Cement, Energy and Environment

53 10. M.Uysal and H.Tanyildizi, Construct.Build.Mater , 2012,Vol 27,pp 404- 414. 11. Yuvraj S. Experimental research on improvement of concrete strength and enhancing the resisting property of corrosion and permeability by the use of nano silica flyashed concrete. International Journal of Emerging Technology and Advanced Engineering. June 2012; 2(6). 12. C.Abeysinghe,D.P.Thambiratnam and N.J.Perera, Compos.Struct .,2013,Vol 95,pp 179-190. 13. Abyaneh MRJ, et al. Effects of nano-silica on permeability of concrete and steel bars reinforcement corrosion. Australian Journal of Basic and Applied Sciences . 2013; 464–67p. 14. D.Y.Yoo,J.H.Lee and Y.S.Yoon, Compos.Struct., 2013,Vol 106,pp 742-753. 15. Ghosh A, et al. Effect of nano-silica on strength and microstructure of cement silica fume paste, mortar and concrete. Indian Concrete Journal . June, 2013. 16. Madhavi T.Ch, et al. Effect of multiwalled carbon nanotubes on mechanical properties of concrete. International Journal of Scientific Research. 2013; 2(6): 166–68p. 17. S.Parveen,S.Rana and R.Fanguerio, J.Nanomater., 2013,710175,DOI:10.1155/2013/710175. 18. E.M.Golafshani,A.Rahai and M.H.Sebt, Construct Build. Mater., 2014,Vol 61,pp 230-240. 19. H.K.Kim,I.W.Nam and H.K.Lee, Compos.Struct .,2014,Vol 107,pp 60- 69. 20. S.Tokgoz,C.Dundar and A.K.Tanrikulu ,J.Constr.Steel Res .,2014,Vol 74,pp 98-107. 21. Ghosal M, Chakraborty AK. A comparative study of nano embedments on different types of cements, International Journal of Advances in Engineering & Technology (IJAET). Apr. 2015; 8(2): 92–103p. 22. Ghosal M, Chakraborty AK. Behavioral Assessment of Nano Insertions in Cement Mortar, Recent Trends in Civil Engineering & Technology, 2015,Vol 5,Issue 3, pp 15-21. ******

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