CHEN Xuejun, CHEN Yicheng, SONG Yu, LI Jiaming, YU Sizhe, CHEN Lijie. 2019: ANALYSIS ON VARIATION OF PHYSICAL-MECHANICAL PROPERTIES OF RED CLAY CONTAMINATED BY CU2+. JOURNAL OF ENGINEERING GEOLOGY, 27(5): 1010-1018. DOI: 10.13544/j.cnki.jeg.2019030
    Citation: CHEN Xuejun, CHEN Yicheng, SONG Yu, LI Jiaming, YU Sizhe, CHEN Lijie. 2019: ANALYSIS ON VARIATION OF PHYSICAL-MECHANICAL PROPERTIES OF RED CLAY CONTAMINATED BY CU2+. JOURNAL OF ENGINEERING GEOLOGY, 27(5): 1010-1018. DOI: 10.13544/j.cnki.jeg.2019030

    ANALYSIS ON VARIATION OF PHYSICAL-MECHANICAL PROPERTIES OF RED CLAY CONTAMINATED BY CU2+

    • The effect of Cu2+ on the variation of physical-mechanical properties of Guilin red clay is studied. XRD、XRF and mercury intrusion tests are carried out to investigate the variation law of main mineral components and the change trend of micro-pore structure in Cu2+ contaminated red clay. The results show that the main mineral components in red clay are kaolinite, quartz and goethite. Cu2+ pollutant has a significant impact on the content of these three main mineral components. With the increase of Cu2+ concentration, the content of kaolinite and goethite gradually decrease, while the content of quartz gradually increases. The change rate of content is kaolinite>goethite>quartz. When the Cu2+ concentration is 2%, the content loss rate of kaolinite and goethite are as high as 10.69% and 5.38%, respectively. The pore distribution curve of red clay is bimodal. The double peaks are distributed between 0.01~0.1 μm and 1~10 μm respectively. The micro-pores between 0.01~0.1 μm account for the absolute advantage. With the increase of Cu2+ concentration, the "double peak" move to the right gradually, and the pores become larger, the "peak width" widens gradually, and the pores become more numerous. A series of tests are conducted to observe the variation law of the deformation strength characteristics of red clay contaminated by Cu2+. They include unconfined compressive strength test, direct shear test and compression consolidation test. The results show that Cu2+ contamination has a significant effect on the deformation strength properties of red clay. With the increase of Cu2+ concentration, the unconfined compressive strength, shear strength and its index(C, φ) of the red clay decrease gradually, the initial void ratio e0 and the compression coefficient α increase gradually. When the Cu2+ concentration increases from 0 to 2%, the unconfined compressive stress-strain curve of soil changes from typical strain softening type to weak strain hardening one, the peak value of unconfined compressive strength decreases by 76.91% and the average loss rate of shear strength reaches 69.36%.
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