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Crystal growth and the formation of chemical zoning in garnets

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Abstract

A crystal growth model is developed which generalizes the Rayleigh fractionation process. The new growth model allows some insight into the interpretation of nonequilibrium behavior of minerals, primarily the chemical zoning profiles exhibited by metamorphic minerals. A nonlinear equilibrium term for exchange of constituents between a growing mineral and a reservoir is initially incorporated into the usual isothermal fractionation model. Criteria are established to decide when a simple distribution term is sufficient to describe the growth and exchange process. The model is then extended to allow for temperature changes during a cooling or heating event. Finally, an exact solution is obtained for the temperature dependent case incorporating a time dependent growth rate. The growth models are successfully used to obtain growth rates of 0.01 to 0.09 cm/million year and describe the magnesium and iron zoning profiles of garnets from Phillipston, Massachusetts. The generalized model confirms the development of zoning during the retrograde growth of garnet in the late stages of the Acadian orogeny.

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References

  • Albarede F, Bottinga Y (1972) Kinetic disequilibrium in trace element partitioning between phenocryst and host lava. Geochim Cosmochim Acta 36:141–156

    Google Scholar 

  • Albee AL, Ray L (1970) Correction factors for electron-probe microanalysis of silicates, oxides, carbonates, phosphates and sulfates. Anal Chem 42:1408–1414

    Google Scholar 

  • Anderson DE, Buckley GR (1973) Zoning in garnets — diffusion models. Contrib Mineral Petrol 40:87–104

    Google Scholar 

  • Anderson DE, Buckley GR (1974) Modeling of diffusion controlled properties of silicates. In: Hofmann AW et al (eds) Geochemical transport and kinetics. Carnegie Inst Washington Publ, pp 31–52

  • Anderson DE, Olimpio JC (1977) Progressive homogenization of metamorphic garnets, South Morar, Scotland: evidence for volume diffusion. Can Mineral 15:205–216

    Google Scholar 

  • Atherton MP (1968) The variation in garnet, biotite and chlorite composition in medium grade pelitic rocks from the Dalradian, Scotland, with particular reference to the zonation in garnet. Contrib Mineral Petrol 18:347–371

    Google Scholar 

  • Atherton MP (1976) Crystal growth models in metamorphic tectonites. Philos Trans R Soc London Ser A283:255–270

    Google Scholar 

  • Atherton MP, Edmunds WM (1966) An electron microprobe study of some zoned garnets from metamorphic rocks. Earth Planet Sci Lett 1:185–193

    Google Scholar 

  • Bence AE, Albee AL (1968) Empirical correction factors for the electron microanalysis of silicates and oxides. J Geol 76:382–403

    Google Scholar 

  • Birk D (1973) Chemical zoning in garnets of the Kashabowie group, Shebandowan, Ontario. Can Mineral 12:124–128

    Google Scholar 

  • Blackburn WH (1969) Zoned and unzoned garnets from the Grenville gneisses around Gananoque, Ontario. Can Mineral 9:691–698

    Google Scholar 

  • Brown EH (1969) Some zoned garnets from the greenschist facies. Am Mineral 54:1662–1677

    Google Scholar 

  • Cygan RT (1980) Crystal growth and the formation of chemical zoning in natural garnets. Pennsylvania State University MS thesis, 194 pp

  • Cygan RT, Lasaga AC (1979) Formation of chemically zoned garnets by diffusion and crystal growth. EOS 60:741

    Google Scholar 

  • de Béthune P, Laduron D, Bacquet J (1975) Diffusion processes in resorbed garnets. Contrib Mineral Petrol 50:197–204

    Google Scholar 

  • Emiliani F, Venturelli G (1972) Sharp compositional zoning in an almandine garnet. Can Mineral 11:464–472

    Google Scholar 

  • Finlay CA, Kerr A (1979) Garnet growth in a metapelite from the Moinian rocks of Northern Sutherland, Scotland. Contrib Mineral Petrol 76:185–191

    Google Scholar 

  • Fisher GW (1977) Nonequilibrium thermodynamics in metamorphism. In: Fraser DG (ed) Thermodynamics in geology. Reidel, Dordrecht, pp 381–403

    Google Scholar 

  • Fisher GW (1978) Rate laws in metamorphism. Geochim Cosmochim Acta 42:1035–1050

    Google Scholar 

  • Gable DJ, Sims PK (1969) Geology and regional metamorphism of some high grade cordierite gneisses, Front Range, Colorado. Geol Soc Am Spec Pap 128:1–87

    Google Scholar 

  • Grant JA, Weiblen PW (1971) Retrograde zoning in garnet near the second sillimanite isograd. Am J Sci 270:281–296

    Google Scholar 

  • Harte B, Henley KJ (1966) Occurrence of compositionally zoned almanditic garnets in regionally metamorphosed rocks. Nature 210:689–692

    Google Scholar 

  • Hess PC (1971) Prograde and retrograde equilibria in garnet-cordierite gneisses in south-central Massachusetts. Contrib Mineral Petrol 30:177–195

    Google Scholar 

  • Hollister LS (1966) Garnet zoning: an investigation based on the Rayleigh fractionation model. Science 154:1647–1651

    Google Scholar 

  • Hollister LS (1969) Contact metamorphism in the Kwoiek area of British Columbia: an end member of the metamorphic process. Geol Soc Am Bull 80:2465–2494

    Google Scholar 

  • Jackson KA (1967) Current concepts in crystal growth from the melt. In: Reiss H (ed) Progress in solid state chemistry, vol 4. Pergamon Press, New York, pp 53–80

    Google Scholar 

  • Kretz R (1973) Kinetics of the crystallization of garnet at two localities near Yellowknife. Can Mineral 12:1–20

    Google Scholar 

  • Lasaga AC (1979) Multicomponent exchange and diffusion in silicates. Geochim Cosmochim Acta 43:455–469

    Google Scholar 

  • Lasaga AC, Richardson SM, Holland HD (1977) The mathematics of cation diffusion and exchange between silicate minerals during retrograde metamorphism. In: Saxena SK, Bhattacharji S (eds) Energetics of geological processes. Springer, New York, pp 353–388

    Google Scholar 

  • Linthout K, Westra L (1968) Compositional zoning in almandine-rich garnets and its relation to the metamorphic history of their host rocks. Proc K Ned Akad Wet Ser B 71:297–312

    Google Scholar 

  • Loomis TP (1975) Reaction zoning of garnet. Contrib Mineral Petrol 52:285–305

    Google Scholar 

  • McIntire WL (1963) Trace element partition coefficients —a review of theory and application to geology. Geochim Cosmochim Acta 27:1209–1264

    Google Scholar 

  • Miyashiro A (1953) Calcium-poor garnet in relation to metamorphism. Geochim Cosmochim Acta 4:179–208

    Google Scholar 

  • Miyashiro A, Shido F (1973) Progressive compositional change of garnet in metapelite. Lithos 6:13–20

    Google Scholar 

  • Müller G, Schneider A (1971) Chemistry and genesis of garnets in metamorphic rocks. Geochim Cosmochim Acta 31:178–200

    Google Scholar 

  • Neumann H, Mead J, Vitaliano CJ (1954) Trace element variation during fractional crystallization as calculated from the distribution law. Geochim Cosmochim Acta 6:90–99

    Google Scholar 

  • Nielsen AE (1964) Kinetics of precipitation. Pergamon Press, New York, 151 pp

    Google Scholar 

  • Rayleigh L (1902) On the distillation of binary mixtures. Philos Mag 4:521–537

    Google Scholar 

  • Richardson SM (1982) The assemblage garnet+cordierite+biotite+sillimanite in a metavolcanic rock at Phillipston, Massachusetts. Contrib Mineral Petrol (in press)

  • Thompson AB (1974) Calculation of muscovite-paragonite-alkali feldspar phase relations. Contrib Mineral Petrol 44:173–194

    Google Scholar 

  • Thompson AB (1976) Mineral reactions in pelitic rocks: I. prediction of P-T-X(Fe-Mg) phase relations. Am J Sci 276:401–424

    Google Scholar 

  • Thompson AB, Tracy RJ, Lyttle PT, Thompson JB (1977) Prograde reaction histories deduced from compositional zonation and mineral inclusions in garnet from the Gassetts schist, Vermont. Am J Sci 277:1152–1167

    Google Scholar 

  • Thompson JB, Norton SA (1968) Paleozoic regional metamorphism in New England and adjacent areas. In: Zen E et al (eds) Studies of Appalachian geology, Northern and Maritime. Wiley, New York, pp 319–328

    Google Scholar 

  • Tracy RJ, Robinson P, Thompson AB (1976) Garnet composition and zoning in the determination of temperature and pressure of metamorphism, central Massachusetts. Am Mineral 61:762–775

    Google Scholar 

  • Woodsworth GJ (1977) Homogenization of zoned garnets from schists. Can Mineral 15:230–242

    Google Scholar 

  • Yardley BWD (1977) An empirical study of diffusion in garnet. Am Mineral 62:793–800

    Google Scholar 

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Cygan, R.T., Lasaga, A.C. Crystal growth and the formation of chemical zoning in garnets. Contr. Mineral. and Petrol. 79, 187–200 (1982). https://doi.org/10.1007/BF01132887

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