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[해외논문] Effect of Pore-Fluid Chemistry on the Undrained Shear Strength of Xanthan Gum Biopolymer-Treated Clays 원문보기

Journal of geotechnical and geoenvironmental engineering, v.147 no.11, 2021년, pp.06021013 -   

Chang, Ilhan (Associate Professor, Dept. of Civil Systems Engineering, Ajou Univ., Suwon-si 16499, Republic of Korea. ORCID: .) ,  Kwon, Yeong-Man (Graduate Student, Dept. of Civil and Environmental Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea. ORCID: .) ,  Cho, Gye-Chun (Professor, Dept. of Civil and Environmental Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea (corresponding author).)

초록이 없습니다.

참고문헌 (85)

  1. Anirudhan, T.S., Ramachandran, M.. Surfactant-modified bentonite as adsorbent for the removal of humic acid from wastewaters. Applied clay science, vol.35, no.3, 276-281.

  2. Au, Pek-Ing, Leong, Yee-Kwong. Surface Chemistry and Rheology of Slurries of Kaolinite and Montmorillonite from Different Sources. Kona : powder and particle, vol.33, 17-32.

  3. BOUAZZA, A., GATES, W.P., RANJITH, P.G.. Hydraulic conductivity of biopolymer-treated silty sand. Géotechnique, vol.59, no.1, 71-72.

  4. Cabalar, A.F., Wiszniewski, M., Skutnik, Z.. Effects of Xanthan Gum Biopolymer on the Permeability, Odometer, Unconfined Compressive and Triaxial Shear Behavior of a Sand. Soil mechanics and foundation engineering, vol.54, no.5, 356-361.

  5. Cao, Shuang C., Jang, Junbong, Jung, Jongwon, Waite, William F., Collett, Timothy S., Kumar, Pushpendra. 2D micromodel study of clogging behavior of fine-grained particles associated with gas hydrate production in NGHP-02 gas hydrate reservoir sediments. Marine and petroleum geology, vol.108, 714-730.

  6. Carrier, Benoit, Wang, Linlin, Vandamme, Matthieu, Pellenq, Roland J.-M., Bornert, Michel, Tanguy, Alexandre, Van Damme, Henri. ESEM Study of the Humidity-Induced Swelling of Clay Film. Langmuir : the ACS journal of surfaces and colloids, vol.29, no.41, 12823-12833.

  7. Chang, Ilhan, Cho, Gye-Chun. Shear strength behavior and parameters of microbial gellan gum-treated soils: from sand to clay. Acta geotechnica, vol.14, no.2, 361-375.

  8. Chang, Ilhan, Im, Jooyoung, Cho, Gye-Chun. Geotechnical engineering behaviors of gellan gum biopolymer treated sand. Canadian geotechnical journal. Revue canadienne de gèotechnique, vol.53, no.10, 1658-1670.

  9. Chang, Ilhan, Im, Jooyoung, Cho, Gye-Chun. Introduction of Microbial Biopolymers in Soil Treatment for Future Environmentally-Friendly and Sustainable Geotechnical Engineering. Sustainability, vol.8, no.3, 251-.

  10. Chang, I., Im, J., Prasidhi, A.K., Cho, G.C.. Effects of Xanthan gum biopolymer on soil strengthening. Construction & building materials, vol.74, 65-72.

  11. Chang, Ilhan, Kwon, Yeong-Man, Im, Jooyoung, Cho, Gye-Chun. Soil consistency and interparticle characteristics of xanthan gum biopolymer-containing soils with pore-fluid variation. Canadian geotechnical journal. Revue canadienne de gèotechnique, vol.56, no.8, 1206-1213.

  12. Chang, Ilhan, Lee, Minhyeong, Tran, An Thi Phuong, Lee, Sojeong, Kwon, Yeong-Man, Im, Jooyoung, Cho, Gye-Chun. Review on biopolymer-based soil treatment (BPST) technology in geotechnical engineering practices. Transportation geotechnics, vol.24, 100385-.

  13. Can. Geotech. J. Chen C. 1 57 8 2019 Exploring the effect of biopolymers in near-surface soils using xanthan gum-modified sand under shear Chen, C., L. Wu, and M. Harbottle. 2019a. “Exploring the effect of biopolymers in near-surface soils using xanthan gum-modified sand under shear.” Can. Geotech. J. 57 (8): 1-10. https://doi.org/10.1139/cgj-2019-0284. 

  14. Chen, Chunhui, Wu, Li, Perdjon, Michal, Huang, Xiaoyang, Peng, Yaxiong. The drying effect on xanthan gum biopolymer treated sandy soil shear strength. Construction & building materials, vol.197, 271-279.

  15. Chen, Xumeng, Peng, Yongjun. Managing clay minerals in froth flotation-A critical review. Mineral processing and extractive metallurgy review, vol.39, no.5, 289-307.

  16. Chenu, C., Guérif, J.. Mechanical Strength of Clay Minerals as Influenced by an Adsorbed Polysaccharide. Soil Science Society of America journal, vol.55, no.4, 1076-1080.

  17. Chow S. F. Alonso-Marroquin and D. Airey. 2012. “Viscous rate effects in shear strength of clay.” In Proc. 11th Australia-New Zealand Conf. on Geomechanics 15-18. Saint Ives NSW Australia: Australian Geomechanics Society. 

  18. Dehghan, Hasan, Tabarsa, Alireza, Latifi, Nima, Bagheri, Younes. Use of xanthan and guar gums in soil strengthening. Clean technologies and environmental policy, vol.21, no.1, 155-165.

  19. Doi, Andrew, Ejtemaei, Majid, Nguyen, Anh V.. Effects of ion specificity on the surface electrical properties of kaolinite and montmorillonite. Minerals engineering, vol.143, 105929-.

  20. Dolinar, Bojana, Trauner, Ludvik. The impact of structure on the undrained shear strength of cohesive soils. Engineering geology, vol.92, no.1, 88-96.

  21. Dontsova, Katerina M., Bigham, Jerry M.. Anionic Polysaccharide Sorption by Clay Minerals. Soil Science Society of America journal, vol.69, no.4, 1026-1035.

  22. Du, J., Pushkarova, R.A., Smart, R.St.C.. A cryo-SEM study of aggregate and floc structure changes during clay settling and raking processes. International journal of mineral processing, vol.93, no.1, 66-72.

  23. Characterization of liquids, nano-and microparticulates, and porous bodies using ultrasound Dukhin A. S. 2010 Dukhin, A. S., and P. J. Goetz. 2010. Characterization of liquids, nano-and microparticulates, and porous bodies using ultrasound. Oxford, UK: Elsevier. 

  24. Espinoza, D. Nicolas, Santamarina, J. Carlos. Clay interaction with liquid and supercritical CO2: The relevance of electrical and capillary forces. International journal of greenhouse gas control, vol.10, 351-362.

  25. Garcı́a-Ochoa, F, Santos, V.E, Casas, J.A, Gómez, E. Xanthan gum: production, recovery, and properties. Biotechnology advances, vol.18, no.7, 549-579.

  26. 10.1007/978-1-4020-3609-5_121 

  27. Guo, Junyuan, Wen, Xiaoying. Performances and mechanisms of sludge dewatering by a biopolymer from piggery wastewater and application of the dewatered sludge in remediation of Cr(VI)-contaminated soil. Journal of environmental management, vol.259, 109678-.

  28. Gutierrez, M., Nygard, R., Hoeg, K., Berre, T.. Normalized undrained shear strength of clay shales. Engineering geology, vol.99, no.1, 31-39.

  29. Ham, Soo-Min, Chang, Ilhan, Noh, Dong-Hwa, Kwon, Tae-Hyuk, Muhunthan, Balasingam. Improvement of Surface Erosion Resistance of Sand by Microbial Biopolymer Formation. Journal of geotechnical and geoenvironmental engineering, vol.144, no.7, 06018004-.

  30. Hassler, Randal A., Doherty, Daniel H.. Genetic Engineering of Polysaccharide Structure: Production of Variants of Xanthan Gum in Xanthomonas campestris. Biotechnology progress, vol.6, no.3, 182-187.

  31. Hemar, Y., Tamehana, M., Munro, P.A., Singh, H.. Influence of xanthan gum on the formation and stability of sodium caseinate oil-in-water emulsions. Food hydrocolloids, vol.15, no.4, 513-519.

  32. HONG, Z.-S., BIAN, X., CUI, Y.-J., GAO, Y.-F., ZENG, L.-L.. Effect of initial water content on undrained shear behaviour of reconstituted clays. Géotechnique, vol.63, no.6, 441-450.

  33. Hyde, A. F. L., Ward, S. J.. The effect of cyclic loading on the undrained shear strength of a silty clay. Marine geotechnology, vol.6, no.3, 299-314.

  34. Industrial minerals laboratory manual: Bentonite Inglethorpe S. D. J. 1993 Inglethorpe, S. D. J., D. J. Morgan, D. E. Highley, and A. J. Bloodworth. 1993. Industrial minerals laboratory manual: Bentonite. Nottingham, UK: British Geological Survey. 

  35. Jang, Junbong, Carlos Santamarina, J.. Fines Classification Based on Sensitivity to Pore-Fluid Chemistry. Journal of geotechnical and geoenvironmental engineering, vol.142, no.4, 06015018-.

  36. Kang, Jihoon, McLaughlin, Richard A.. Polyacrylamide and Chitosan Biopolymer for Flocculation and Turbidity Reduction in Soil Suspensions. Journal of polymers and the environment, vol.28, no.4, 1335-1343.

  37. Katzbauer, Barbara. Properties and applications of xanthan gum. Polymer degradation and stability, vol.59, no.1, 81-84.

  38. Kaya, Abidin, Fang, Hsai-Yang. The effects of organic fluids on physicochemical parameters of fine-grained soils. Canadian geotechnical journal: Revue canadienne de géotechnique, vol.37, no.5, 943-950.

  39. Kayabali, Kamil, Tufenkci, Osman Oguz. Shear strength of remolded soils at consistency limits. Canadian geotechnical journal: Revue canadienne de géotechnique, vol.47, no.3, 259-266.

  40. Khachatoorian, Robert, Petrisor, Ioana G, Kwan, Chang-Chin, Yen, Teh Fu. Biopolymer plugging effect: laboratory-pressurized pumping flow studies. Journal of petroleum science & engineering, vol.38, no.1, 13-21.

  41. Khatami, Hamid Reza, O’Kelly, Brendan C.. Improving Mechanical Properties of Sand Using Biopolymers. Journal of geotechnical and geoenvironmental engineering, vol.139, no.8, 1402-1406.

  42. 10.1680/geot.51.8.701.40475 

  43. Manual on estimating soil properties for foundation design Kulhawy F. H. 1990 Kulhawy, F. H., and P. W. Mayne. 1990. Manual on estimating soil properties for foundation design. New York: Electric Power Research Institute. 

  44. Geomech. Eng. Kwon Y.-M. 453 17 5 2019 Geotechnical engineering behaviors of biopolymer-treated soft marine soil Kwon, Y.-M., I. Chang, M. Lee, and G.-C. Cho. 2019. “Geotechnical engineering behaviors of biopolymer-treated soft marine soil.” Geomech. Eng. 17 (5): 453-464. https://doi.org/10.12989/gae.2019.17.5.453. 

  45. Kwon, Yeong-Man, Ham, Soo-Min, Kwon, Tae-Hyuk, Cho, Gye-Chun, Chang, Ilhan. Surface-erosion behaviour of biopolymer-treated soils assessed by EFA. Géotechnique Letters, vol.10, no.2, 106-112.

  46. Kwon, Yeong-Man, Im, Jooyoung, Chang, Ilhan, Cho, Gye-Chun. ε-polylysine biopolymer for coagulation of clay suspensions. Geomechanics & engineering, vol.12, no.5, 753-770.

  47. Laird, David A.. BONDING BETWEEN POLYACRYLAMIDE AND CLAY MINERAL SURFACES :. Soil science, vol.162, no.11, 826-832.

  48. Latifi, Nima, Horpibulsuk, Suksun, Meehan, Christopher L., Abd Majid, Muhd Zaimi, Tahir, Mahmood Md, Mohamad, Edy Tonnizam. Improvement of Problematic Soils with Biopolymer-An Environmentally Friendly Soil Stabilizer. Journal of materials in civil engineering, vol.29, no.2, 04016204-.

  49. Lee, Sojeong, Chang, Ilhan, Chung, Moon-Kyung, Kim, Yunyoung, Kee, Jong. Geotechnical shear behavior of Xanthan Gum biopolymer treated sand from direct shear testing. Geomechanics & engineering, vol.12, no.5, 831-847.

  50. Lee, Sojeong, Chung, Moonkyung, Park, Hee Mun, Song, Ki-Il, Chang, Ilhan. Xanthan Gum Biopolymer as Soil-Stabilization Binder for Road Construction Using Local Soil in Sri Lanka. Journal of materials in civil engineering, vol.31, no.11, 06019012-.

  51. Liu, Xiandong, Lu, Xiancai, Wang, Rucheng, Meijer, Evert Jan, Zhou, Huiqun, He, Hongping. Atomic scale structures of interfaces between kaolinite edges and water. Geochimica et cosmochimica acta, vol.92, 233-242.

  52. Malik, M., Letey, J.. Adsorption of Polyacrylamide and Polysaccharide Polymers on Soil Materials. Soil Science Society of America journal, vol.55, no.2, 380-.

  53. Mayne, Paul W.. Stress Anisotropy Effects on Clay Strength. Journal of geotechnical engineering, vol.111, no.3, 356-366.

  54. Milas, M., Rinaudo, M., Tinland, B.. The viscosity dependence on concentration, molecular weight and shear rate of xanthan solutions. Polymer bulletin, vol.14, no.2, 157-164.

  55. Fundamentals of soil behavior Mitchell J. K. 2005 Mitchell, J. K., and K. Soga. 2005. Fundamentals of soil behavior. Hoboken, NJ: Wiley. 

  56. Nugent, Rick A., Zhang, Guoping, Gambrell, Robert P.. Effect of Exopolymers on the Liquid Limit of Clays and Its Engineering Implications. Transportation research record : journal of the transportation research board, vol.2101, no.1, 34-43.

  57. O'Kelly, B. C., Vardanega, P. J., Haigh, S. K.. Use of fall cones to determine Atterberg limits: a review. Géotechnique, vol.68, no.10, 843-856.

  58. Penner, D, Lagaly, G. Influence of anions on the rheological properties of clay mineral dispersions. Applied clay science, vol.19, no.1, 131-142.

  59. Petri, Denise F. S.. Xanthan gum: A versatile biopolymer for biomedical and technological applications. Journal of applied polymer science, vol.132, no.23,

  60. Rao, Sudhakar M., Sridharan, A., Shenoy, M.R.. Influence of starch polysaccharide on the remoulded properties of two Indian clay samples. Canadian geotechnical journal: Revue canadienne de géotechnique, vol.30, no.3, 550-553.

  61. Sachan, Ajanta, Penumadu, Dayakar. Effect of Microfabric on Shear Behavior of Kaolin Clay. Journal of geotechnical and geoenvironmental engineering, vol.133, no.3, 306-318.

  62. Soils and waves Santamarina J. C. 2001 Santamarina, J. C., K. A. Klein, and M. A. Fam. 2001. Soils and waves. Hoboken, NJ: Wiley. 

  63. Santamarina, J C, Klein, K A, Wang, Y H, Prencke, E. Specific surface: determination and relevance. Canadian geotechnical journal: Revue canadienne de géotechnique, vol.39, no.1, 233-241.

  64. Schlue, Benjamin Friedrich, Moerz, Tobias, Kreiter, Stefan. Influence of Shear Rate on Undrained Vane Shear Strength of Organic Harbor Mud. Journal of geotechnical and geoenvironmental engineering, vol.136, no.10, 1437-1447.

  65. Secor, R.B, Radke, C.J. Spillover of the diffuse double layer on montmorillonite particles. Journal of colloid and interface science, vol.103, no.1, 237-244.

  66. Sharma, Binu, Bora, Padma K.. Plastic Limit, Liquid Limit and Undrained Shear Strength of Soil-Reappraisal. Journal of geotechnical and geoenvironmental engineering, vol.129, no.8, 774-777.

  67. Singh, Suresh Prasad, Das, Ritesh. Geo-engineering properties of expansive soil treated with xanthan gum biopolymer. Geomechanics and geoengineering : an international journal, vol.15, no.2, 107-122.

  68. Soldo, Antonio, Miletić, Marta, Auad, Maria L.. Biopolymers as a sustainable solution for the enhancement of soil mechanical properties. Scientific reports, vol.10, 267-.

  69. Spagnoli, Giovanni, Fernández-Steeger, Tomás, Feinendegen, Martin, Stanjek, Helge, Azzam, Rafig. The Influence of the Dielectric Constant and Electrolyte Concentration of the Pore Fluids on the Undrained Shear Strength of Smectite. Soils and foundations, vol.50, no.5, 757-763.

  70. Sridharan, A, Prakash, K. Mechanisms controlling the undrained shear strength behaviour of clays. Canadian geotechnical journal. Revue canadienne de gèotechnique, vol.36, no.6, 1030-1038.

  71. Sridharan, A., Venkatappa Rao, G.. Shear strength behaviour of saturated clays and the role of the effective stress concept. Géotechnique, vol.29, no.2, 177-193.

  72. Stone, K. J. L., Phan, K. D.. Cone penetration tests near the plastic limit. Géotechnique, vol.45, no.1, 155-158.

  73. Sujatha, Evangelin Ramani, Atchaya, S., Sivasaran, A., Keerdthe, R. S.. Enhancing the geotechnical properties of soil using xanthan gum-an eco-friendly alternative to traditional stabilizers. Bulletin of engineering geology and the environment, vol.80, no.2, 1157-1167.

  74. Tombácz, Etelka, Szekeres, Márta. Surface charge heterogeneity of kaolinite in aqueous suspension in comparison with montmorillonite. Applied clay science, vol.34, no.1, 105-124.

  75. Trauner, Ludvik, Dolinar, Bojana, Mišič, Miha. Relationship between the Undrained Shear Strength, Water Content, and Mineralogical Properties of Fine-Grained Soils. International journal of geomechanics, vol.5, no.4, 350-355.

  76. Turkoz, Emre, Perazzo, Antonio, Arnold, Craig B., Stone, Howard A.. Salt type and concentration affect the viscoelasticity of polyelectrolyte solutions. Applied physics letters, vol.112, no.20, 203701-.

  77. Vardanega, P.J., Haigh, S.K.. The undrained strength - liquidity index relationship. Canadian geotechnical journal. Revue canadienne de gèotechnique, vol.51, no.9, 1073-1086.

  78. Villanueva, Maria Pilar, Cabedo, Luis, Lagarón, José Maria, Giménez, Enrique. Comparative study of nanocomposites of polyolefin compatibilizers containing kaolinite and montmorillonite organoclays. Journal of applied polymer science, vol.115, no.3, 1325-1335.

  79. Wan, Jiamin, Tokunaga, Tetsu K.. Partitioning of Clay Colloids at Air–Water Interfaces. Journal of colloid and interface science, vol.247, no.1, 54-61.

  80. Wang, Y -H, Siu, W -K. Structure characteristics and mechanical properties of kaolinite soils. I. Surface charges and structural characterizations. Canadian geotechnical journal: Revue canadienne de géotechnique, vol.43, no.6, 587-600.

  81. 10.1016/B978-1-4831-9842-2.50014-6 

  82. Soil behaviour and critical state soil mechanics Wood D. M. 1990 Wood, D. M. 1990. Soil behaviour and critical state soil mechanics. Cambridge, MA: Cambridge University Press. 

  83. Wroth, C. P., Wood, D. M.. The correlation of index properties with some basic engineering properties of soils. Canadian geotechnical journal: Revue canadienne de géotechnique, vol.15, no.2, 137-145.

  84. Zbik, M.S., Raftery, N.A., Smart, R.St.C., Frost, R.L.. Kaolinite platelet orientation for XRD and AFM applications. Applied clay science, vol.50, no.3, 299-304.

  85. Zhou, C., So, P.S., Chen, X.W.. A water retention model considering biopolymer-soil interactions. Journal of hydrology, vol.586, 124874-.

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