1. Ameri, M., Shahabi Shahmeri, H., 2011. The Effect of Steel Slag from the Esfahan Refinery on the Performance of the Base and Sublayer of Pavements. Road journal 67, 61-67. 2. Armbrust, D. W., Chepil, W. S., Siddoway, F. H., 1964, effect of ridges on erosion of soil by wind. Soil science 28 (8): 557-560. 3. Azarbaijani, K., Viktash, F., 2004. Production and consumption of steel industry primary material in Iran and around the world. Steel symposium, Iran Iron and Steel Association. 4. Babakhani, S., 2011. Application of steel slag in the stabilization of degradable sediments. M.Sc. thesis, Isfahan University of Technology. 89 pp. 5. Bayatmovahed, F., 2010. Role of vegetation on wind erosion control. Agriculture science, Tehran, Iran. 6. Boali, A., Jafari, R., Bashari, H., 2017. Wind erosion estimation and assessment using Bayesian belief networks in eastern Isfahan Township. Desert Ecosystem Engineering Journal 6 (14), 45- 58 7. Calkins, M., 2008. Materials for sustainable sites: a complete guide to the evaluation, selection and use of sustainable construction materials. John Wiley and Sons, Newyork, USA. 8. Chepil W.S., Milne, R. A., 1941. Wind erosion of soil in relation to roughness of surface. Soil Science 52 (6), 417-434. 9. Chepil, W. S., Woodruff, N. P., Siddoway, F. H., Armbrust, D.V., (1963). Mulches for wind and water erosion control. USDA, ARS 41–84, 23 pp. 10. Chepil, W. S., Woodruff, N. P., Siddoway, F. H., Fryrear, D. W., Armbrust, D.V., 1963. Vegetative and non-vegetative materials to control wind and water erosion, Soil Science Society Proceedings 27, 86–89. 11. Corey, A.T., Kemper, W.D., (1968). Conservation of soil water by gravel mulches. Ft. Collins, CO: Colorado State University. 12. Dong, Z., Liu, X., Wang, W. 2002. Aerodynamic roughness of gravel surfaces. Geomorphology 42 (1): 17-31. 13. Gardooni, E., Shariat, M., Sadeghi, H., Veisi, I., 2012. Feasibility study of a 39 MW wind power plant in Binaloud region. Iran Wind energy Conference. 14. Gerson, R., Amit, R., Grossman, S., 1985. Dust Availability in Desert Terrains. A Study in the desert of Israel and the Sinai. Jerusalem, Israel. 15. Jafari, M., Tavili, A., Panahi, F., Zandi Esfahan, E., Ghorbani, M., 2018. Reclamation of Arid Lands. Springer. Gewerbestrasse, Cham, Switzerland. 16. Joulazadeh, M.H., 2016. Steel reference of 2014-2015. Science bases, Tehran, Iran. 17. Kader, M.A., Senge, M., Mojid, M.A., Ito, K., 2017. Recent advances in mulching materials and methods for modifying soil environment, Soil and Tillage Research 168, 155-166. 18. Kowsar, A., Boersma, L., Jarman, G.D., (1968). Effects of petroleum mulch on soil water content and soil temperature. Soil Science Society of America Journal 33(5), 783–786. 19. Li, X.Y., Liu, L.Y., 2003. Effect of gravel mulch on Aeolian dust accumulation in the semiarid region of north west China. Soil and Tillage Research 70 (1): 81-73. 20. Li, X.Y., Liu, L.Y., Gong, J.D., (2001). Influence of pebble mulch on soil erosion by wind and trapping capacity for windblown sediment. Soil and Tillage Research 59(3), 137–142. 21. Nikkhou, S.H., (1971). Mulch. Secretariat of the National Iranian Oil Company. 22. Proctor, D.M., Shay, E.C., Fehling, K.A., Finley, B.L., 2002. Assessment of human health and ecological risks posed by the uses of steel-industry slags in the environment. Human and ecological risk assessment 8 (4): 681-711. 23. Rao, S.R., 2011. Resource recovery and recycling from metallurgical wastes; technology and engineering. McGill university, Montreal, Canada. 24. Razavi dinani, Z, Mirghaffari, N., Joulazadeh, M.H., 2017. Protection of environment in iron and steel industries. Publication of iron and steel, Isfahan, Iran. 25. Refahi, H.Gh., 2012. Wind erosion & conservation. University of Tehran press, Tehran, Iran. 26. Safaei A.R., Karimzadeh H., Rouhani Shahraki F., Tarkesh Isfahani, M., 2012. Use of Steel Manufacturing Slag (Foulad Mobarake Co.) as Mulch To Stabilize Wind Eroded Sediment Case Study: Soils in East of Isfahan. Environmental Erosion Research Journal 2 (2), 15-24. 27. Shahnavaz, M., Gholami, A., Nourzadeh Haddad, M., Panahpoor, E., 2016. Study of Performance polymer and plant mulch to reduce soil loss in areas prone to wind erosion in Khuzestan, Iran. Iranian Journal of Soil and Water Research 48 (3): 651-658. 28. Tejedor, M., Jimenez, C., Diaz, F., 2003. Volcanic materials as mulches for water conservation. Geoderma 117, 283–295. 29. US Department of Health and Human Services, 2008, Toxicological Profile, Public Health Service, Agency for Toxic Substances and Disease Registry. 30. Wang, Y., Xie, Z., Malhi, S.S., Vera, C.L., Zhang, Y., 2014. Gravel-sand mulch thickness effects on soil temperature, evaporation, water use efficiency and yield of watermelon yield in semi–arid Loess Plateau, China. Acta Ecologica Sinica 34(5), 261–265. 31. Zaboli, M., Kakaie, L., Zaboli, J., Zaboli, Z., 2010. Application of oil mulch in stabilizing sandy soils and its environmental impacts. Second national conference on wind erosion and dust storms. Yazd university. 32. Zribi, W., Aragüés, R., Medina, E., Faci, J. M., (2015). Efficiency of inorganic and organic mulching materials for soil evaporation control. Soil & Tillage Research 148, 40–45.