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用于制备具有高吸油能力的多孔椰壳-聚氨酯复合材料的椰壳木质纤维素预处理

Pretreatment of coir lignocellulose for preparation of a porous coir-polyurethane composite with high oil adsorption capacity.

作者信息

Hoang Phan Huy, Dat Hoang Tien, Cuong Thai Dinh, Dien Le Quang

机构信息

School of Chemical Engineering, Hanoi University of Science & Technology No. 1 Dai Co Viet Street Hanoi Vietnam

出版信息

RSC Adv. 2022 May 17;12(24):14976-14985. doi: 10.1039/d2ra01349e.

Abstract

In this present work, different treatment methods of coir biomass were investigated to improve the oil sorption capacity. The treated coir material was then used to fabricate an efficient porous coir-polyurethane composite sorbent by incorporating coir into a polyurethane matrix. The new composite possessed an open cell structure with high porosity and high oil sorption efficiency. The suitable technical parameters of the coir treatment process were selected as: hot water treatment at 170 °C for 120 minutes. After treatment under this suitable condition, treated coconut fiber exhibited an oil adsorption capacity of 4.1 g g, with an increase of 78.3% compared to that of the original coconut fiber. Furthermore, the application of the as-fabricated porous composite sorbent for oil treatment was examined under various conditions. It was observed that the oil uptake capacity of the new composite sorbent was high, up to 15.2 g g when 20% treated coir material with a particle size of 1 mm was added into the polyurethane matrix. Several advantages of the new porous composite sorbent obtained from coir biomass and polyurethane such as low cost, being eco-friendly, ready availability and high buoyancy make it an efficient sorbent material for oil spill treatment.

摘要

在本研究中,研究了椰壳生物质的不同处理方法以提高吸油能力。然后,通过将椰壳掺入聚氨酯基体中,用处理后的椰壳材料制备了一种高效的多孔椰壳 - 聚氨酯复合吸附剂。这种新型复合材料具有开孔结构,孔隙率高,吸油效率高。椰壳处理工艺的合适技术参数选择为:在170℃下进行热水处理120分钟。在这种合适的条件下处理后,处理过的椰壳纤维的吸油能力为4.1 g/g,与原始椰壳纤维相比提高了78.3%。此外,在各种条件下考察了所制备的多孔复合吸附剂在油处理中的应用。观察到,当将20%粒径为1mm的处理过的椰壳材料添加到聚氨酯基体中时,新型复合吸附剂的吸油能力很高,可达15.2 g/g。由椰壳生物质和聚氨酯制备的新型多孔复合吸附剂具有低成本、环保、易于获得和高浮力等几个优点,使其成为一种用于溢油处理的高效吸附材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13a6/9112883/58de1d8b18f4/d2ra01349e-f1.jpg

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