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Research Article

Chemical fractionation and mobility of nickel in soils in relation to parent materials

ORCID Icon, , , &
Pages 1075-1092 | Received 23 Dec 2019, Accepted 27 May 2020, Published online: 23 Jun 2020

References

  • Adepeju JA, Adetunji MT, Ige DV. 2016. Soil chemistry: the basic principles. Ibadan: Jumak Publishers.
  • Agnieszka J, Barbara G. 2012. Chromium, nickel and vanadium mobility in soils derived from fluvioglacial sands. J Hazard Mater. 237–238: 315–322. doi:10.1016/j.jhazmat.2012.08.048.
  • Alexander EB, Coleman RG, Keeler-Wolf T, Harrison SP. 2007. Serpentine geoecology of western north America: soils, geology, and vegetation. New York: Oxford University Press.
  • Anenyeonwu AU. 2016. Geotechnical properties and classification of some soils formed on two lithologic materials in Imo state, Nigeria [Unpublished M.Sc Thesis]. Owerri (Nigeria): Federal University of Technology.
  • Aydinalp C. 2009. Concentration and speciation of Cu, Ni, Pb and Zn in cultivated and uncultivated soils. Bulg J Agric Sci. 15(2):129–134.
  • Azu EO, Donatus B, Osodeke VE, Ukpong IM, Osisi AF. 2018. Chemistry and mineralogy of soils derived from different parent materials in southeastern Nigeria. Int J Plant Soil Sci. 25(3):1–16. doi:10.9734/IJPSS/2018/44764.
  • Barman M, Datta SP, Rattan RK, Meena MC. 2013. Sorption and desorption of nickel in soils in relation to its availability to plants. Agrochimica. 57:235–249.
  • Barman M, Datta SP, Rattan RK, Meena MC. 2015. Chemical fractions and bioavailability of nickel in alluvial soils. Plant Soil Environ. 61(1):17–22. doi:10.17221/613/2014-PSE.61.017.
  • Brady NC, Weil RR. 2010. Elements of the nature and properties of soils. 3 ed. New Jersey: Pearson Prentice Hall Publishing.
  • Caridad-Cancela R, Paz-Gonzalez A. 2005. Total and extractable nickel and cadmium contents in natural soils. Commun Soil Sci Plant Anal. 36:241–252. doi:10.1081/CSS-200043057.
  • Encyclopaedia Britannica. 2019. Shale rock. https://www.britannica.com/science/shale
  • Essoka AN, Esu IE. 2000. Profile distribution of sesquioxides in the inland valley soils of central Cross River state, Nigeria. Proceedings of the 26th Annual Conference of the Soil Science Society of Nigeria; Ibadan (Oyo State); p. 24–31.
  • European Commission. 2008. Environmental, economic and social impacts of the use of sewage sludge on land. Final Report, Part II: Report on Options and Impacts. http://ec.europa.eu/environment/waste/sludge/pdf/part_ii_report.pdf
  • Fakolade OR, Obasi RA. 2012. The geochemical assessment of sub surface coastal plain sands deposits of eastern Dahomey, basin around Lagos area, southwest Nigeria. J Sci Technol. 1:301–307.
  • FAO (Food and Agricultural Organization). 2004. A provisional methodology for land degradation assessment. Rome:Food and Agricultural Organization.
  • Fathi H, Aryanpour H, Fathi H. 2014. Distribution of zinc and copper fractions in acid and alkaline (highly calcareous) soils of Iran. Sky J Soil Sci Environ Manage. 3(1):6–13.
  • Filgueiras AV, Lavilla I, Bendicho C. 2002. Chemical sequential extraction in environmental solid samples. J Environ Monit. 4:823–857. doi:10.1039/B207574C.
  • Gee GW, Or D. 2002. Chapter the solid phase, particle-size analysis. In: Dane JH, Topp CG, editors. Methods of soil analysis part 4 physical methods. Madison (WI): Soil Science Society of America; p. 255–293.
  • Havlin JL, JD B, SL T, Nelson WL. 2012. Soil fertility and fertilizers: an introduction to nutrient management. 7th ed. New Delhi: PHI Private Limited Publishing.
  • IBM (International Business Machine). 2011. IBM SPSS statistics for windows. Version 20.0. Armonk (NY):IBM.
  • Ideriah TJK, Ikpe FN, Nwanjoku FN. 2013. Distribution and speciation of heavy metals in crude oil contaminated soils from Niger Delta, Nigeria. World Environ. 3(1):18–28. doi:10.5923/j.env.20130301.03.
  • Igwe CA, Zarei M, Stahr K. 2005. Mineralogical and elemental distribution in soils formed from river Niger floodplains of southeastern Nigeria. Aust J Soil Res. 43:147–158. doi:10.1071/SR04046.
  • Iwegbue CMA. 2011. Assessment of heavy metal speciation in soils impacted with crude oil in the Niger Delta, Nigeria. Chem Speciation Bioavailability. 23(1):7–15. doi:10.3184/095422911X12964002282100.
  • Jamalia MK, Kazi TG, Arain MB, Afridi HI, Jalbani N, Khandro GA, Shah AQ, Braig JA. 2009. Speciation of heavy metals in untreated sewage sludge using microwave assisted sequential extraction procedure. J Hazard Mater. 163:1157–1164. doi:10.1016/j.jhazmat.2008.07.071.
  • Kabala C, Singh RB. 2001. Fractionation and mobility of copper lead and zinc in soil profiles in the vicinity of a copper smelter. J Environ Qual. 30:485–492. doi:10.2134/jeq2001.302485x.
  • Kabata-Pendias A. 2011. Trace elements in soils and plants. 4th ed. Boca Raton: CRC Press, Taylor and Francis Group.
  • Karak T, Das DK, Singh UK, Maiti D. 2005. Influence of pH on soil charge characteristics and cadmium sorption in some noncontaminated soils of Indian subtropics. Sci World J. 5:183–194. doi:10.1100/tsw.2005.26.
  • Khan MR, Khan MM. 2010. Effect of varying concentration of nickel and cobalt on the plant growth and yield of chickpea. Aust J Basic Appl Sci. 4(6): 1036–1046.
  • Lagomarsino A, Marabottini R, Grego S, Stazi SR. 2010. Copper distribution among physical and chemical fractions in a former vineyard soil. Agrochimica 54(3):1–12.
  • Lbarede F. 2003. Geochemistry: an introduction. Cambridge: Cambridge University Press.
  • Lee BD, Graham RC, Laurent TE, Amrhein C. 2004. Pedogenesis in a wetland meadow and surrounding serpentinic landslide terrain, northern California, USA. Geoderma. 118:303–320. doi:10.1016/S0016-7061(03)00214-3.
  • Liu GD. 2011. A new essential mineral element-nickel. Plant Nutri Fert Sci. 7(1):101–103.
  • Mclean EO. 1982. Soil pH and lime requirement. In: Page AL, Miller RH, Keeney DR, editors. Methods of soil analysis part 2. 2 ed. Madison (WI): American Society of Agronomy and Soil Science Society of America; p. 199 - 224.
  • Nakonieczny M. 2007. Structural and functional adaptations of Chrysolina pardalina (Chrysomelidae; Coleoptera) to development on nickel hyperaccumulator Berkheya coddii (Asteraceae) – a comparative study with Chrysolinaher bacea. Silesia: University of Silesia Press.
  • Nelson LE, Sommers DW. 1982. Phosphorus. In: Page AL, Miller RH, Keeney DR, editors. Methods of soil analysis, part 3 chemical methods. Madison (WI): Soil Science Society of Americaand American Society of Agronomy; p. 475–490.
  • Nwachukwu OM. 2016. Characterization, classification and evaluation of soils of four geomorphic surfaces in Oguta Imo state southeastern Nigeria [Unpublished MScThesis]. Owerri (Nigeria): Federal University of Technology.
  • Obi JC. 2015. Particle size fractions and pedogenesis of coastal plain sands. Arch Agron Soil Sci. 61(10):1473–1490. doi:10.1080/03650340.2015.1006201.
  • Ofomata GEK. 1981. Actual and potential erosion in Nigeria and measures for control. In: Udo EJ, Sobulo RA, editors. Acid sands of southeastern Nigeria. Special publication monograph no. 1. Ibadan: Soil Science Society of Nigeria; p. 151–165.
  • Ogban PI, Ekerette IO. 2001. Physical and chemical properties of the coastal plain sands soils of southeastern Nigeria. Niger J Soil Environ Res. 2:6–14.
  • Okoli NH, Uzoho BU, Ihem EE, Okon MA. 2019. Differential speciation and availability of copper in soils derived from different parent materials in Imo state, southeastern Nigeria. Agro-Science. 18(1):7–15. doi:10.4314/as.v18i1.2.
  • Okoli NH, Uzoho BU, Onweremadu EU, Irokwe IF. 2016. Zinc fractionation of soils of selected parent materials and their relationships with some soil properties. Mal J Soil Sci. 20:49–66.
  • Olson SR, Sommers LE. 1982. Phosphorus. In: Page AL, Miller RH, Keeney DR, editors. Methods of soil analysis, part 2. Madison (WI): American Society Agronomy; p. 403–430.
  • Onweremadu EU, Akamigbo FOR, Igwe CA. 2007. Physical shrinkage relationship in soils of dissimilar lithologies in central southeastern Nigeria. J Appl Sci. 7:2495–2499. doi:10.3923/jas.2007.2495.2499.
  • Onweremadu EU, Peter KD. 2016. Pedogenesis of soils of two tropical microclimates in Owerri area south-east Nigeria. Int J Soil Sci. 11(1):14–18. doi:10.3923/ijss.2016.14.18.
  • Orajaka SO. 1975. Geology. In: Ofomata GEK, editor. Nigeria in maps: Eastern states. Benin City: Ethiope Publishers; p. 5–7.
  • Osadebe CC, Obrike SE, Sulymon NA. 2011. Evaluation of Imo clay-shale deposit (Paleocene) from Okada, Edo state, southwestern Nigeria, as drilling mud clay. J Appl Technol Environ Sanita. 1(4):311–316.
  • Ramzan S, Bhat AM, Kirmani NA, Rasool R. 2014. Fractions of zinc and their association with soil properties in soils of Kashmir Himalayas. Int J Agric Soil Sci. 2(8):132–142.
  • Reyment RA. 1965. Aspect of the geology of Nigeria. Ibadan: University of Ibadan Press; p. 133.
  • Rieuwerts JS, Ashmore MR, Farago ME, Thornton I. 2006. The influence of soil characteristics on the extractability of Cd, Pb and Zn in upland and moorland soils. Sci Total Environ. 366:864–875. doi:10.1016/j.scitotenv.2005.08.023.
  • Salbu B, Krekling T, Oughton DH. 1998. Characterization of radioactive particles in the environment. Analyst. 123:843–849. doi:10.1039/a800314i.
  • Senwo ZN, Tazisong IA. 2004. Metal contents in soils of Alabama. Commun Soil Sci Plant Anal. 35:2837–2848. doi:10.1081/CSS-200036470.
  • Spiak Z, Romanowska M, Radoła J. 2003. Effects of dose and form of nitrogen on nickel uptake by maize part II: content and uptake of nickel. Chem Inz Ekol. 10(9):667–673.
  • Terzano R, Spagnuolo M, Vekemans B, Wout DN, Janssens K, Falkenberg G, Fiore S, Ruggiero P. 2007. Assessing the origin and fate of Cr, Ni, Cu, Zn, and V in industrial polluted soil by combined microspectroscopic techniques and bulk extraction methods. Environ Sci Technol. 41(19):6762–6769. doi:10.1021/es070260h.
  • Thomas GW. 1982. Exchangeable bases. In: Page AL, Miller RH, Keeney DR, editors. Methods of soil analysis part 2. Madison (WI): American Society of Agronomy; p. 159–165.
  • Thomas GW. 1996. Soil pH and soil acidity. editors, Sparks DL, Page AL, Helmke PA, Loeppert RH, Soltanpour PN, Tabatabai MA, Johnson CT, Summer ME. Madison (WI): American Society of Agronomy and Soil Science Society of America; p. 255–293.
  • Tijani MN, Matthew EN, Ryuji K. 2010. Textural and geochemical characteristics of the Ajali sandstone, Anambra basin, SE Nigeria: implication for its provenance. Geoscience 342:136–150. doi:10.1016/j.crte.2009.09.009.
  • Udom BE, Mbagwu JSC, Adesodun JK, Agbim NN. 2004. Distribution of Zn, Cd, Cu and Pb in a tropical ultisol after long term disposal of sewage sludge. Environ Int. 30:467–470. doi:10.1016/j.envint.2003.09.004.
  • Uzoho BU, Jaja ET. 2018. Phosphorus speciation in soils of contrasting lithologies in Imo State, southeastern Nigeria. Lond J of Res Sci. 18(1):27–36.
  • Uzoho BU, Nkwopara UN, Ihem EE, Eke C, Odum JC, Onwudike SU. 2014. Chemical speciation and mobility of cadmium and lead in waste dump sites in Owerri, southeastern Nigeria. J Chem Bio Phys Sci. 14(2):1721–1734.
  • Young A. 1976. Tropical soils and soil survey. Cambridge: CambridgeUniversity Press.

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