[1] Al-Joulani N. M. A. 2015 Effect of wastewater type on concrete properties. International Journal of Applied Engineering Research, 10(19), 39865-39870.
[2] Fattah K. P., Al-Tamimi A.K., Hamweyah W. & Iqbal F. 2017 Evaluation of sustainable concrete produced with desalinated reject brine. International Journal of Sustainable Built Environment, 6, 183-190.
[3] Ghrair A. M., Al-Mashaqbeh O. A., Sarireh M. K., Al-Kouz N., Farfoura M. & Megdal S. B. 2016 Influence of grey water on physical and mechanical properties of mortar and concrete mixes. Ain Shams Engineering Journal, Published online: doi.org/10.1016/j.asej.2016.11.005
[4] Wegian F.M. 2010 Effect of seawater for mixing and curing on structural concrete. The IES Journal Part A: Civil & Structural Engineering, 3(4), 235-243.
[5] Shi Z., Shui Z., Li Q. & Geng, H. 2015 Combined effect of metakaolin and sea water on performance and microstructures of concrete. Construction and Building Materials, 74, 57-64.
[6] Mbadike E. M. & Elinwa A. U. 2011 Effect of salt water in the production of concrete. Nigerian Journal of Technology, 30(2), 105-110.
[7] El-Nawawy O. A. & Ahmad S. 1991 Use of treated effluent in concrete mixing in an arid climate. Cement and Concrete Composites, 13, 137-141.
[8] Valipour M., Yekkalar M. Shekarchi M. & Panahi S. 2014 Environmental assessment of green concrete containing natural zeolite on the global warming index in marine environments. Journal of Cleaner Production, 65, 418-423.
[9] Madandoust R., Sobhani J. & Ashoori P. 2013 Concrete made with zeolite and metakaolin: a comparison on the strength and durability properties. Asian Journal of Civil Engineering (BHRC), 14(4), 533-543.
[10] Najimi M., Sobhani J., Ahmadi B. & Shekarchi M. 2012 An experimental study on durability properties of concrete containing zeolite as a highly reactive natural pozzolan. Construction and Building Materials, 35, 1023-1033.
[11] Khoshroo M., Shirzadi Javid A. A. & Katebi A. 2018 Effects of micro-nano bubble water and binary mineral admixtures on the mechanical and durability properties of concrete. Construction and Building Materials, 164, 371-385.
[12] Sabet F. A., Libre N. A. & Shekarchi M. 2013 Mechanical and durability properties of self consolidating high performance concrete incorporating natural zeolite, silica fume and fly ash. Construction and Building Materials, 44, 175-184.
[13] Valipour M., Pargar F., Shekarchi M. & Khani S. 2013 Comparing a natural pozzolan, zeolite, to metakaolin and silica fume in terms of their effect on the durability characteristics of concrete: A laboratory study. Construction and Building Materials, 41, 879-888.
[14] Soltani A., Tarighat A. & Rostami R. 2017 Effects of calcined clay minerals and silica fume on the compressive strength of concrete. Journal of Structural and Construction Engineering, 4(1), 33-50. (In Persian)
[15] Ranjbar M., Madandoust R. & Mousavi S. 2013 Combined effect of silica fume and zeolite on the fresh and hardened properties of self-compacted concrete. Concrete Research, 6(1), 53-71. (In Persian)
[16] Esmaeilnia Omran M. & Faridi M. 2015 Relationship between compressive strength and tensile strength, and modulus of elasticity in self compacting concrete containing recycled aggregates and natural zeolite. Concrete Research, 7(1), 7-22. (In Persian)
[17] Al-Jabri K. S., Al-Saidy A. H., Taha R. & Al-Kemyani A. J. 2011 Effect of using wastewater on the properties of high strength concrete. Procedia Engineering, 14, 370-376.
[18] APHA. 2012 Standard methods for examination of water and wastewater. American Public Health Association, 18th Edition, Washington DC.
[19] INSO 4977. 2015 Aggregates- sieve analysis of fine and coarse aggregates- test method. 1st revision.
[20] INSO 302. 2015 Concrete aggregates- specifications. 3st revision.
[21] INSO 581. 2014 Concrete- making and curing concrete test specimens in laboratory- code of practice. 1st revision.
[22] INSO 3201-1. 2009 Fresh concrete- part 1: sampling. 1st revision.
[23] INSO 3206. 1992 Concrete- determination of compressive strength of test specimens. 1st revision.
[24] EPA. 2012 Guidelines for water reuse. EPA/600/R-12/618, Washington, D.C.
[25] Iranian Budget and Planing Organization, 2004 Iranian concrete code (ABA). No. 120, 434p. (In Persian)
[26] INSO 14748, 2012 Mixing water for concrete. 1st Edition. (In Persian)
[27] ASTM C1602. 2012 Standard specification for mixing water used in the production of hydraulic cement concrete, ASTM International, West Conshohocken, PA, www.astm.org
[28] BS EN3148. 1980 Method of test for water for making concrete (including notes on the suitability of the water). British Standard Institution.
[29] Babu G.R. & Ramana N. V. 2018 Feasibility of wastewater as mixing water in cement. Materials Today: Proceedings, 5, 1607-1614.
[30] Iranian Budget and Planing Organization, 2004. Commentary of the concrete code of Iran (ABA). (In Persian)
[31] BS EN1008. 2002 Mixing water for concrete: Specification for sampling, testing and assessing the suitability of water, including water recovered from processes in the concrete industry, as mixing water for concrete. British Standard Institution, www.bsigroup.com
[32] Mehrdadi N., Akbarian A. & Hagh Elahi A. 2009 Using treated domestic wastewater in concrete mixing. Journal of Environmental Studies, 35(50), 129-136. (In Persian)
[33] Babu G. R., Reddy B. M. & Ramana N. V. 2018 Quality of mixing water in cement concrete: A review. Materials Today: Proceedings, 5: 1313-1320.
[34] Vejmelková E., Ondráček M. & Černý R. 2012 Mechanical and hydric properties of high performance concrete containing natural zeolites. International Journal of Materials and Metallurgical Engineering, 6(3), 186-189.