Fan Tingting, Su Ying, Fan Qian, Li Zhenhuan, Cui Wenying, Yu Miao, Ning Xin, Ramakrishna Seeram, Long Yunze
Collaborative Innovation Center for Nanomaterials & Devices, College of Physics, Qingdao University, Qingdao 266071, P. R. China.
Industrial Research Institute of Nonwovens & Technical Textiles, College of Textiles & Clothing, Qingdao University, Shandong Center for Engineered Nonwovens, Qingdao 266071, P. R. China.
ACS Appl Mater Interfaces. 2021 Apr 28;13(16):19377-19386. doi: 10.1021/acsami.1c04066. Epub 2021 Apr 14.
The cleanup of oily wastewater and crude-oil spills is a global challenge. Traditional membrane materials are inefficient for oil/water separation under harsh conditions and limited by sorption speeds because of the high viscosity of crude oil. Herein, a kind of Graphene-wrapped polyphenylene sulfide fibrous membrane with superior chemical resistance and hydrophobicity for efficient oil/water separation and fast adsorption of crude oil all-weather is reported. The reduced graphene oxide (rGO)@polyphenylene sulfide (PPS) fibrous membrane can be applied in the various harsh conditions with Joule heating and solar heating. In addition, the oil(dichloromethane)/water separation flux of rGO@PPS reached 12 903 L mh, and the separation efficiency reached 99.99%. After 10 cycles, the rGO@PPS still performed high separation flux and filtration efficiency. More importantly, the rGO@PPS still retained its high conductivity, excellent filtration efficiency, and stable hydrophobicity after acid or alkali treatment. Moreover, the rGO@PPS can be heated by solar energy to absorb viscous crude oil during the day, while at night, the crude oil can be adsorbed by Joule heating. The time to adsorb crude oil can be reduced by 98.6% and 97.3% through Joule heating and solar heating, respectively. This all-weather utilization greatly increases the adsorption efficiency and effectively reduces energy consumption.
含油废水和原油泄漏的清理是一项全球性挑战。传统膜材料在恶劣条件下进行油/水分离时效率低下,且由于原油粘度高,吸附速度受限。在此,报道了一种具有优异耐化学性和疏水性的石墨烯包裹聚苯硫醚纤维膜,可全天候高效进行油/水分离并快速吸附原油。还原氧化石墨烯(rGO)@聚苯硫醚(PPS)纤维膜可通过焦耳加热和太阳能加热应用于各种恶劣条件。此外,rGO@PPS的油(二氯甲烷)/水分离通量达到12903 L·m⁻²·h⁻¹,分离效率达到99.99%。经过10次循环后,rGO@PPS仍具有高分离通量和过滤效率。更重要的是,rGO@PPS在酸碱处理后仍保持高导电性、优异的过滤效率和稳定的疏水性。此外,rGO@PPS白天可通过太阳能加热吸附粘性原油,而在夜间,原油可通过焦耳加热吸附。通过焦耳加热和太阳能加热分别可将吸附原油的时间减少98.6%和97.3%。这种全天候利用大大提高了吸附效率并有效降低了能耗。