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Articles

On the dewatering of electroosmotic soil using intermittent current incorporated with calcium chloride

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Pages 468-478 | Received 17 Mar 2019, Accepted 15 Jun 2019, Published online: 10 Jul 2019

References

  • Flora A, Gargano S, Lirer S, et al. Experimental evidences of the strengthening of dredged sediments by electroosmotic consolidation. Geotech Geol Eng. 2017;35:2879–2980. doi: 10.1007/s10706-017-0286-9
  • Xue Z, Tang XW, Yang Q, et al. Influence of salt content on clay electro-dewatering with copper and stainless steel anodes. Dry Technol. 2019. Available from: https://www.tandfonline.com/doi/full/10.1080/07373937.2018.1555709.
  • Hotta N. Pore-water pressure of debris flows. Physics & Chemistry of the Earth. 2000;25(4):381–385. doi: 10.1016/S1464-1909(00)00030-7
  • Wang J, Cai Y, Ma J, et al. Improved vacuum preloading. method for consolidation of dredged clay-slurry fill. J Geotech Geoenviron. 2016;142(11):06016012. doi: 10.1061/(ASCE)GT.1943-5606.0001516
  • Wang J, Ma J, Liu F, et al. Experimental study on the improvement of marine clay slurry by electroosmosis-vacuum preloading. Geotext Geomembr. 2016;44:615–622. doi: 10.1016/j.geotexmem.2016.03.004
  • Sun Z, Gao M, Yu X. Vacuum preloading combined with electro-osmotic dewatering of dredger fill using electric vertical drains. Dry Technol. 2015;33(7):847–853. doi: 10.1080/07373937.2014.992529
  • Wang B, Vu M. Improvement of silty clay by vacuum preloading incorporated with electroosmotic method. Journal of Rock Mechanics and Geotechnical Engineering. 2010;2(4):365–372.
  • Sun Z, Gao M, Yu X. Dewatering effect of vacuum preloading incorporated with electro-osmosis in different ways. Dry Technol. 2017;35(1):38–45. doi: 10.1080/07373937.2016.1157602
  • Zhang H, Zhou G, Zhong J. Effect of nanomaterials and electrode configuration on soil consolidation by electroosmosis: experimental and modeling studies. RSC Adv. 2017;7(20):12103–12112. doi: 10.1039/C6RA26674F
  • Tuan PA, Jurate V, Mika S. Electro-dewatering of sludge under pressure and non-pressure conditions. Environ Technol. 2008;29(10):1075–1084. doi: 10.1080/09593330802180294
  • Kalumba D, Glendinning S, Rogers CDF, et al. Dewatering of tunneling slurry waste using electrokinetic geosynthetics. J Environ Eng ASCE. 2009;135(11):1227–1236. doi: 10.1061/(ASCE)0733-9372(2009)135:11(1227)
  • Estabragh AR, Naseh M, Javadi AA. Improvement of clay soil by electro-osmosis technique. Appl Clay Sci. 2014;95(3):32–36. doi: 10.1016/j.clay.2014.03.019
  • Xue Z, Tang X, Yang Q, et al. Comparison of electro-osmosis experiments on marine sludge with different electrode materials. Dry Technol. 2015;33:986–995. doi: 10.1080/07373937.2015.1011274
  • Liu F, Fu H, Wang J. Influence of soluble salt on electro-osmotic consolidation of soft clay. Soil Mech Found Eng. 2017;54:49–55. doi: 10.1007/s11204-017-9432-x
  • Hiroshi Y, Tomomi Y, Midori K. Evaluation of suitable material properties of sludge for electroosmotic dewatering. Dry Technol. 2013;31:775–784. doi: 10.1080/07373937.2012.760581
  • Chien SC, Ou CY, Lee YC. A novel electroosmotic chemical treatment technique for soil improvement. Appl Clay Sci. 2010;50:481–492. doi: 10.1016/j.clay.2010.09.014
  • Sun B, Xin Y, Hao J. Influence of conductivity on the electro-dewatering of sewage sludge under constant voltage. Sep Sci Technol. 2017;52:2429–2434. doi: 10.1080/01496395.2017.1368561
  • Tao Y, Zhou J, Gong X. Electro-osmotic dehydration of Hangzhou sludge with selected electrode arrangements. Dry Technol. 2016;34(1):66–75. doi: 10.1080/07373937.2015.1006369
  • Micic S, Shang JQ, Lo KY, et al. Electrokinetic strengthening of a marine sediment using intermittent current. Can Geotech J. 2001;38(2):287–302. doi: 10.1139/t00-098
  • Rabie HR, Mujumdar AS, Weber ME. Interrupted electroosmotic dewatering of clay suspensions. Sep Technol. 1994;4:38–46. doi: 10.1016/0956-9618(94)80004-9
  • Yoshida H, Kitajyo K, Nakayama M. Electroosmotic dewatering under A.C. electric field with periodic reversals of electrode polarity. Dry Technol. 1999;17(3):539–554. doi: 10.1080/07373939908917550
  • Zhang H, Zhou G, Wu J. Mechanism for soil reinforcement by electroosmosis in the presence of calcium chloride. Che Eng Commun. 2016;204(4):424–433. doi: 10.1080/00986445.2016.1273833
  • Mohamedelhassan E, Shang JQ. Electrokineticsgenerated pore fluid and ionic transport in an offshore calcareous soil. Can Geotech. J. 2003;40:1185–1199. doi: 10.1139/t03-060
  • Ou CY, Shao CC, Wang YG. On the enhancement of electroosmotic soil improvement by the injection of saline solutions. Appl Clay Sci. 2009;44(1):130–136. doi: 10.1016/j.clay.2008.12.014
  • Ou CY, Chien SC, Chang HH. Soil improvement using electroosmosis with the injection of chemical solutions: field tests. Can Geotech J. 2009;46(6):727–733. doi: 10.1139/T09-012
  • Ghasabkolaei N, Janalizadeh Choobbasti A, Roshan N. Geotechnical properties of the soils modified with nanomaterials: a comprehensive review. Arch Civ Mech Eng. 2017;17(3):639–650. doi: 10.1016/j.acme.2017.01.010

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