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Characterization and adsorption capacity of modified 3D porous aerogel from grapefruit peels for removal of oils and organic solvents
Authors:Imran  Muhammad  Islam  Ashraful  Farooq  Muhammad Umair  Ye   Junpei  Zhang   Panyue
Affiliation:1.College of Environmental Sciences and Engineering, Beijing Forestry University, Qinghua East Road 35, Haidian District, Beijing, 100083, People’s Republic of China
;2.State Key Laboratory of Environmental Aquatic Chemistry, Research Centre for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China
;3.State Key Laboratory of Super Lattices and Microstructures, Institute of Semiconductor, Chinese Academy of Sciences, Beijing, 100083, China
;
Abstract:

With the rapid industrialization, especially offshore oil exploitation, frequent leakage incidents of oils/organic solvents have adversely affected ecological systems and environmental resources. Therefore, great interest has been shown in developing new materials to eliminate these organic pollutants, which have become worldwide problems. In this study, a cost-effective, environmentally friendly porous aerogel with three-dimensional (3D) structure was prepared from grapefruit peel by a facile hydrothermal method as the adsorbent of oils/organic solvents. The as-prepared modified grapefruit peel aerogel (M-GPA) showed mesoporous structure with high specific surface area of 36.42 m2/g and large pore volume of 0.0371 cm3/g. The excellent hydrophobicity of M-GPA with a water contact angle of 141.2° indicated a strong potential for adsorption of oils and organic solvents. The high adsorption capacity of M-GPA for a series of oils and organic solvents was 8 to 52 times as much as its own weight. Moreover, the M-GPA was easily regenerated and a high adsorption capacity recovery above 97% was maintained after five adsorption–regeneration cycles. Therefore, the M-GPA is a promising recyclable adsorbent for the removal of oils/organic solvents from polluted water.

Keywords:
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