Li Hao, Li Tiehu, Deng Weibin, Kong Siyuan
School of Materials Science and Engineering, Northwestern Polytechnical University, Xi'an 710072, China.
Polymers (Basel). 2022 Oct 21;14(20):4455. doi: 10.3390/polym14204455.
In view of the good adsorption properties of graphene and carbon foam, they were combined to achieve the optimal matching of microstructures. Taking mesophase pitch as a raw material, pitch-based carbon foam was prepared by the self-foaming method. Graphene gel was prepared as the second phase to composite with the carbon foam matrix; graphene-modified, pitch-based carbon foam composites were finally obtained. Graphene gel was dispersed in the rich pore structure of carbon foam to improve its agglomeration and the porosity, and the active sites of the composite were further increased; the adsorption properties and mechanical properties of the composites were also significantly improved. The microstructure and morphology of the composites were studied by SEM, XRD and Raman spectroscopy; the compressive property and porosity were also tested. Methylene blue (MB) solution was used to simulate a dye solution for the adsorption test, and the influence of the composite properties and MB solution on the adsorption property was studied. Results showed that the compressive strength of the composite was 13.5 MPa, increased by 53.41%, and the porosity was 58.14%, increased by 24.15%, when compared to raw carbon foam. When the mass of the adsorbent was 150 mg, the initial concentration of the MB solution was 5 mg/L, and the pH value of the MB solution was 11; the graphene-modified carbon foam composites showed the best adsorption effect, with an adsorption rate of 96.3% and an adsorption capacity of 144.45 mg/g. Compared with the raw carbon foam, the adsorption rate and adsorption capacity of the composites were increased by 158.18% and 93.50%, respectively.
鉴于石墨烯和碳泡沫具有良好的吸附性能,将它们结合以实现微观结构的最佳匹配。以中间相沥青为原料,采用自发泡法制备了沥青基碳泡沫。制备石墨烯凝胶作为第二相与碳泡沫基体复合,最终得到石墨烯改性的沥青基碳泡沫复合材料。石墨烯凝胶分散在碳泡沫丰富的孔隙结构中,改善了其团聚情况和孔隙率,复合材料的活性位点进一步增加,复合材料的吸附性能和力学性能也得到显著提高。通过扫描电子显微镜(SEM)、X射线衍射仪(XRD)和拉曼光谱对复合材料的微观结构和形貌进行了研究,还测试了其压缩性能和孔隙率。用亚甲基蓝(MB)溶液模拟染料溶液进行吸附试验,研究了复合材料性能和MB溶液对吸附性能的影响。结果表明,与原始碳泡沫相比,复合材料的抗压强度为13.5MPa,提高了53.41%,孔隙率为58.14%,提高了24.15%。当吸附剂质量为150mg,MB溶液初始浓度为5mg/L,MB溶液pH值为11时,石墨烯改性碳泡沫复合材料表现出最佳吸附效果,吸附率为96.3%,吸附容量为144.45mg/g。与原始碳泡沫相比,复合材料的吸附率和吸附容量分别提高了158.18%和93.50%。