Opportunities and challenges of utilizing well water for aquaculture in Basrah government, Southern Iraq
Keywords:
Fish farming, Shatt Al-Arab water, Well water, Water pollution, Water treatment, GIS.Abstract
The current study aimed to assess the environmental and economic feasibility of using well water in fish farming in Basrah Governorate. It reviewed the global importance of aquaculture and its vital role in providing food and income, emphasizing that water quality is a fundamental factor in the success of aquaculture projects. The study discussed the current status of fish farming projects in Basrah and the problems they face due to the deterioration of water quality in the Shatt al-Arab. It also evaluated the possibility of using well water as an alternative, referring to some studies that showed contamination of well water in the governorate. The study relied on the quantitative and spatial distribution of groundwater in Basrah Governorate using satellite imagery processed with Geographic Information System (GIS) software. The current study proposed some modern technologies for treating and purifying well water for reuse in fish farming, with the necessity of establishing environmental, social, and economic controls to ensure sustainability. The study concluded that adopting a comprehensive approach that considers all aspects will contribute to achieving a balance between developmental needs and the preservation of natural resources.
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Ahmed, A.R. and Al-Zewar, J.M. (2020). Socio-economic impact of the saltwater intrusion in the Shatt al-Arab River on fish farmers in Al-Mashab marshes, Southern Iraq. MFAR., 3(2), pp.83-91. Available at: https://dergipark.org.tr/tr/download/article-file/1128247.
Ahmed, A. (2021). Evaluation of the heavy metal content in the muscle tissue of common carp (Cyprinus carpio L.) reared in groundwater in Basrah province, Iraq. Iraqi J. Vet. Sci. DOI: 10.33899/ijvs.2020.126491.1336
Ahmed, A. and Hameed, T. (2021). Saltwater intrusion in the Shatt Al-Arab River and aquaculture losses: A case study in the Seeba farms in Basrah, Southern Iraq. Iraqi J. Aquac. 17(1): 49-60.
Al-Mallah, I.A., Al-Qurnawi, W.S., Ghalib, H.B., Al-Hawash, A.B., and Abdulameer, M.H. (2022). Evaluation of groundwater quality in the Dibdibba aquifer using hydrogeochemical and isotope techniques (Basrah Province, Iraq). Acta Geochim. https://doi.org/10.1007/s11631-022-00549-8.
Dawood, A.S. and Hamdan, A.N. (2016). Using GIS for assessing groundwater quality in southwest Basrah city. Muthanna J. Eng. Technol., 4 (2), pp.75-87. DOI:10.52113/3/eng/mjet/2016-04-02/75-87.
Demenev, A., Maksimovich, N., Khmurchik, V., Rogovskiy, G., Rogovskiy, A., and Baryshnikov, A. (2021). Field test of in situ groundwater treatment applying oxygen diffusion and bioaugmentation methods in an area with sustained total petroleum hydrocarbon (TPH) contaminant flow. Water, 14(2), p.192. https://doi.org/10.3390/w14020192.
Diaz, R.J. and Breitburg, D.L. (2009). The hypoxic environment. In: Farrell, A.P. and Brauner, C.J., eds., Fish Physiol.: Hypoxia. 1st ed. Academic Press, pp.1-23. https://doi.org/10.1016/S1546-5098(08)00001-0.
FAO (2010). World aquaculture 2010, aquaculture service of the fisheries and aquaculture resources use and conservation division. FAO Fish. Aquac. Tech. Paper 500/1, Rome.
FAO (2020). Fisheries and aquaculture statistics. Global aquaculture and fisheries production 1950–2018 (Fishstat). Rome: FAO Fisheries and Aquaculture Department.
Habib, U.H., Qadeer, M.A., Ahlam, E.A., Gabol, K., Swelum, A.A., Masood, Z., et al. (2024). Growth performance and survivability of the Asian seabass Lates calcarifer (Bloch, 1790) reared under hyper-saline, hypo-saline, and freshwater environments in a closed aquaculture system. Braz. J. Biol. https://doi.org/10.1590/1519-6984.254161.
Hashim, M., Mukhopadhyay, S., Sahu, J.N., and Sengupta, B. (2011). Remediation technologies for heavy metal contaminated groundwater. J. Environ. Manage., 92(10), pp.2355-2388. https://doi.org/10.1016/j.jenvman.2011.06.009.
Lorenzen, K., Leber, K.M., and Blankenship, H.L. (2010). Responsible approach to marine stock enhancement: an update. Rev. Fish. Sci., 18(2), pp.189-210. https://doi.org/10.1080/10641262.2010.491564.
Matey, V., Richards, J.G., Wang, Y., Wood, C.M., Rogers, J., Davies, R., et al. (2008). The effect of hypoxia on gill morphology and ionoregulatory status in the Lake Qinghai scaleless carp, Gymnocypris przewalskii. J. Exp. Biol., 211(7), pp.1063-1074. https://doi.org/10.1242/jeb.010181.
Meiramkulova, K., Kydyrbekova, A., Devrishov, D., et al. (2022). Comparative analysis of natural and synthetic zeolite filter performance in the purification of groundwater. Water, 15(3), p.588. https://doi.org/10.3390/w15030588.
Mohammed, A.I., Naimi, S., and Dawood, A.S. (2023). Evaluation of the drinking and irrigation quality of groundwater in Basra, Iraq. J. Ecol. Eng., 24(9), pp.260-271. https://doi.org/10.12911/22998993/169177.
Moussavi, G. and Bagheri, A. (2012). Removal of petroleum hydrocarbons from contaminated groundwater by the combined technique of adsorption onto perlite followed by the O3/H2O2 process. Environ. Technol., 33(16-18), pp.1905-1912. https://doi.org/10.1080/09593330.2011.650223.
Naylor, R.L., Goldburg, R.J., Primavera, J.H., et al. (2000). Effect of aquaculture on world fish supplies. Nature, 405(6790): 1017-1024. doi.org/10.1038/35016500.
Shahmohammadi-Kalalagh, S., Jafarvand-Azarkhiavi, G., and Ghasemi, H. (2017). The feasibility of groundwater of Aras River margin for aquaculture in Iran. 15th International Conference on Environmental Science and Technology, Rhodes, Greece.
Sun, S., Gong, C., Deng, C., et al. (2023). Effects of salinity stress on the growth performance, health status, and intestinal microbiota of juvenile Micropterus salmoides. Aquaculture, 576, p.739888. https://doi.org/10.1016/j.aquaculture.2023.739888.
UN (2020). Basra urban profile. Available at: https://unhabitat.org/sites/default/files/2021/03/basra_urban_profile_-_english.pdf
Woynarovich, A., Bueno, P.B., Altan, Ö., et al. (2011). Better management practices for carp production in Central and Eastern Europe, the Caucasus, and Central Asia. FAO Fish. Aquac. Tech. Paper 566, Ankara.
Yasin, H., Hamouda, M., Mousa, M.S., et al. (2020). Membrane technology for groundwater purification: A review. SVU-Int. J. Basic Appl. Sci., 1(1), pp.8-21. https://doi.org/10.21608/SVUSRC.2020.51369.1002.
Younus, B.M. and Al-Khafaji, B.Y. (2016). Concentration of petroleum hydrocarbons in groundwater of wells near south refineries in the Al-Shiaba region, Zubair-Basra, Southern Iraq. J. Sci., 6(2), pp.39-45. https://jsci.utq.edu.iq/index.php/main/article/view/130/119.
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