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Primitive and contaminated basalts from the Southern Rocky Mountains, U.S.A.

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Abstract

Basalts in the Southern Rocky Mountains province have been analyzed to determine if any of them are primitive. Alkali plagioclase xenocrysts armored with calcic plagioclase seem to be the best petrographic indicator of contamination. The next best indicator of contamination is quartz xenocrysts armored with clinopyroxene. On the rocks and the region studied, K2O apparently is the only major element with promise of separating primitive basalt from contaminated basalt inasmuch as it constitutes more than 1 % in all the obviously contaminated basalts. K2O: lead (> 4 ppm) and thorium (> 2 ppm) contents and Rb/Sr (> 0.035) are the most indicative of the trace elements studied. Using these criteria, three basalt samples are primitive (although one contains 1.7% K2O) and are similar in traceelement contents to Hawaiian and Eastern Honshu, Japan, primitive basalts.

Contamination causes lead isotope ratios, 206Pb/204Pb and 208Pb/204Pb, to become less radiogenic, but it has little or no effect on 87Sr/86Sr. We interpret the effect on lead isotopes to be due to assimilation either of lower crustal granitic rocks, which contain 5–10 times as much lead as basalt and which have been low in U/Pb and Th/Pb since Precambrian times, or of upper crustal Precambrian or Paleozoic rocks, which have lost much of their radiogenic lead because of heating prior to assimilation. The lack of definite effects on strontium isotopes may be due to the lesser strontium contents of granitic crustal rocks relative to basaltic rocks coupled with lack of a large radiogenic enrichment in the crustal rocks.

Lead isotope ratios were found to be less radiogenic in plagioclase separates from an obviously contaminated basalt than in the primitive basalts. The feldspar separate that is rich in sodic plagioclase xenocrysts was found to be similar to the whole-rock composition for 206Pb/204Pb and 208Pb/204Pb whereas a more dense fraction probably enriched in more calcic plagioclase phenocrysts is more similar to the primitive basalts in lead isotope ratios.

The primitive basalts have: 206Pb/204Pb ∼ 18.09–18.34, 207Pb/204Pb ∼ 15.5, 208Pb/204Pb ∼ 37.6–37.9, 87Sr/86Sr ∼ 0.704–0.705. In the primitive basalts from the Southern Rocky Mountains the values of 206Pb/204Pb are similar to values reported by others for Hawaiian and eastern Honshu basalts and abyssal basalts, whereas 208Pb/204Pb tends to be equal to or a little less radiogenic than those from the oceanic localities. 87Sr/86Sr appears to be equal to or a little greater than those of the oceanic localities. These 206Pb/204Pb and 208Pb/204Pb ratios are distinctly less radiogenic and 87Sr/86Sr values are about equal to those reported by others for volcanic islands on oceanic ridges and rises.

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References

  • Aoki, K.: Petrography and petrochemistry of latest Pliocene olivinetholeiites of Taos area, northern New Mexico, U.S.A. Contr. Mineral. and Petrol. 14, 191–203 (1967).

    Google Scholar 

  • Chow, T. J., and C. C. Patterson: The occurrence and significance of lead isotopes in pelagic sediments. Geochim. Cosmochim. Acta 26, 263–308 (1962).

    Article  Google Scholar 

  • Cohen, L. H., K. Ito, and G. C. Kennedy: Melting and phase relations in an anhydrous basalt to 40 kilobars. Am. J. Sci. 265, 475–518 (1967).

    Google Scholar 

  • Den Tex, E.: Metamorphic lineages of orogenic plutonism. Geol. Mijnbouw 44, 105–132 (1965).

    Google Scholar 

  • Doe, B. R.: The bearing of lead isotopes on the source of granitic magma. J. Petrol. 8, 51–83 (1967).

    Google Scholar 

  • — Lead and strontium isotope studies of Cenozoic volcanic rocks in the Rocky Mountain region-A summary. Colo. School. Mines Quart. 63, 149–174 (1968).

    Google Scholar 

  • M. Tatsumoto, M. H. Delevaux, and Z. E. Peterman: Isotope-dilution determination of five elements in G-2 (granite), with a discussion of the analysis of lead. In: Geological survea research 1967. U.S. Geol. Surv., Profess. Papers 575-B, B170-B177 (1967).

    Google Scholar 

  • Engel, A. E. J., and C. G. Engel: Igneous rocks of the East Pacific Rise. Science 146, 477–485 (1964a).

    Google Scholar 

  • — Composition of basalts from the Mid-Atlantic Ridge. Science 144, 1330–1333 (1964b).

    Google Scholar 

  • Gast, P. W.: Terrestrial ratio of potassium to rubidium and the composition of the Earth's mantle. Science 147, 858–860 (1965).

    Google Scholar 

  • Giletti, B. J.: Isotopic ages from southwestern Montana. J. Geophys. Res. 71, 4029–4036 (1966).

    Google Scholar 

  • Hedge, C. E.: Variations in radiogenic strontium found in volcanic rocks. J. Geophys. Res. 71, 6119–6120 (1966).

    Google Scholar 

  • —, and F. G. Walthall: Radiogenic strontium-87 as an index of geologic processes. Science 140, 1214–1217 (1963).

    Google Scholar 

  • Lipman, P. W., and H. Mehnert: Structural history of the eastern San Juan Mountains and the San Luis Valley, Colorado [abs.]. Geol. Soc. Am., Cordilleran Section, Program 64th Annual Mtg., Tucson, 76–77 (1968).

  • Macdonald, G. A., and T. Katsura: Chemical composition of Hawaiian lavas. J. Petrol. 5, 82–133 (1964).

    Google Scholar 

  • Montgomery, A.: Pre-Cambrian geology of the Picuris Range, north-central New Mexico. New Mexico, Bur. Mines and Mineral Resources, Bull. 30 89 p. (1953).

  • Moorbath, S., P. M. Hurley, and H. W. Fairbairn: Evidence for the origin and age of some mineralized Laramide intrusives in the southwestern United States from strontium isotope and rubidium-strontium measurements. Econ. Geol. 62, 228–236 (1967).

    Google Scholar 

  • O'Neil, J. R., and H. P. Taylor Jr.: The oxygen isotope and cation exchange chemistry of feldspars. Am. Mineralogist 52, 1414–1437 (1967).

    Google Scholar 

  • Ozima, M., M. Kono, I. Kaneoka, H. Kinoshita, K. Kobayashi, T. Nagata, E. E. Larson, and D. W. Strangway: Paleomagnetism and potassium argon ages of some volcanic rocks from the Rio Grande gorge, New Mexico. J. Geophys. Res. 72, 2615–2621 (1967).

    Google Scholar 

  • Patterson, C. C., and M. Tatsumoto: The significance of lead isotopes in detrital feldspar with respect to chemical differentiation within the Earth's mantle. Geochim. Cosmochim. Acta 28, 1–22 (1964).

    Article  Google Scholar 

  • Peck, L. C.: Systematic analysis of silicates. U.S. Geol. Surv., Bull. 1170, 89 p. (1964).

  • Peterman, Z. E., B. R. Doe, and A. Bartel: Data on the rock GSP-1 (Granodiorite) and the isotope-dilution method of analysis for Rb and Sr. In: Geological Survey research 1967. U.S. Geol. Surv., Profess. Papers 575-B, B181-B186 (1967).

    Google Scholar 

  • Ringwood, A. E., and D. H. Green: Petrological nature of the stable continental crust, In: The earth beneath the continents-A volume of geophysical studies in honor of Merle A. Tuve. Am. Geophys. Union Geophys. Mon. 10 (Natl. Acad. Sci.-Natl. Research Council Pub. 1467), 611–619 (1966).

    Google Scholar 

  • Rosholt, J. N., B. R. Doe, and M. Tatsumoto: Evolution of the isotopic composition of uranium and thorium in soil profiles. Geol. Soc. Am. Bull. 77, 987–1003 (1966).

    Google Scholar 

  • Shapiro, L., and W. W. Brannock: Rapid analysis of silicate rocks. U.S. Geol. Surv., Bull. 1036-C, 19–56 (1956).

    Google Scholar 

  • Tatsumoto, M.: Isotopic composition of lead in volcanic rocks from Hawaii, Iwo-Jima, and Japan. J. Geophys. Res. 71, 1721–1733 (1966a).

    Google Scholar 

  • — Genetic relations of oceanic basalts as indicated by lead isotopes. Science 153, 1094–1101 (1966b).

    Google Scholar 

  • Zartman, R. E.: Lead isotopes in igneous rocks of the Grenville Province as a possible clue to the presence of older crust. Proc. Geol. Assoc. Can. (in press) (1968).

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Doe, B.R., Lipman, P.W., Hedge, C.E. et al. Primitive and contaminated basalts from the Southern Rocky Mountains, U.S.A.. Contr. Mineral. and Petrol. 21, 142–156 (1969). https://doi.org/10.1007/BF00403342

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