Long Linyu, Li Fenfen, Shu Mengying, Zhang Caili, Weng Yunxuan
School of Materials and Mechanical Engineering, Beijing Technology & Business University, Beijing 100048, China.
Beijing Key Laboratory of Quality Evaluation Technology for Hygiene and Safety of Plastics, Beijing Technology and Business University, Beijing 100048, China.
Materials (Basel). 2019 Jun 9;12(11):1867. doi: 10.3390/ma12111867.
In this study, composite aerogels with excellent mechanical properties were prepared by using carboxymethyl cellulose (CMC) as raw materials, with carboxylic carbon nanotubes (CNTs) as reinforcement. By controlling the mass fraction of CNTs, composite aerogels with different CNTs were prepared, and the surface morphology, specific surface area, compressive modulus, density and adsorption capacities towards different oils were studied. Compared to the pure CMC aerogel, the specific surface areas of CMC/CNTs were decreased because of the agglomeration of CNTs. However, the densities of composite aerogels were lower than pure CMC aerogel. This is because the CNTs were first dispersed in water and then added to CMC solution. The results indicated that it was easy for the low CMC initial concentration to be converted to low density aerogel. The compressive modulus was increased from 0.3 MPa of pure CMC aerogel to 0.5 MPa of 5 wt % CMC/CNTs aerogel. Meanwhile, the prepared aerogels showed promising properties as the adsorption materials. Because of the high viscosity, liquid possesses strong adhesion to the pore wall, the adsorption capacity of the CMC aerogel to the liquid increases as the viscosity of the liquid increases.
在本研究中,以羧甲基纤维素(CMC)为原料、羧基化碳纳米管(CNTs)为增强体,制备了具有优异力学性能的复合气凝胶。通过控制CNTs的质量分数,制备了具有不同CNTs含量的复合气凝胶,并对其表面形貌、比表面积、压缩模量、密度以及对不同油品的吸附性能进行了研究。与纯CMC气凝胶相比,由于CNTs的团聚,CMC/CNTs的比表面积有所降低。然而,复合气凝胶的密度低于纯CMC气凝胶。这是因为CNTs先分散于水中,然后再添加到CMC溶液中。结果表明,低初始浓度的CMC易于转化为低密度气凝胶。压缩模量从纯CMC气凝胶的0.3 MPa提高到5 wt% CMC/CNTs气凝胶的0.5 MPa。同时,所制备的气凝胶作为吸附材料表现出良好的性能。由于液体具有高粘度,其对孔壁具有较强的附着力,CMC气凝胶对液体的吸附容量随液体粘度的增加而增大。