References

  1. Z. Wu, D. Zhao, J.P.M. Syvitski, Y. Saito, J. Zhou, M. Wang, Anthropogenic impacts on the decreasing sediment loads of nine major rivers in China, 1954–2015, Sci. Total Environ., 739 (2020) 139653, doi:10.1016/j.scitotenv.2020.139653.
  2. M.A. Rabeea, A.S. Al-Rawi, O.J. Mohammad, B.M. Hussien, The residual effect of fish farms on the water quality of the Euphrates River, Iraq, Egypt. J. Aquat. Biol. Fish., 24 (2020) 549–561.
  3. M.A. Rabeea, A.J.R. Al-Heety, M.I. Mohammed, A.M. Fayydh, M. Elhag, Impact of Hijlan Creek springs on water quality of the Euphrates River and the hydrochemical characterization of the contamination plumes, Environ. Earth Sci., 80 (2021) 481, doi: 10.21203/rs.3.rs-338406/v1.
  4. S.M. Yarnell, E.D. Stein, J. Angus Webb, T. Grantham, R.A. Lusardi, J. Zimmerman, R.A. Peek, B.A. Lane,
    J. Howard, S. Sandoval‐Solis, A functional flows approach to selecting ecologically relevant flow metrics for environmental flow applications, River Res. Appl., 36 (2020) 318–324.
  5. M. Mokarram, A. Saber, V. Sheykhi, Effects of heavy metal contamination on river water quality due to release of industrial effluents, J. Cleaner Prod., 277 (2020) 123380, doi: 10.1016/j. jclepro.2020.123380.
  6. T.A. Wallace, S. Gehrig, T.M. Doody, A standardised approach to calculating floodplain tree condition to support environmental watering decisions, Wetlands Ecol. Manage., 28 (2020) 315–340.
  7. B.M. Hussien, M.A. Rabeea, M.M. Farhan, Characterization and behavior of hydrogen sulfide plumes released from active sulfide-tar springs, Hit-Iraq, Atmos. Pollut. Res., 11 (2020) 894–902.
  8. J. Rodríguez-Estival, M.E. Ortiz-Santaliestra, R. Mateo, Assessment of ecotoxicological risks to river otters from ingestion of invasive red swamp crayfish in metal contaminated areas: use of feces to estimate dietary exposure, Environ. Res., 181 (2020) 108907, doi: 10.1016/j.envres.2019.108907.
  9. M.C. Thoms, T. Rose, F.J. Dyer, Riverine landscapes, water resource development and management: a view from downunder, River Res. Appl., 36 (2020) 505–511.
  10. X. Sun, D. Fan, M. Liu, H. Liao, Y. Tian, Persistent impact of human activities on trace metals in the Yangtze River Estuary and the East China Sea: evidence from sedimentary records of the last 60 years, Sci. Total Environ., 654 (2019) 878–889.
  11. H.N. Mukhlif, M.A. Rabeea, B.M. Hussien, Characterization of the groundwater within regional aquifers and suitability assessment for various uses and purposes-Western Iraq, Baghdad Sci. J., 18 (2021) 670–686.
  12. B.M. Hussien, M.A. Rabeea, H.N. Mukhlif, Estimation of corrosion and encrustation from groundwater chemistry of the aquifers: a case study of Al Hammad zone, Environ. Nanotechnol. Monit. Manage., 14 (2020) 100334, doi: 10.1016/j. enmm.2020.100334.
  13. C. Zhang, D. Tian, X.H. Yi, T. Zhang, J. Ruan, R. Wu, C. Chen, M. Huang, G.G. Ying, Occurrence, distribution and seasonal variation of five neonicotinoid insecticides in surface water and sediment of the Pearl Rivers, South China, Chemosphere, 217 (2019) 437–446.
  14. W. Wang, W. Li, Y. Yan, B. Liu, T. Wang, S. Mao, L. Song, H. Dou, W. Ao, C. Zou, Organic matter pollution during the Spring Thaw in Hulun Lake Basin: contribution of multiform human activities, Bull. Environ. Contam. Toxicol., 105 (2020) 307–316.
  15. R.R. Hikmat, I. Juwana, Pollution load of Cisangkan River: the domestic sector, IOP Conf. Ser.: Earth Environ. Sci., 277 (2019) 012029, doi: 10.1088/1755-1315/277/1/012029.
  16. M. Abbas, H. Al-Khatib, Complex Geophysical Interpretation of Hit Abu-Jir Shithatha Area, GEOSURV Lib., Report, 1982.
  17. V. Sissakian, S. Salih, The Geology of Ramadi Area. Map NA389 (GM18) Scale 1: 25000, GEOSURV, Unpublished Internal Report, 1994 (in Arabic).
  18. S.F. Fouad, Contribution to the structure of Abu-Jir Fault Zone, west Iraq, Iraqi Geol. J., 32 (2004) 63–73.
  19. S.M. Awadh, S.A. Al-Ghani, Assessment of sulfurous springs in the west of Iraq for balneotherapy, drinking, irrigation and aquaculture purposes, Environ. Geochem. Health, 36 (2014) 359–373.
  20. A.H. Kamel, S.O. Sulaiman, A.S. Mustaffa, Study of the effects of water level depression in Euphrates River on the water quality, J. Civ. Eng. Archit., 7 (2013) 238–247.
  21. M. Elhag, J.A. Bahrawi, Conservational use of remote sensing techniques for a novel rainwater harvesting in arid environment, Environ. Earth Sci., 72 (2014) 4995–5005.
  22. M. Elhag, I. Gitas, A. Othman, J. Bahrawi, P. Gikas, Assessment of water quality parameters using temporal remote sensing spectral reflectance in arid environments, Saudi Arabia, Water, 11 (2019) 556, doi:10.3390/w11030556.
  23. J. Bahrawi, H. Ewea, A.S. Kamis, M. Elhag, Potential flood risk due to urbanization expansion in arid environments, Saudi Arabia, Nat. Hazards, 104 (2020) 795–809.
  24. J. Budiman, J. Bahrawi, A. Hidayatulloh, M. Almazroui, M. Elhag, Volumetric quantification of flash flood using microwave data on a watershed scale in arid environments, Saudi Arabia, Sustainability, 13 (2021) 4115, doi:10.3390/su13084115.
  25. N. Al-Ansari, Management of water resources in Iraq: perspectives and prognoses, Engineering, 5 (2013) 667–684.
  26. M. Elhag, J.A. Bahrawi, Consideration of geo-statistical analysis in soil pollution assessment caused by leachate breakout in the municipality of Thermi, Greece, Desal. Water Treat., 57 (2016) 27879–27889.
  27. M. Elhag, J.A. Bahrawi, H.K. Galal, A. Aldhebiani, A.A.M. Al-Ghamdi, Stream network pollution by olive oil wastewater risk assessment in Crete, Greece, Environ. Earth Sci., 76 (2017) 278,
    doi:10.1007/s12665-017-6592-y.
  28. A. Abdel Reheem, N. Yilmaz, M. Elhag, Phenolics decontamination of olive mill wastewater using onion solid by-products homogenate, Desal. Water Treat., 159 (2019) 32–39.
  29. B.M. Hussien, A.S. Fayyadh, J.M. Hammed, M.A. Al Hamdani, Hydrochemical model and probable pollution in the water of Euphrates River (Qaem–Falluja), Arabian J. Geosci., 6 (2013) 783–799.
  30. K. Banat, Y. Al-Rawi, Hydrogeochemistry, clay minerals and carbonates of the Euphrates River Iraqi, Iraqi J. Sci., 27 (1986) 347–362.
  31. M. Aljahdali, M. Elhag, Y. Mufrreh, A. Memesh, S. AlSoubhi, I.S. Zalmout, Upper Eocene calcareous nannofossil biostratigraphy: a new preliminary Priabonian record from northern Saudi Arabia, Appl. Ecol. Environ. Res., 18 (2020) 5607–5625.
  32. S. Jassim, J. Goff, Geology of Iraq, Published by Dolin, Prague and Moravian Museum, Brno, Printed in the Czech Republic, 2006.
  33. N. Yilmaz, C.H. Yardimci, M. Elhag, C.A. Dumitrache, Phytoplankton composition and water quality of Kamil Abduş Lagoon (Tuzla Lake), Istanbul-Turkey, Water, 10 (2018) 603, doi: 10.3390/w10050603.
  34. V.K. Sissakian, S.F. Fouad, Geological map of Iraq, scale 1: 1000 000, 2012, Iraqi Bull. Geol. Mining, 11 (2015) 9–16.
  35. B.M. Hussein, Hydrogeologic conditions within Al-Anbar Governorate, J. Anbar Univ. Pure Sci. Iraq., 3 (2010) 34–41.
  36. B.M. Hussien, M.A. Gharbi, Hydrogeological conditions within Abu-Jir Fault Zone (Hit–Kubaiysa), Iraqi J. Desert Stud., 2 (2010) 1–14.
  37. A.S. Al Dulaymie, B.M. Hussien, M.A. Gharbi, H.N. Mekhlif, Balneological study based on the hydrogeochemical aspects of the sulfate springs water (Hit-Kubaiysa region), Iraq, Arabian J. Geosci., 6 (2013) 801–816.
  38. F. Gilcreas, Standard Methods for the Examination of Water and Wastewater, American Journal of Public Health and the Nations Health, 1966, pp. 387–388.
  39. N. Yilmaz, R.E. Yardimci, A.T. Haghighi, M. Elhag, A. Celebi, Water quality determination by using phytoplankton composition in sea bass (Dicentrarchus labrax, L., 1758) aquaculture ponds in Turkey, Desal. Water Treat., 234 (2021) 392–398.
  40. T. Brikowski, Lab Notes, Hydrogeology Outdoor Laboratory, GEOS 4430, Geosciences Dept., U. Texas-Dallas, U.S., 2011, 51 p.
  41. F.T. Caruccio, The properties of groundwater, EOS, 64 (1983) 17–18.
  42. D.K. Todd, L.W. Mays, Groundwater Hydrology, John Wiley & Sons, Hoboken, New Jersey, U.S., 2004.
  43. J.D. Hem, Study and Interpretation of the Chemical Characteristics of Natural Water, 3rd ed., US Geological Survey of Water Supply, Paper 2254, USGS, Washington, DC, 1989.
  44. S. Najib, A. Fadili, K. Mehdi, J. Riss, A. Makan, Contribution of hydrochemical and geoelectrical approaches to investigate salinization process and seawater intrusion in the coastal aquifers of Chaouia, Morocco, J. Contam. Hydrol., 198 (2017) 24–36.
  45. I.G. Littlewood, T.J. Marsh, Annual freshwater river mass loads from Great Britain, 1975–1994: estimation algorithm, database and monitoring network issues, J. Hydrol., 304 (2005) 221–237.
  46. P.J. Johnes, Uncertainties in annual riverine phosphorus load estimation: impact of load estimation methodology, sampling frequency, baseflow index and catchment population density, J. Hydrol., 332 (2007) 241–258.
  47. J.R. Mullaney, D.L. Lorenz, A.D. Arntson, Chloride in Groundwater and Surface Water in Areas Underlain by the Glacial Aquifer System, Northern United States, Vol. 5086, US Geological Survey Reston, VA, 2009.
  48. Nordstrom, D. Kirk, Aqueous environmental geochemistry, Ground Water, 35 (1997) 919–920.
  49. W. Stumm, J.J. Morgan, Aquatic Chemistry: An Introduction Emphasizing Chemical Equilibria in Natural Waters, 1970.
  50. F.M. Morel, J.G. Hering, Principles and Applications of Aquatic Chemistry, John Wiley & Sons, Hoboken, New Jersey, U.S., 1993.
  51. R.G. Wetzel, G. Likens, Limnological Analyses, Springer Science & Business Media, New York, U.S., 2000.
  52. J. Van Pagee, Natural Reaeration of Surface Water by the Wind, WL|Delft Hydraulics, Report on Literature Study R1318-II, 1978 (in Dutch).
  53. G. Delvigne, Natural Reaeration of Surface Water, WL|Delft Hydraulics, Report on Literature Study, 1980.
  54. M. Allam, Q.Y. Meng, H. Al-Aizari, M. Elhag, J. Yang, M. Sakr, Z. Wang, Geo-statistical assessment of ground water quality in Dhamar Basin, Yemen, Appl. Ecol. Environ. Res., 18 (2020) 625–644.
  55. E.B. Phelps, H. Streeter, A Study of the Pollution and Natural Purification of the Ohio River, US Department of Health, Education, and Welfare, Washington, D.C., U.S., 1958.
  56. T.D. Waite, N.J. Freeman, Mathematics of Environmental Processes, Lexington Books, Michigan, U.S., 1977.
  57. G. Kiely, Environmental Engineering, Tata McGraw-Hill Education, New York, U.S., 2007.
  58. D. Omole, E. Longe, Reaeration coefficient modeling: a case study of River Atuwara in Nigeria, Res. J. Appl. Sci. Eng. Technol., 4 (2012) 1237–237.
  59. T. Srebotnjak, G. Carr, A. de Sherbinin, C. Rickwood, A global Water Quality Index and hot-deck imputation of missing data, Ecol. Indic., 17 (2012) 108–119.