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疏水亲油木质纳米纤维素气凝胶的制备及表征

Preparation and Characterization of Hydrophobic and Lipophilic Lignocellulosic Nanofibrils-based Aerogel

  • 摘要: 以芒草秸秆纤维为原料,采用柠檬酸预处理结合高压均质制得木质纳米纤维素(LCNF);LCNF在催化剂三乙胺作用下与4,4’-二苯基甲烷二异氰酸酯(MDI)交联制备高吸油性木质纳米纤维素气凝胶,利用冷场发射扫描电子显微镜、红外光谱仪、热重分析仪、光学接触角仪对气凝胶性能进行表征分析,并以重量法测定气凝胶的吸油性能。研究结果表明:改性LCNF气凝胶有明显的多级微/纳粗糙结构,且具有良好的热稳定性和疏水吸油性能,最大失重热降解温度和水接触角分别为353.6℃和152.2°;红外光谱分析表明LCNF上的羟基与MDI的异氰酸根发生交联反应;当LCNF与MDI的质量比为1:4时,改性气凝胶的水接触角为138.1°,吸油性能最佳,对氯仿的吸油倍率可达41.6 g/g。

     

    Abstract: Miscanthus-based lignocellulosic nanofibrils(LCNF) was produced by using citric acid pretreatment followed by the high-pressure homogenization with using miscanthus straw fiber as raw material. LCNF was cross-linked with 4, 4'-diphenyl-methane-diisocyanant(MDI) by using triethylamine as catalyst to obtain aerogel with high oil absorption capacity. The properties of aerogels were characterized by cold field emission scanning electron microscope, Fourier transform infrared spectrometer(FT-IR), thermogravimetric analyzer, and optical contact angle analyzer, and the oil absorption performance of aerogel was determined by gravimetric method. The results showed that the modified LCNF aerogel exhibited obvious multi-level rough micro/nanostructure with good thermal stability, hydrophobicity, and oil absorption capacity; the maximum weight loss temperature and water contact angle were 353.6℃ and 152.2°, respectively. FT-IR showed that cross-linking reaction was occurred between the hydroxylgroup on LCNF and the isocyanate group of MDI. When the mass ratio of LCNF to MDI was 1:4, the water contact angle of themodified aerogel was 138.1°, and the oil absorption performance was the bestwith chloroform absorption capacity of 41.6 g/g.

     

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