• 全国中文核心期刊
  • 中国科技核心期刊
  • 美国工程索引(EI)收录期刊
  • Scopus数据库收录期刊
ZHANG Xian-wei, KONG Ling-wei. Interaction between iron oxide colloids and clay minerals and its effect on properties of caly[J]. Chinese Journal of Geotechnical Engineering, 2014, 36(1): 65-74. DOI: 10.11779/CJGE201401004
Citation: ZHANG Xian-wei, KONG Ling-wei. Interaction between iron oxide colloids and clay minerals and its effect on properties of caly[J]. Chinese Journal of Geotechnical Engineering, 2014, 36(1): 65-74. DOI: 10.11779/CJGE201401004

Interaction between iron oxide colloids and clay minerals and its effect on properties of caly

More Information
  • Received Date: April 21, 2013
  • Published Date: January 20, 2014
  • For Zhanjiang clay, the free iron oxide colloids, amorphous iron oxide colloids and using the selective chemical solution method by immersion, improved permeameters and flexible wall permeameters, chelated iron colloids in it are removed. In this analysis, the physical and mechanical properties, mineral composition and structural changes of Zhanjiang clay are compared before and after removing the iron oxide colloids. The interface activity and cementation characteristics of iron oxide colloids and their interaction with clay minerals are discussed. The results show that Zhanjiang clay has the properties of high sensitivity and strong structure owing to the electrical attraction of clay minerals——iron oxide colloids and their cemented connection in pores. The iron oxide colloids have great effects on the properties of Zhanjiang clay, including water stability, consistency, adhesion, permeability, compressibility, sensitivity and structural strength. The interaction mechanism between the iron oxide colloids and the clay minerals leads to change of the basic properties of clay, which is not achieved by changing or destructing the mineral lattice structure, but by controlling the microstructural morphology by changing the coupling states of soil particles and inter-particle forces. As for the iron oxide colloids, both their effects on the soil properties and the mode of occurrence are closely related. Besides the free iron oxide, the amorphous iron oxide is the other important component of microstructural cemented connection of Zhanjiang clay.
  • [1]
    熊 毅. 土壤胶体: III土壤胶体的性质[M]. 北京: 科学出版社, 1990. (XIONG Yi. Soil colloids: III The nature of the soil colloids[M]. Beijing: Science Press, 1990. (in Chinese))
    [2]
    ARIAS M, BARRAL M T, DIAZ-FIEROS F. Effects of iron and aluminium oxides on the colloidal and surface properties of kaolin[J]. Clay and Clay Minerals, 1995, 43(4): 406-416.
    [3]
    周训华, 廖义玲. 红黏土颗粒之间结构连结的胶体化学特征[J]. 贵州工业大学学报(自然科学版), 2004, 33(1): 26-29. (ZHOU Xun-hua, LIAO Yi-ling. Collochemistry character of the structure connection among red clay mineral grain[J]. Journal of Guizhou University of Technology (Natural Science Edition), 2004, 33(1): 26-29. (in Chinese))
    [4]
    孔令伟, 罗鸿禧, 袁建新. 红黏土有效胶结特征的初步研究[J]. 岩土工程学报, 1995, 17(5): 2-47. (KONG Ling-wei, LUO Hong-xi, YUAN Jian-xin. Preliminary study on the effective cementation characteristics of the red clay[J]. Chinese Journal of Geotechnical Engineering, 1995, 17(5): 2-47. (in Chinese))
    [5]
    程昌炳, 陈 琼, 刘少军, 等. 土中胶结强度的微观研究[J].华中农业大学学报, 1998, 17(2): 143-149. (CHENG Chang-bing, CHEN Qiong, LIU Shao-jun, et al. Microscopic study on cementation strength in soils[J]. Journal of Huazhong Agricultural University, 1998, 17(2): 143-149. (in Chinese))
    [6]
    王 清, 陈剑平, 蒋惠忠. 先期固结压力理论的新认识[J]. 长春地质学院学报, 1996, 26(1): 59-63. (WANG Qing, CHEN Jian-ping, JIANG Hui-zhong. The new knowledge on theory of preconsolidation pressure[J]. Journal of Changchun University of Earth Sciences, 1996, 26(1): 59-63. (in Chinese))
    [7]
    OHTSUBO M, EGASHIRA K, KASHIMA K. Depositional and post-depositional geochemistry, and its correlation with the geotechnical properties of marine clays in Ariake Bay, Japan[J]. Géotechnique, 1995, 45(3): 509-523.
    [8]
    程昌炳, 陈 琼, 周良忠. 由27Al核磁共振谱图看高岭石与针铁矿的胶结本质[J].波谱学杂志, 1995, 12(6): 593-598. (CHENG Chang-bing, CHEN Qiong, ZHOU Liang-zhong. The nature of cementing of kaolinite with goethite from 27Al NMR spectra[J]. Chinese Journal of Magnetic Resonance, 1995, 12(6): 593-598. (in Chinese))
    [9]
    熊 毅. 土壤胶体: Ⅱ土壤胶体研究法[M]. 北京: 科学出版社, 1983. (XIONG Yi. Soil colloids: ⅡThe investigation method on soil colloids[M]. Beijing: Science Press, 1983. (in Chinese))
    [10]
    谭文峰, 周素珍, 刘 凡, 等. 土壤中铁铝氧化物与黏土矿物交互作用的研究进展[J]. 土壤, 2007, 39(5): 726-730. (TAN Wen-feng, ZHOU Su-zhen, LIU Fan, et al. Advancement in the study on interactions between Iron-aluminum (hydro-) oxides and clay minerals in soil[J]. Soils, 2007, 39(5): 726-730. (in Chinese))
    [11]
    ASTM International. ASTM D5084 Standard test methods for measurement of hydraulic conductivity of saturated porous materials using a flexible wall permeameter[S]. ASTM: West Conshohocken, 2004.
    [12]
    ASTM International. ASTM D5887 standard test method for measurement of index flux through saturated geosynthetic clay liner specimens using a flexible wall permeameter[S]. ASTM: West Conshohocken, 2009.
    [13]
    SL237—1999土工试验规程[S]. 北京: 中国水利水电出版社, 1999. (SL237—1999 Standard for soil test method[S]. Beijing: China Water Power Press, 1999. (in Chinese))
    [14]
    MITCHELL J K, SOGA K. Fundamentals of soil behavior[M]. New Jersey: John Wiley and Sons, 2005.
  • Cited by

    Periodical cited type(1)

    1. 程树范,叶阳,曾亚武,高睿. 基于损伤-虚拟张拉裂纹模型的地下爆炸围岩破坏规律研究. 爆炸与冲击. 2022(05): 172-184 .

    Other cited types(0)

Catalog

    Article views (400) PDF downloads (732) Cited by(1)
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return