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Research Article

Land use Land cover of the Burullus Lake shoreline (Egypt) and health risk assessment of metal-contaminated sediments

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Pages 898-920 | Received 13 Apr 2020, Accepted 20 Jun 2020, Published online: 09 Jul 2020

References

  • Abdelhafez AA, Li J. 2015. Environmental monitoring of heavy metal status and human health risk assessment in the agricultural soils of the Jinxi River area, China. ‏Hum Ecol Risk Assess. 21(4):952–971. doi:10.1080/10807039.2014.947851
  • Arnason JG, Fletcher BA. 2003. A 40+ year record of Cd, Hg, Pb, and U deposition in sediments of Patroon Reservoir, Albany County, NY, USA. Environ Pollut. 123(3):383–391. doi:10.1016/s0269-7491(03)00015-0
  • Basiony AI. 2014. Environmental studies on heavy metals pollution and management of lake Burullus, Egypt [M.Sc. thesis]. Egypt: Port Said Faculty of Science, Port Said University.
  • Boxall ABA, Comber SD, Conrad AU, Howcroft J, Zaman N. 2000. Inputs, monitoring and fate modeling of antifouling biocides in UK Estuaries. Mar Pollut Bull. 40(11):898–905. doi:10.1016/S0025-326X(00)00021-7
  • Burton GA. 2002. Sediment quality criteria in use around the world. Limnology. 3:65–75.
  • Chonokhuu S, Batbold C, Chuluunpurev B, Battsengel E, Dorjsuren B, Byambaa B. 2019. Contamination and health risk assessment of heavy metals in the soil of major cities in Mongolia. Int J Environ Res Public Health. 16(14):2552. doi:10.3390/ijerph16142552
  • Darwish DH, El-Gammal MI, Mohamadein LI, El-Batrawy OA, El-Moselhy KM. 2018. Evaluation of heavy metals pollution using sediments in Burullus Lake and the nearby Mediterranean Sea, Egypt. Int J Environ Water. 7(2):16–34.
  • El-Alfy MA, El-Amier YA, Abd El-Hamid HT. 2017. Soil quality and health risk assessment of heavy metals in agricultural areas irrigated with wastewater from Kitchener Drain, Nile Delta, Egypt. JSA. 1:158–170. doi:10.25081/jsa.2017.v1.50
  • El-Alfy MA, El-Amier YA, El-Eraky TE. 2020. Land use/cover and eco-toxicity indices for identifying metal contamination in sediments of drains, Manzala Lake, Egypt. Heliyon. 6(1):e03177. doi:10.1016/j.heliyon.2020.e03177
  • El-Amier YA, Elnaggar AA, El-Alfy MA. 2017. Evaluation and mapping spatial distribution of bottom sediment heavy metal contamination in Burullus Lake, Egypt. Egypt J Bas Appl Sci. 4(1):55–66. doi:10.1016/j.ejbas.2016.09.005
  • El-Alfy MA, Hasballah AF, Abd El-Hamid HT, El-Zeiny AM. 2019. Toxicity assessment of heavy metals and organochlorine pesticides in freshwater and marine environments, Rosetta area, Egypt using multiple approaches. Sustain Environ Res. 29(1):19. doi:10.1186/s42834-019-0020-9
  • El-Asmar HM, Hereher ME, El Kafrawy SB. 2013. Surface area change detection of the Burullus Lagoon, North of the Nile Delta, Egypt, using water indices: a remote sensing approach. Egypt J Remote Sens Space Sci. 16(1):119–123. doi:10.1016/j.ejrs.2013.04.004
  • El-Zeiny A, El-Kafrawy S. 2017. Assessment of water pollution induced by human activities in Burullus Lake using Landsat 8 operational land imager and GIS, Egypt. J Remote Sens Space Sci. 20:S49–S56. doi:10.1016/j.ejrs.2016.10.002
  • El-Zeiny AM, El Kafrawy SB, Ahmed MH. 2019. Geomatics based approach for assessing Qaroun Lake pollution, Egypt. J Remote Sens Space Sci. 22 (3):279–296. doi:10.1016/j.ejrs.2019.07.003
  • Enuneku A, Omoruyi O, Tongo I, Ogbomida E, Ogbeide O, Ezemonye L. 2018. Evaluating the potential health risks of heavy metal pollution in sediment and selected benthic fauna of Benin River. Appl Water Sci. 8(8):224. doi:10.1007/s13201-018-0873-9
  • EPA. 1986. Quality criteria for water, EPA 440/5-86-001, May 1986. Washington DC, USA: Office of Water Regulations and Standards.
  • EPA. 2002. Environmental protection agency. USA: National Recommended Water Quality Criteria, 822-R-02-047.
  • EPA. 2016. Integrated risk information system. Washington: 2016, U.S. Environmental Protection Agency; https://www.epa.gov/iris/ (accessed 2016 Oct 16).
  • Ferner DJ. 2001. Toxicity, heavy metals. E Med J. 2(5):1–8.
  • Ferreira-Baptista L, De Miguel E. 2005. Geochemistry and risk assessment of street dust in Luanda, Angola: a tropical urban enthronement. Atmos Environ. 39(25):4501–4512. doi:10.1016/j.atmosenv.2005.03.026
  • Franco-Uria A, Lopez-Mateo C, Roca E, Fernandez- Marcos ML. 2009. Source identification of heavy metals in pastureland by multivariate analysis in NW Spain. J Hazard Mater. 165(1–3):1008–1015. doi:10.1016/j.jhazmat.2008.10.118
  • Gaurav N, Sivasankari S, Kiran GS, Ninawe A, Selvin J. 2017. Utilization of bioresources for sustainable biofuels: a review. Renew Sust Energy Rev. 73:205–214. doi:10.1016/j.rser.2017.01.070
  • Ghorbani H, Hafezi Moghadas N, Kashi H. 2015. Effects of land use on the concentrations of some heavy metals in soils of Golestan Province, Iran. J Agr Sci Tech: Iran. 17:1025–1040.
  • Grzetic I. 2003. Traffic pollution in the streets of Belgrade. J Environ Prot Ecol. 4:761–766.
  • Kennish MJ. 1996. Practical handbook of estuarine and marine pollution. Boca Raton: CRC Press, Inc., p. 524.
  • Koki IB, Bayero AS, Umar A, Yusuf S. 2015. Health risk assessment of heavy metals in water, air, soil and fish. Afr J Pure Appl Chem. 9(11):204–210.
  • Li F, Huang J, Zeng G, Huang X, Liu W, Wu H, Yuan Y, He X, Lai M. 2015. Spatial distribution and health risk assessment of toxic metals associated with receptor population density in street dust: a case study of Xiandao District, Changsha, Middle China. Environ Sci Pollut Res Int. 22(9):6732–6742. doi:10.1007/s11356-014-3753-3
  • Luo W, Lu Y, Wang T, Hu W, Jiao W, Naile JE, Khim JS, Giesy JP. 2010. Ecological risk assessment of arsenic and metals in sediments of coastal areas of northern Bohai and Yellow Seas, China. AMBIO: A J Hum Environ. 39(5–6):367–375. doi:10.1007/s13280-010-0077-5
  • Macdonald DD, Ingersoll CG, Berger TA. 2000. Development and evaluation of consensus-based sediment quality guidelines for freshwater ecosystems. Arch Environ Contam Toxicol. 39(1):20–31. doi:10.1007/s002440010075
  • Mukherjee S, Patel AK, Kumar M. 2020. Water scarcity and land degradation nexus in the anthropocene: reformations for advanced water management as per the sustainable development goals. In: Emerging issues in the water environment during anthropocene. Singapore: Springer. p. 317–336.
  • Muller G. 1969. Index of geo-accumulation in sediments of the Rhine River. Geo J. 2(3):108–118.
  • National Ambient Air Quality Standards (NAAQS). 2014. http://www.epa.gov/air/criteria.html. (accessed June 2014).
  • Okbah MA, Hussein NR. 2006. Impact of environmental conditions on the phytoplankton structure in Mediterranean Sea Lagoon, Lake Burullus, Egypt. Water Air Soil Pollut. 172(1–4):129–150. doi:10.1007/s11270-005-9066-x
  • Pavlović P, Mitrović M, Đorđević D, Sakan S, Slobodnik J, Liška I, Csanyi B, Jarić S, Kostić O, Pavlović D, et al. 2016. Assessment of the contamination of Riparian soil and vegetation by trace metals—a Danube River case study. Sci Total Environ. 540:396–409. doi:10.1016/j.scitotenv.2015.06.125
  • Pejman A, Bidhendi NG, Ardestani M, Saeedi M, Baghvand A. 2015. A new index for assessing heavy metals contamination in sediments: a case study. Ecol Indus. 58:365–373. doi:10.1016/j.ecolind.2015.06.012
  • RAIS. 2007. The Risk Assessment Information System. http://rais.ornl.gov/tox//rap_toxp.shtml. (accessed 15 Jan 2008).
  • Ridgway J, Shimmield G. 2002. Estuaries as repositories of historical contamination and their impact on shelf seas. Estuar Coast Mar Sci. 55(6):903–928. doi:10.1006/ecss.2002.1035
  • Seshan BRR, Natesan U, Deepthi K. 2010. Geochemical and statistical approach for evaluation of heavy metal pollution in core sediments in southeast coast of India. Int J Environ Sci Technol. 7(2):291–306. doi:10.1007/BF03326139
  • Smith P, House JI, Bustamante M, Sobocká J, Harper R, Pan G, West PC, Clark JM, Adhya T, Rumpel C, et al. 2016. Global change pressures on soils from land use and management. Glob Chang Biol. 22(3):1008–1028. doi:10.1111/gcb.13068
  • Tomlinson DC, Wilson DJ, Harris CR, Jeffrey DW. 1980. Problem in assessment of heavy metals in estuaries and the formation of pollution index. Helgolander Meeresunters. 33(1–4):566–575. doi:10.1007/BF02414780
  • Urban DL, Cook NJ. 1986. Hazard evaluation division standard evaluation procedure; ecological risk assessment. Washington, DC: US Environmental Protection Agency-EPA-540/-001. p. 9–85.
  • USEPA 2011a. Risk assessment guidance for superfund. In: Human health evaluation manual; supplemental guidance for dermal risk assessment; supplemental guidance for inhalation risk assessment.
  • USEPA. 2011b. The screening level (RSL) TABLES (Last UPDATED June 2011).
  • USEPA. 2011c. User’s guide and background technical document for USEPA Region 9’s preliminary remediation nGoals (PRG) table.
  • USEPA. 2012. Waste and cleanup risk assessment. http://www2.epa.gov/risk/waste-and-cleanup-risk-assessment.
  • Weissmannová HD, Mihocová S, Chovanec P, Pavlovský J. 2019. Potential ecological risk and human health risk assessment of heavy metal pollution in industrial affected soils by coal mining and metallurgy in Ostrava, Czech Republic. Int J Env Res Pub Health. 16(2):4495. doi:10.3390/ijerph16224495
  • WHO 2004. World health organization standard for drinking water., guidelines for drinking water quality, Vol. 1: Recommendation. France: WHO. p. 181.
  • Yang ZF, Wang Y, Shen ZY, Niu JF, Tang ZW. 2009. Distribution and speciation of heavy metals in sediments from the mainstream, tributaries, and lakes of the Yangtze River catchment of Wuhan, China. J Hazard Mater. 166(2–3):1186–1194. doi:10.1016/j.jhazmat.2008.12.034
  • Youn-Joo A. 2003. Total, dissolved, and bioaccumulation in freshwater fish with emphasis on the dietary influence. Water Res. 34:4234–4242.

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