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Geochemical mapping of New Mexico, USA, using stream sediment data

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Environmental Geology

Abstract

The spatial analysis of geochemical data has several environmental and geological applications. The present study investigated the regional distribution of Al, Ba, Ca, Ce, Co, Cr, Cu, Fe, K, La, Li, Mg, Mn, Na, Ni, Pb, Sc, Th, Ti, U, V, and Zn elements in stream sediment samples from New Mexico State. These elements were studied in order to integrate them with geological and environmental characteristics of the area. Data are used from 27,798 samples that were originally collected during the national uranium resource evaluation (NURE) Hydrogeochemical and stream sediment reconnaissance (HSSR) program in the 1970s. The original data are available as U.S. Geological Survey Open-File Report 97-492. The study used a variety of data processing and filtering techniques that included univariate, bivariate, factor analyses and spatial analyses to transform the data into a useable format. Principal component analysis and GIS techniques are applied to classify the elements and to identify geochemical signatures, either natural or anthropogenic. The study found that the distribution of the investigated elements is mainly controlled by the bed rock chemistry. For example, along the Rio Grande rift and Jemez lineament a strong association between Co, Cr, Cu, Fe, Ni, Sc, Ti, V and Zn was observed and indicates that elements distribution in the area controlled by the mafic factor. The rare earth elements (REE) factor which is consists of Ce, La and U, also has strong, localized, clusters in the felsic centers in New Mexico.

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References

  • Annual Report for the International Union of Geological Sciences (IUGS) (2006) IUGS working group on global geochemical baselines annual report 2006 8 December 2006; http://www.iugs.org/PDF/Annual%20Report%202006%20GGB1.pdf

  • Bolivar SL (1980) An overview of the National Uranium Resource Evaluation (NURE) hydrogeochemistry and stream sediment reconnaissance for uranium in the United States. Los Alamos Scientific Laboratories NURE Program, Report LA-8457 MS, UC-51, pp 24

  • Bounessah M, Atkin BP (2003) An application of exploratory data analysis (EDA) as a robust non-parametric technique for geochemical mapping in a semi-arid climate. Appl Geochem 18:1185–1195

    Article  Google Scholar 

  • Cocker MD (1999) Geochemical mapping in Georgia, USA: a tool for environmental studies, geologic mapping and mineral exploration. J Geochem Explor 67:345–360

    Article  Google Scholar 

  • Dombroski M (2000) ESRI arc view extension: point Stat Calc. U.S. geological survey open-file report 00-302

  • Grossman JN (1998) National geochemical atlas: the geochemical landscape of the conterminous United States derived from stream sediment and other solid sample media analyzed by the National Uranium Resource Evaluation (NURE) program. U.S. geological survey open file- report 98-622, version 3.01

  • Howarth RJ, Thornton I (1983) Regional geochemical mapping and its application to environmental studies. In: Thornton I (ed) Applied environmental geochemistry. Academic Press, New York, pp 41–70

  • Kürzl H (1988) Exploratory data analysis: recent advances for the interpretation of geochemical data. J Geochem Explor 30:309–322

    Article  Google Scholar 

  • LASL (1977) Estancia valley pilot survey, New Mexico. NURE/HSSR Program, GJBX-21(77)

  • LASL (1981a) Grants special study, New Mexico. NURE/HSSR Program, GJBX-351(81)

  • LASL (1981b) San Andres and Oscura Mountains detailed survey, New Mexico. NURE/HSSR program, GJBX-215(81)

  • Levinson AA (1980) Introduction to exploration geochemistry, 2nd edn. Applied Publishing Ltd, Illinois, pp 615–924

  • Ludington S, Folger H, Kotlyar BG, Mossotti V, Coombs MJ, Hildenbrand TG (2006) Regional surficial geochemistry of the Northern Great Basin. Econ Geol 101:33–57

    Google Scholar 

  • Mack GH, Giles KA (2004) Geology of New Mexico, A geologic history, New Mexico Geological Society Special Publication, fiftieth anniversary volume. New Mexico Geological Society Special Publication

  • Pazzaglia FJ, Hawley JW (2004) Neogene and quaternary geology and geomorphology: the geology of New Mexico, New Mexico Geological Society, 407–443

  • Reed JC Jr, Bush CA (2005) Generalized geologic map of the conterminous United States: U.S. Geological Survey, Denver, CO. <http://pubs.usgs.gov/atlas/geologic/>

  • Reimann C, Filzmoser P (2000) Normal and lognormal data distribution in geochemistry: death of a myth. Consequences for the statistical treatment of geochemical and environmental data. Environ Geol 39:1001–1014

    Article  Google Scholar 

  • Reimann C, Filzmoser P, Garrett RG (2004) Background and threshold: critical comparison of methods of determination. Sci Total Environ 346(1–3):1–16

    Google Scholar 

  • Ried JC (1993) A geochemical atlas of North Carolina, USA. J Geochem Explor 47:11–27

    Article  Google Scholar 

  • Robinson GR Jr, Kapo KE, Grossman JN (2004) Chemistry of stream sediments and surface waters in New England, U.S. geological survey, open-file report 2004-1026. <http://pubs.usgs.gov/of/2004/1026/>

  • Sall J, Lehman A (1996) A guide to statistic and data analysis using JMP® and JMP in software SAS Institute Inc. Duxbury Press, CA

  • Shacklette HT, Boerngen JG (1984) Element concentration in soils and other surficial materials of the conterminous United States. U.S. geological survey, professional paper 1270, 35 pp

  • Thornton I (1983) Applied environmental geochemistry. Academic Press, New York, pp 51–133

    Google Scholar 

  • Tukey JW (1977) Exploratory data analysis. Addison-Wesley, Reading

    Google Scholar 

  • USGS (2004) The national geochemical survey-database and documentation. U.S. geological survey open-file report 2004-1001

  • Xie X, Ren T (1993) National geochemical mapping and environmental geochemistry—progress in China. J Geochem Explor 49(1–2):15–34

    Google Scholar 

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Correspondence to Fares Howari.

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Zumlot, T., Goodell, P. & Howari, F. Geochemical mapping of New Mexico, USA, using stream sediment data. Environ Geol 58, 1479–1497 (2009). https://doi.org/10.1007/s00254-008-1650-0

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