References

  1. Q. Hu, M. Kim, Correlation analysis of water content, dry density and shear strength of red clay, Rock Soil Mech., 20 (2018) 61–75.
  2. T. Qiang, G. Fan, G. Yufeng, I. Toru, K. Takeshi, Desorption characteristics of Cr(III), Mn(II), and Ni(II) in contaminated soil using citric acid and citric acid-containing wastewater, Soils Found., 58 (2018) 50–64.
  3. Q. Tang, X. Tang, Z. Li, Y. Chen, N. Kou, Z. Sun, Adsorption and desorption behaviour of Pb(II) on a natural kaolin: equilibrium, kinetic and thermodynamic studies, J. Chem. Technol. Biotechnol., 84 (2019) 1289–1306.
  4. Y.Y. Wang, W.H. Zhang, Experimental study on the effect of initial water content on swelling and shrinkage deformation characteristics of red clay, Sci. Technol. Eng., 36 (2017) 123–125.
  5. T. Sugiyama, A.H.A. Dabwan, M. Furukawa, I. Tateishi, H. Katsumata, S. Kaneco, Development of carbon nanotube as highly active photocatatlytic adsorbent for treatment of Acid Red 88 dye, Water Conserv. Manage., 4 (2021) 26–29.
  6. B. Singh, P. Sihag, A. Parsaie, A. Angelaki, Comparative analysis of artificial intelligence techniques for the prediction of infiltration process, Geol. Ecol. Landscapes, 5 (2021) 109–118.
  7. F. Ahmad, M.A. Quasim, A.H.M. Ahmad, S.M. Rehman, S. Asjad, Depositional mechanism of Fort Member Sandstone (Early-Late Bathonian), Jaisalmer Formation, Western Rajasthan: insights from granulometric analysis, Geol. Ecol. Landscapes, 5 (2021) 119–135.
  8. M.R. Islam, M. Hasan, N. Akter, S. Akhtar, Cytokinin and gibberellic acid alleviate the effect of waterlogging in Mungbean (Vigna radiata L. Wilczek), Journal Clean WAS, 5 (2021) 21–26.
  9. B. Gauli, M. Karki, D. Poudel, S. Poudel, A. Chhetri, Impact of climate change on wheat production in Nawalparasi (B.S.W) district, Nepal, Environ. Ecosyst. Sci., 5 (2021) 73–77.
  10. M. Alia, Q.T. Ain, Advances in air filters based on electrospun nanofibers, Environ. Contam. Rev., 3 (2020) 32–36.
  11. A.K. Gupta, D. Yadav, Biological control of water hyacinth, Environ. Contam. Rev., 3 (2020) 37–39.
  12. H.B. Lv, G.Q. Yin, Analysis on the composition of red clay minerals in Guangxi, J. Eng. Geol., 22 (2019) 128–129.
  13. Y.L. Liao, G. Qin, Changes of engineering properties of red clay in southern China, Guizhou Sci., 3 (2019) 18–19.
  14. F.C. Wei, Jun, Z. Hang, Material composition and engineering geological properties of guilin red clay, Jiangxi Normal Univ. Acta Sci. Naturalium Sin., 7 (2017) 122–125.
  15. Jin, H. Shanying, Analysis of normalized characteristics of red clay with different strain types, Underground Space Eng. J., 13 (2017) 133–135.
  16. J.Z. Wang, Effect of free iron oxide on engineering properties of red clay, Chin. J. Geotech. Eng., 16 (2019) 21–24.
  17. R.T. Yan, H.H. Yu, Strength mechanism of red clay, Guilin Theory J. Univ. Technol., 34 (2020) 691–696.
  18. S.Q. Liu, J. Fang, Water sensitivity of high liquid limit soils and red clays, J. Shenzhen Univ. Sci. Technol., 30 (2018) 178–183.
  19. H. Wang, R. Zhao, Triaxial resistance of remolded red clay in Guiyang with different water content. Experimental study on shear strength, Hydrogeol. Eng. Geol., 5 (2019) 90–95.
  20. D.A. Sun, Y.L. Fang, The shear strength and water content of Guilin compacted red clay, J. Shanghai Univ. (Natural Science Edition), 20 (2019) 586–595.
  21. K.S. Chen, Study on shear strength characteristics of red clay under dry-wetting cycle, Highway, 18 (2016) 268–270.
  22. L. Wang, F. Jiang, Effect of drying and wetting cycles on mechanical properties of red clay at different temperatures, Guilin Univ. Technol., 15 (2019) 190–195.
  23. G.J. Cai, H.T. Hu, Influence of wetting and drying cycles on shear strength of shallow-soil under overlying loading in Zhenjiang, Ind. Constr., 49 (2019) 114–120.
  24. G.Y. Zeng, Experimental study on mechanical properties of Nigeria red clay under dry-wetting cycle, Railway Build. Technol., 5 (2020) 39–42.
  25. Y.H. Li, Effect of dry-wetting cycles on mechanical properties of Guilin red clay under different pH values, J. Nat. Disasters, 23 (2019) 107–112.