1. Mitchell J. K., Cooke H. G., Schaeffer J.A., "Design considerations in ground improvement for seismic risk mitigation", Geotechnical Earthquake Engineering and Soil Dynamics III, ASCE, (1998) 580-613.## 2. Idriss I. M., Boulanger R. W., "Soil liquefaction during earthquakes", Earthquake Engineering Research Institute (2008). ## 3. Porbaha A., Tanaka H., Kobayashi M., "State of the art in deep mixing technology: part II. Applications", Proceedings of the Institution of Civil Engineers-Ground Improvement, 2 (1998) 125-139. ## 4. Andromalos K. B., Hegazy Y. A., Jasperse B. H., "Stabilization of soft soils by soil mixing", Soft ground technology (2001) 194-205. ## 5. Porbaha A., "State of the art in deep mixing technology: part I. Basic concepts and overview", Proceedings of the Institution of Civil Engineers-Ground Improvement, 2 (1998) 81-92. ## 6. Puppala A. J., Madhyannapu R. S., Nazarian S., Yuan D., Hoyos L. R., "Deep soil mixing technology for mitigation of pavement roughness", FHWA/TX-08/0-5179-1 (2008). ## 7. Atashband S., "Improvement of deep soil mixing behavior in aggressive conditions using suitable additives", Department of Civil engineering, Islamic Azad University, Arak (2019). 8. Sabermahani M., Ghalehnovi V., Elahi H., Atashband S., "Jet-Grouting Columns Performance of Foundation Improvement-A case study", Journal of Engineering Geology, 12 (2019) 467-486. ## 9. Bruce M. E. C., Berg R. R., Collin J. G., Filz G. M., Terashi M., Yang D. S., Geotechnica S., "Federal Highway Administration design manual: Deep mixing for embankment and foundation support", United States. Federal Highway Administation. Offices of Research & Development, (2013). ## 10. Marchand J., Odler I., Skalny J. P., "Sulfate attack on concrete", CRC Press (2003). ## 11. Jessica Elzea Kogel N. C. T., James M. Barker, "Stanley T. Krukowski, Industrial Minerals & rocks commodities, markets and uses", Society for mining, metallurgy and exploration, Inc., 8307 Shaffer Parkway, Littleton, Colorado, USA 80127, (303) 948-4200 / (800) (2006) 763-3132,. ## 12. Garrett D. E., "Sodium sulfate handbook".## 13. Neville A. M., "Properties of concrete", Pitman Books, London (1981). ## 14. Al-Amoudi O. S. B., Maslehuddin M., Saadi M. M., "Effect of magnesium sulfate and sodium sulfate on the durability performance of plain and blended cements", ACI Materials Journal, 92 (1995) 15-24. ## 15. Al-Dulaijan S. U., Maslehuddin M., Al-Zahrani M., Sharif A., Shameem M., Ibrahim M., "Sulfate resistance of plain and blended cements exposed to varying concentrations of sodium sulfate", Cement and Concrete Composites, 25 (2003) 429-437. ## 16. Rollings R. S., Burkes J. P., Rollings M. P., "Sulfate attack on cement-stabilized sand M.P., Journal of geotechnical and geoenvironmental engineering, 125 (1999) 364-372. ## 17. J. Prasad, D. Jain, A. Ahuja, Factors influencing the sulphate resistance of cement concrete and mortar, DOI (2006). ## 18. M. Rollings, R. Rollings, Sulfate attack on bound bases, Annual Meeting of the Transportation Research Board. Washington, DC, 2003. ## 19. Lambe T. W., Michaels A., Moh Z.-C., "Improvement of Soil-Cement with Alkali Metal Compounds and Discussion", Highway Research Board Bulletin, DOI (1960). ## 20. Sherwood P., "Effect of sulfates on cement-and lime-stabilized soils", Highway Research Board Bulletin, DOI (1962). ## 21. Sherwood P., "Soil stabilization with cement and lime", (1993). ## 22. Wang L., "Cementitious stabilization of soils in the presence of sulfate", DOI (2002). ## 23. Wang L., Roy A., Seals R., Metcalf J., "Stabilization of sulfate-containing soil by cementitious mixtures mechanical properties", Transportation Research Record: Journal of the Transportation Research Board, DOI (2003) 12-19. ## 24. Committee A., Standardization I. O. f., "ACI 318-08 Building code requirements for structural concrete and commentary", American Concrete Institute (2008). ## 25. Saleh I. S., "Effect of External and Internal Sulphate on Compressive Strength of Concrete", International Journal of Applied Engineering Research, 12 (2017) 10324-10333. ## 26. Rezaeimalek S., Nasouri A., Huang J., Bin-Shafique S., Gilazghi S. T., "Comparison of short-term and long-term performances for polymer-stabilized sand and clay", Journal of traffic and transportation engineering (English edition), 4 (2017) 145-155. ## 27. Carmona-Quiroga P. M., Blanco-Varela M. T., "Use of barium carbonate to inhibit sulfate attack in cements", Cement and Concrete Research, 69 (2015) 96-104. ## 28. Anitha P., Benny M. A., "A study on mitigating the effect of sulphates in lime stabilised Cochin marine clays", Cochin University of Science & Technology (2014). ## 29. Bazyar M. H., Ebrahimi M., Lenjani M. Z., Makarchian M., Univeersity Y., "The Effect of Rice Husk Ash on Mechanical Properties of Clayey Soils Stabilized with Lime in the Presence of Sulphate", Journal of Engineering Geology, 11 (2017) 23. ## 30. Ferris G., Eades J., Graves R., McClellan G., "Improved characteristics in sulfate soils treated with barium compounds before lime stabilization", Transportation Research Record, DOI (1991). ## 31. Su Y., Wei X., Huang J., Wang Y., He X., Wang X., Ma B., "Use of different barium salts to inhibit the thaumasite form of sulfate attack in cement-based materials", Journal of Wuhan University of Technology-Mater. Sci. Ed., 31 (2016) 361-366. ## 32. ZHAO L., LIU J.-h., JI H.-g., "Performance improvement and mechanism of concrete with the addition of barium hydroxide reagent in typical sulfate environment H.-g., Journal of China Coal Society, DOI (2017) 12. ## 33. Salamatpoor S., Jafarian Y., Hajiannia A., "Physical and mechanical properties of sand stabilized by cement and natural zeolite", The European Physical Journal Plus, 133 (2018) 205. 34. "ASTM_C150-04, Standard specification for Portland cement", American Society for Testing and Materials, (2004) 1-8. ## 35. "ASTM_D2487, Standard classification of soils for engineering purposes, American Society for Testing and Materials", West Conshohocken, PA, USA, (2006)1-12. ## 36. "ASTM_D421, Standard practice for dry preparation of soil samples for particle-size analysis and determination of soil constant", American Society for Testing and Materials, West Conshohocken, PA, USA, (2002) 1-2. ## 37. "ASTM_D422, Standard test method for particle-size analysis of soils, Annual Book of ASTM Standards", American Society for Testing and Materials, West Conshohocken, PA, USA, (2003) 1-8. ## 38. Mehdi Zadehmohamad J. B. B., "Cyclic behaviour of geocell-reinforced backfill behind integral bridge abutment", International Journal of Geotechnical Engineering, DOI (2017) 1-13. 39. Ghalandarzadeh A., Bahadori H., "Study of the Cyclic Behavior of Saturated Sand Considering the Effect of Induced Anisotropy" Journal ofcivil and Sarveuing Engineering Journal of Faculity of Engineerings, Vo. 2, (2010) 151-163## 40. Farahmand K., Lashkari A., Ghalandarzadeh A., "Firoozkuh sand: introduction of a benchmark for geomechanical studies", Iranian Journal of Science and Technology, Transactions of Civil Engineering, 40 (2016) 133-148. ## 41. Wikipedia, "Barium chloride", Wikipedia contributors (2019). ## 42. Wikipedia, "Barium hydroxide", Wikipedia contributors (2019). ## 43. Bertolacini R., Barney J., "Colorimetric determination of sulfate with barium chloranilate", Analytical Chemistry, 29 (1957) 281-283. ## 44. "ASTM_D1632, Standard practice for making and curing soil-cement compression and flexure test specimens in the laboratory", American Society for Testing and Materials (2007). ## 45. Kitazume M., Terashi M., "The deep mixing method, CRC press2013. ## 46. ASTM_D1633, Standard test methods for compressive strength of molded soil-cement cylinders", ASTM International West Conshohocken, PA (2007) 1-4. ## 47. Li Z., Guo W., Li Y., Liu J., Wang Y., "Effect of Sulphate on Compressive Strength of Cement Stabilized Soil", DOI (2015). ##