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Elemental concentrations for bulk and size-fractionated mine waste from the Tar Creek Superfund Site, Tri-State Mining District, Oklahoma, U.S.A.

Dates

Publication Date
Time Period
2022

Citation

White, S.J.O., Piatak, N.M., McAleer, R.J., Hayes, S.M., Seal, R.R. II, Schaider, L.A., Shine, J.P., Green, C.J., Hoppe, D.A., and Croke, M.R., 2022, Elemental concentrations for bulk and size-fractionated mine waste from the Tar Creek Superfund Site, Tri-State Mining District, Oklahoma, U.S.A.: U.S. Geological Survey data release, https://doi.org/10.5066/P92MXFIQ.

Summary

Elemental concentrations for bulk and size-fractionated mine waste from sampled historical waste piles from the Tar Creek Superfund Site, Oklahoma, U.S. were determined after dissolution via acid digests or a sodium peroxide fusion. Elemental concentrations were determined for the leachate from a simulated rainwater leach of mine wastes. Data and methods reported are part of a research study published here: White, S.J.O., Piatak, N.M., McAleer, R.J., Hayes. S.M., Seal, R.R. II, Schaider, L.A., Shine, J.P. Germanium redistribution during weathering of Zn mine wastes: implications for environmental mobility and recovery of a critical mineral

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Attached Files

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Acid Digest.csv 1.04 KB text/csv
Data Dictionary ICPMS.csv 43.24 KB text/csv
Product_10.5066P92MXFIQ_METADATA.xml
Original FGDC Metadata

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121.06 KB application/fgdc+xml
SPLP.csv 14.9 KB text/csv
USGS analyses.csv 49.75 KB text/csv

Purpose

Data were obtained to determine the bulk and size-fractionated elemental composition of mine wastes and leaches from the Tar Creek Superfund Site in Oklahoma, U.S., a historical zinc and lead mining area. Ultimately these data are a part of a greater characterization of the environmental behavior of Ge and potential for recovery from mine wastes.

Map

Communities

  • Geology, Energy & Minerals (GEM) Science Center
  • USGS Data Release Products

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Provenance

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Additional Information

Identifiers

Type Scheme Key
DOI https://www.sciencebase.gov/vocab/category/item/identifier doi:10.5066/P92MXFIQ

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