption (average absorbance = 96.6 %), efficient photo-thermal conversion, and superior electrical conductivity (electrical resistance = 36 Ω), P-SBC/MXene aerogel exhibited outstanding photothermal and electrothermal capabilities. Its surface temperature could quickly reach 93 °C under 1.0 kW/m solar irradiation and 124 °C under 3.0 V voltage respectively, enabling effective heat transfer toward spilled oil. The produced heat significantly decreased crude oil viscosity, allowing P-SBC/MXene aerogel to rapidly absorb oil. By combining solar heating and Joule heating, P-SBC/MXene aerogel connected to a pump-assisted absorption device was capable of achieving all-weather crude oil removal from seawater (crude oil flux = 630 kg m h). More notably, P-SBC/MXene aerogel showed splendid outdoor crude oil separation performance. Based on remarkable crude oil/seawater separation ability, the versatile aerogel provides a promising way to deal with large-area oil spills.
开发针对高效、低能耗和环境友好型溢油清理的新型吸收材料仍然是一个全球性问题。具有自热功能的多孔吸收剂是一个有吸引力的选择,因为它们能够原位加热原油并显著降低油的粘度以实现高效修复。在此,我们轻松制备了一种用于快速回收油的环保多功能细菌纤维素/MXene气凝胶(P-SBC/MXene气凝胶)。由于具有出色的全太阳光谱吸收(平均吸光度 = 96.6%)、高效的光热转换和优异的导电性(电阻 = 36 Ω),P-SBC/MXene气凝胶表现出出色的光热和电热性能。在1.0 kW/m的太阳辐照下,其表面温度可迅速达到93°C,在3.0 V电压下可达到124°C,能够有效地将热量传递给溢油。产生的热量显著降低了原油粘度,使P-SBC/MXene气凝胶能够快速吸收油。通过结合太阳能加热和焦耳加热,连接到泵辅助吸收装置的P-SBC/MXene气凝胶能够全天候从海水中去除原油(原油通量 = 630 kg m h)。更值得注意的是,P-SBC/MXene气凝胶在户外原油分离方面表现出色。基于卓越的原油/海水分离能力,这种多功能气凝胶为处理大面积溢油提供了一种有前景的方法。