欢迎访问现代地质!

现代地质 ›› 2006, Vol. 20 ›› Issue (2): 340-346.

• 矿物材料学 • 上一篇    下一篇

矿物聚合材料固化过程中的聚合反应机理研究

聂轶苗,马鸿文,杨静,苏玉柱,李如臣,高飞   

  1. 中国地质大学 矿物材料国家专业实验室,北京100083
  • 收稿日期:2005-12-01 修回日期:2006-03-22 出版日期:2006-02-20 发布日期:2006-02-20
  • 作者简介:聂轶苗,女,博士研究生,1979年出生,岩石矿物材料学专业,主要从事固体废物资源化利用及环境矿物学的研究。
  • 基金资助:

    教育部留学回国人员科研启动基金项目(2-2-03-07);中国地质大学矿物材料国家专业实验室开放基金项目(04101)

Mechanism of Polymerization During the Solidification of Flyash-based Geopolymers

NIE Yi-miao,MA Hong-wen,YANG Jing,SU Yu-zhu,LI Ru-chen,GAO Fei   

  1. National Laboratory of Mineral Materials, China University of Geosciences, Beijing100083, China
  • Received:2005-12-01 Revised:2006-03-22 Online:2006-02-20 Published:2006-02-20

摘要:

以粉煤灰、高岭石等为原料,制备出具有良好力学性能和耐酸性的矿物聚合材料制品,可代替部分硅酸盐水泥制品。根据矿物聚合材料制品在3 d、7 d、14 d、28 d的X射线衍射(XRD)、红外光谱(IR)、扫描电镜(SEM)、核磁共振(NMR)等测试分析结果,研究了该材料固化过程中的聚合反应机理。研究结果表明,矿物聚合材料在固化过程中的反应如下:(1)粉煤灰中的玻璃相在强碱的作用下首先发生溶解,其中部分Si—O、Al—O键发生断裂;(2)断裂之后的Si、Al组分在碱金属离子Na+、OH- 等作用下形成Si、Al低聚体(—Si—O—Na、—Si—O—Ca—OH、Al(OH)-4、Al(OH)2-5、Al(OH)3-6),而后随着溶液组成和各种离子浓度的变化,这些低聚体形成凝胶状的类沸石前驱体;(3)前驱体脱水形成非晶相物质。核磁共振分析结果表明,28 d制品中,Si的存在方式以Q4为主。研究结果为进一步揭示矿物聚合材料的形成机理、改善制品的性能奠定了良好的基础。

关键词: 粉煤灰, 矿物聚合材料, 铝硅酸盐, 聚合反应机理

Abstract:

Geopolymers, with good mechanical properties and resistance to acid attacks, were prepared using flyash and kaolin. Geopolymer could be equivalents of the Portland cement products. The mechanism of polymerization was deduced from the analytical data of XRD, IR, SEM, and NMR of the geopolymeric products cured each for 3 days, 7 days, 14 days, and 28 days, which can be described as follows:(1) the glassy parts of the flyash were dissolved in the high molar alkaline solution and some Si—O, Al—O bonds were broken; (2) at the presence of OH- and Na+, these broken bonds formed aluminosilicate gel and then transformed into zeolitic precursors with changing compositions and concentrations of the solution; (3) by dehydration, these zeolitic precursors were changed into the amorphous phase materials. NMR analysis indicated that in the geopolymeric products cured for 28 days, Q4 was the principal form of Si element. The experimental results provided a good basis for understanding the reactive mechanism of polymerization during processing of geopolymer products.

Key words: flyash, geopolymer, aluminosilicate, polymerization mechanism

中图分类号: