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通过 NHHPO 改性制备浒苔衍生碳气凝胶用于多行为油水分离。

Fabrication of superhydrophobic Enteromorpha-derived carbon aerogels via NHHPO modification for multi-behavioral oil/water separation.

机构信息

Shandong Provincial Key Laboratory of Water Pollution Control and Resource Reuse, School of Environmental Science and Engineering, Shandong University, Jinan 250100, China.

Shandong Provincial Key Laboratory of Water Pollution Control and Resource Reuse, School of Environmental Science and Engineering, Shandong University, Jinan 250100, China.

出版信息

Sci Total Environ. 2022 Sep 1;837:155869. doi: 10.1016/j.scitotenv.2022.155869. Epub 2022 May 11.

Abstract

Hydrophobic and oleophilic biomass-based block materials are considered to be highly promising candidates used for oil/water separation. However, the crucial hydrophobic modification process often involves various toxic and hazardous organic substances or requires high energy inputs. Inspired by the flame retardant principle of phosphorus-containing flame retardants, herein, an Enteromorpha-derived carbon (ADP-EP) aerogel with a water contact angle of 144.2° was prepared by successive freeze-shaping, freeze-drying and low-temperature carbonization treatment (300 °C), using NHHPO (ADP) as a modifier. The results demonstrated that the introduction of NHHPO could largely facilitate the removal of oxygenated groups from the pristine EP aerogels and enhance their surface roughness, thereby achieving surface hydrophobic modification. Featuring intrinsic low density, rich porosity and strong lipophilicity, the as-fabricated ADP-EP aerogels exhibited exceptional performance in both oil spill adsorption (~140 g/g) and water-in-oil emulsion separation. Moreover, the good reusability for oil uptake was also realized thanks to its robust mechanical compressibility and thermal stability. This work provides a facile, economical and eco-friendly route to obtain a desirable hydrophobic/oleophilic surface.

摘要

疏油亲油型生物质基块状材料被认为是极具应用前景的油水分离材料。然而,关键的疏油改性过程通常涉及各种有毒有害的有机物质,或者需要高能量输入。受含磷阻燃剂阻燃原理的启发,本文以 NHHPO(ADP)为改性剂,通过连续冷冻成型、冷冻干燥和低温碳化处理(300°C),制备了一种具有 144.2°水接触角的浒苔衍生碳(ADP-EP)气凝胶。结果表明,NHHPO 的引入可以极大地促进原始 EP 气凝胶中含氧基团的去除,并提高其表面粗糙度,从而实现表面疏油改性。所制备的 ADP-EP 气凝胶具有内在的低密度、丰富的孔隙率和较强的亲油性,在溢油吸附(~140 g/g)和油水乳液分离方面表现出优异的性能。此外,由于其强大的机械可压缩性和热稳定性,实现了良好的吸油重复使用性。这项工作为获得理想的疏油/亲油表面提供了一种简便、经济和环保的途径。

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