Acta Chimica Sinica ›› 2007, Vol. 65 ›› Issue (20): 2291-2298. Previous Articles     Next Articles

纳米CaCO3的改性、表面结构与流变行为研究

唐艳军1,2,李友明*,1,胡大为3   

  1. (1华南理工大学制浆造纸工程国家重点实验室 广州 510640)
    (2浙江理工大学材料与纺织学院 杭州 310018)
    (3华南理工大学工业装备与控制工程学院 广州 510640)
  • 投稿日期:2006-12-25 修回日期:2007-05-10 发布日期:2007-10-28
  • 通讯作者: 李友明

Modification, Surface Structure and Rheological Behavior of Nanosized CaCO3

TANG Yan-Jun1,2; LI You-Ming*,1; HU Da-Wei3   

  1. (1 State Key Laboratory of Pulp and Paper Engineering, South China University of Technology, Guangzhou 510640)
    (2 College of Materials and Textile, Zhejiang Sci-Tech University, Hangzhou 310018)
    (3 College of Industrial Equipment and Control Engineering, South China University of Technology, Guangzhou 510640)
  • Received:2006-12-25 Revised:2007-05-10 Published:2007-10-28
  • Contact: LI You-Ming

Surface modification of nanosized CaCO3 with zircoaluminate coupling agent and palmitic acid was carried out. The surface structure of prepared samples was characterized by XRD, FTIR, contact angle and rheological behavior determination. It was confirmed by XRD that the modified nanosized CaCO3 samples kept the same bulk structure as unmodified CaCO3. According to the spectra of FTIR, it was inferred that chemical binding and physical adsorption between surface modifiers and the nanosized CaCO3 had happened during the modification reaction. The surface free energies and polar components of the nanosized CaCO3 modified with zircoaluminate coupling agent and palmitic acid were calculated by measuring contact angles for water and benzene on the palletized surfaces. It was found that the surface energies and polar components of the nanosized CaCO3 modified with palmitic acid were lower than those of the nanosized CaCO3 modified with zircoaluminate coupling agent, and the contact angle for water on the surfaces of unmodified nanosized CaCO3, nanosized CaCO3 modified with zircoaluminate coupling agent and the nanosized CaCO3 modified with palmitic acid were 0°, 40° and 104°, respectively. It was confirmed that the nanosized CaCO3 modified with palmitic acid was of intense lipophilicity, while the nanosized CaCO3 modified with zircoaluminate coupling agent was of both hydrophilicity and lipophilicity. The rheological behavior of the suspensions composed of the unmodified and modified nanosized CaCO3 with paraffin was compared. The results showed that the apparent viscosity, dynamic elastic storage modulus and viscid loss modulus of the modified nanosized CaCO3 suspension were lower than those of the unmodified nanosized CaCO3 suspension, while the loss factor was higher.

Key words: nanosized CaCO3, modification, wettability, surface free energy, rheological behavior