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Research Article

Assessment of metallic trace elements mobility from mine tailing and soils around abandoned Pb mine site in North East Morocco

ORCID Icon, , &
Pages 933-943 | Received 02 Jan 2021, Accepted 21 Sep 2022, Published online: 29 Sep 2022

References

  • Coskun A, Horasan BY, Ozturk A. Heavy metal distribution in stream sediments and potential ecological risk assessment in Konya Northeast region. Environ Earth Sci. 2021;80(5):1–18.
  • Gemici Ü, Tarcan G, Somay AM, et al. Factors controlling the element distribution in farming soils and water around the abandoned Halıköy mercury mine (Beydağ, Turkey). Appl Geochem. 2009;24(10):1908–1917.
  • Horasan BY. The environmental impact of the abandoned mercury mines on the settlement and agricultural lands; Ladik (Konya, Turkey). Environ Earth Sci. 2020;79(10):1–13.
  • Chen H, Chen Z, Chen Z, et al. Calculation of toxicity coefficient of potential ecological risk assessment of rare earth elements. Bull Environ Contam Toxicol. 2020;104(5):582–587.
  • Higueras P, Esbrí JM, García-Ordiales E, et al. Potentially harmful elements in soils and holm-oak trees (Quercus ilex L.) growing in mining sites at the Valle de Alcudia Pb-Zn district (Spain)–Some clues on plant metal uptake. J Geochem Explor. 2017;182:166–179.
  • Hanfi MY, Yarmoshenko IV. Health risk assessment quantification from heavy metals contamination in the urban soil and urban surface deposited sediment. J Taibah Univ Sci. 2020;14(1):285–293.
  • Antoniadis V, Levizou E, Shaheen SM, et al. Trace elements in the soil-plant interface: phytoavailability, translocation, and phytoremediation–a review. Earth Sci Rev. 2017;171:621–645.
  • Li J, Kosugi T, Riya S, et al. Pollution potential leaching index as a tool to assess water leaching risk of arsenic in excavated urban soils. Ecotoxicol Environ Saf. 2018;147:72–79. https://doi.org/10.1016/j.ecoenv.2017.08.002.
  • Zhao B, Xing C, Zhou S, et al. Sources, fraction distribution and health risk assessment of selenium (Se) in Dashan village, a Se-Rich area in Anhui Province, China. Bull Environ Contam Toxicol. 2020;104(4):545–550.
  • Rauret G, López-Sánchez JF, Sahuquillo À, et al. Improvement of the BCR three step sequential extraction procedure prior to the certification of new sediment and soil reference materials. J Environ Monit. 1999;1:57–61.
  • Pasquet C, Monna F, van Oort F, et al. Mobility of Ni, Co, and Mn in ultramafic mining soils of New Caledonia, assessed by kinetic EDTA extractions. Environ Monit Assess. 2018;190(11):638. doi:10.1007/s10661-018-7029-0.
  • Cappuyns V, Swennen R. Evolution of element release during oxidation and its relevance towards the management of contaminated sediments. J Comun Geol. 2013;100(1):41–47.
  • Zhang C, Yu Z-G, Zeng G-M, et al. Effects of sediment geochemical properties on heavy metal bioavailability. Environ Int. 2014;73:270–281.
  • Oukemeni D, Bourne JH. Etude géochimique des granitoïdes du pluton d’Aouli, Haute Moulouya, Maroc. J Afr Earth Sci. 1993;17(4):429–443. https://doi.org/10.1016/0899-5362(93)90002-8.
  • Iavazzo P, Adamo P, Boni M, et al. Mineralogy and chemical forms of lead and zinc in abandoned mine wastes and soils: an example from Morocco. J Geochem Explor. 2012;113:56–67. https://doi.org/10.1016/j.gexplo.2011.06.001.
  • NF ISO 11464. Qualité des sols, prétraitement pour analyses physico-chimiques. NF X31-412/NF ISO 11464 décembre 2006; Ed (2006 Dec 1).
  • Chaplain V, Défossez P, Delarue G, et al. Impact of lime and mineral fertilizers on mechanical strength for various soil pHs. Geoderma. 2011;167:360–368.
  • Tian H, Fang L, Duan C, et al. Dominant factor affecting Pb speciation and the leaching risk among land-use types around Pb-Zn mine. Geoderma. 2018;326:123–132.
  • Rhoades J. Cation exchange capacity, Methods of soil analysis: part 2 chemical microbiological properties. Agronomy. 1983;9:149–157.
  • Nasri H, Elhammouti K, Azdimousa A, et al. Calcimetric and sedimentometric characterization of clay deposits in the Neogene Boudinar basin (north eastern Rif, Morocco): implication on the eustatic and hydrodynamic evolution of the basin and economic interest. J Mater Environ Sci Technol. 2016;7:859–870.
  • Harris D, Horwáth WR, Van Kessel C. Acid fumigation of soils to remove carbonates prior to total organic carbon or CARBON-13 isotopic analysis. Soil Sci Soc Am J. 2001;65(6):1853–1856.
  • Blinda M. (2007). Pollution tellurique du littoral Nord-Ouest du Maroc entre Tanger et Tétouan: Caractérisation, impact sur l’environnement et proposition de solutions.
  • Caria G, Proix N, Ciesielski H. Dosage du carbone organique par combustion sèche après décarbonatation automatisée des sols. Journal Institut National de la Recherche Agronomique; 2007.
  • Liu M, Han Z. Distribution and bioavailability of heavy metals in soil aggregates from the Fenhe river Basin, China. Bull Environ Contam Toxicol. 2020;104(4):532–537.
  • Bao J, Wang L, Xiao M. Changes in speciation and leaching behaviors of heavy metals in dredged sediment solidified/stabilized with various materials. Environ Sci Pollut Res. 2016;23(9):8294–8301.
  • Kumar V, Parihar RD, Sharma A, et al. Global evaluation of heavy metal content in surface water bodies: a meta-analysis using heavy metal pollution indices and multivariate statistical analyses. Chemosphere. 2019;236:124364.
  • Brady NC, Weil RR. The nature and properties of soils . Vol. 13Upper Saddle River, NJ : Prentice Hal; 2008. p. 662–710.
  • Argane R. Valorisation des rejets miniers à faible teneur en sulfures comme granulats pour mortiers [doctoral dissertation]. Lyon: INSA; 2015.
  • Ma X, Zuo H, Tian M, et al. Assessment of heavy metals contamination in sediments from three adjacent regions of the Yellow River using metal chemical fractions and multivariate analysis techniques. Chemosphere. 2016;144:264–272.
  • Rafiei B, Khodaei AS, Khodabakhsh S, et al. Contamination assessment of lead, zinc, copper, cadmium, arsenic and antimony in Ahangaran mine soils, Malayer, West of Iran. Soil Sediment Contam. 2010;19(5):573–586.
  • El Hachimi ML, El Hanbali M, Fekhaoui M, et al. Impact d’un site minier abandonné sur l’environnement: cas de la mine de Zeïda (Haute Moulouya, Maroc). Bulletin de l’institut Scientifique, Rabat, section Sciences de la Terre. 2005;27:93–100.
  • Blanchard C. Caractérisation de la mobilisation potentielle des polluants inorganiques dans les sols pollués [doctoral dissertation]. Lyon: INSA; 2000.
  • El Azhari A, Rhoujjati A, El Hachimi ML, et al. Pollution and ecological risk assessment of heavy metals in the soil-plant system and the sediment-water column around a former Pb/Zn-mining area in NE Morocco. Ecotoxicol Environ Safe. 2017;144:464–474.
  • Rodríguez L, Ruiz E, Alonso-Azcárate J, et al. Heavy metal distribution and chemical speciation in tailings and soils around a Pb–Zn mine in Spain. J Environ Manage. 2009;90(2):1106–1116.
  • Bowen H. Environmental chemistry of the elements. Journal Environmental chemistry of the elements. New York: Academic Press; 1979.
  • Nouairi J, Rocha F, Medhioub M. Geobiological assessment of the pollution effect of abandoned mine ores (Fej Lahdoum, Northwest Tunisia). Arab J Geosci. 2019;12(24):1–12.
  • Jung MC. Heavy metal contamination of soils and waters in and around the Imcheon Au–Ag mine, Korea. Appl Geochem. 2001;16(11-12):1369–1375.
  • Lü J, Jiao W-B, Qiu H-Y, et al. Origin and spatial distribution of heavy metals and carcinogenic risk assessment in mining areas at You’xi County southeast China. Geoderma. 2018;310:99–106.
  • Wenzel WW, Kirchbaumer N, Prohaska T, et al. Arsenic fractionation in soils using an improved sequential extraction procedure. Anal Chim Acta. 2001;436(2):309–323.
  • Kim EJ, Yoo J-C, Baek K. Arsenic speciation and bioaccessibility in arsenic-contaminated soils: sequential extraction and mineralogical investigation. Environ Pollut. 2014;186:29–35.
  • Amaibi PM, Entwistle JA, Kennedy N, et al. Mineralogy, solid-phase fractionation and chemical extraction to assess the mobility and availability of arsenic in an urban environment. Appl Geochem. 2019;100:244–257.
  • Harrison RM, Laxen DP, Wilson SJ. Chemical associations of lead, cadmium, copper, and zinc in street dusts and roadside soils. Environ Sci Technol. 1981;15(11):1378–1383.
  • Wang Y, Yang Z, Shen Z, et al. Assessment of heavy metals in sediments from a typical catchment of the Yangtze River, China. Environ Monit Assess. 2011;172(1):407–417.
  • Mahanta MJ, Bhattacharyya KG. Total concentrations, fractionation and mobility of heavy metals in soils of urban area of Guwahati, India. Environ Monit Assess. 2011;173(1):221–240.
  • Sun Z, Xie X, Wang P, et al. Heavy metal pollution caused by small-scale metal ore mining activities: a case study from a polymetallic mine in South China. Sci Total Environ. 2018;639:217–227.
  • Huang J, Huang R, Jiao JJ, et al. Speciation and mobility of heavy metals in mud in coastal reclamation areas in Shenzhen, China. Environ Geol. 2007;53(1):221–228.
  • Jain C, Malik D, Yadav R. Metal fractionation study on bed sediments of Lake Nainital, Uttaranchal, India. Environ Monit Assess. 2007;130(1):129–139.
  • Turki A. Metal speciation (cd, cu, Pb and Zn) in sediments from Al Shabab lagoon, Jeddah, Saudi Arabia. Marine Scienes. 2007;18(1):191–210.
  • Tack F, Verloo MG. Chemical speciation and fractionation in soil and sediment heavy metal analysis: a review. Int J Environ Anal Chem. 1995;59(2-4):225–238.
  • Esshaimi M, El Gharmali A, Berkhis F, et al. Speciation of heavy metals in the soil and the mining residues, in the zinclead Sidi Bou Othmane abandoned mine in Marrakech area. Linnaeus Eco-Tech. 2010;10:975–985.
  • Mufalo W, Tangviroon P, Igarashi T, et al. Solid-Phase Partitioning and Leaching Behavior of Pb and Zn from Playground Soils in Kabwe, Zambia. Toxics. 2021;9(10):248.
  • Bradl H, Kim C, Kramar U, et al. Interactions of heavy metals. Interface Sci Technol. 2005;6:28–164.
  • Yao Q, Wang X, Jian H, et al. Characterization of the particle size fraction associated with heavy metals in suspended sediments of the Yellow River. Int J Environ Res Public Health. 2015;12(6):6725–6744.
  • Sigg L, Behra P, Stumm W. Chimie des milieux aquatiques. 5e édition. Paris: Dunod; 2001.
  • El Ganaoui O. Modélisation de la dynamique sédimentaire pour les transferts des radionucléides dans les cours d’eau [doctoral dissertation]. Aix-Marseille 2; 2002.
  • Lions J. Etude hydrogéochimique de la mobilité de polluants inorganiques dans des sédiments de curage mis en dépôt: expérimentations, suivi in situ et modélisations [doctoral dissertation]. Paris: ENMP; 2004.
  • Maslennikova S, Larina N, Larin S. The effect of sediment grain size on heavy metal content. J Lakes Reserv Ponds. 2012;6(1):43–54.